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Publication figure for Leveraging Ace-SABRE and PETALUTE to Detect and Image Hyperpolarized [1-13C]Pyruvate Metabolism in Yeast
2026

Leveraging Ace-SABRE and PETALUTE to Detect and Image Hyperpolarized [1-13C]Pyruvate Metabolism in Yeast

Megan Pike, Erica Curran, Nick Volya, Mark Widmaier, Logan Grady, Brojo Dhali, Abdul-Rahman Sweilam, Yen-Yu Ian Shih, Tzu-Wen Winnie Wang, Abubakar Abdurraheem, Joseph Gyesi, Patrick TomHon, Stephen J McBride, Stephen Sawiak, Eduard Y Chekmenev, Uzay E Emir, Thomas Theis DOI: 10.26434/chemrxiv.15002548/v1

Publication figure for High-Resolution Microtesla In-Situ 13C NMR Detection of “Scaled-Up” SABRE-Hyperpolarization of [1-13C]Pyruvate
2026

High-Resolution Microtesla In-Situ 13C NMR Detection of “Scaled-Up” SABRE-Hyperpolarization of [1-13C]Pyruvate

Abubakar Abdurraheem, Joseph N. Gyesi, Shiraz Nantogma, Patrick TomHon, Anna Samoilenko, Clementinah Oladun, Boyd M. Goodson, Matthew S. Rosen, Thomas Theis, Charlie Fehl, Eduard Y. Chekmenev, Journal of Magnetic Resonance, Volume 391, 2026 DOI: 10.1016/j.jmr.2026.108120

Publication figure for Robust Rapid Cellular Metabolite Sensing Using Benchtop NMR and SABRE-Hyperpolarized [1-13C]Pyruvate
2026

Robust Rapid Cellular Metabolite Sensing Using Benchtop NMR and SABRE-Hyperpolarized [1-13C]Pyruvate

Joseph Gyesi, Patrick TomHon, Abubakar Abdurraheem, Anna Samoilenko, Sydney Scofield, Clementinah Oladun, Stephen McBride, Erica Curran, Megan Pike, Kamal Kadari, Sydney D. Welch, Sam Lipka, Steven Balboa, Charlie Fehl, Marianna Sadagurski, Jan-Bernd Hövener, Thomas Theis, Boyd M. Goodson, and Eduard Y. Chekmenev. Analytical Chemistry (2026), 98 (11), 8051–8059. DOI: 10.1021/acs.analchem.5c05076

Publication figure for Rapid RASER MRI
2025

Rapid RASER MRI

S. Lehmkuhl, S. Fleischer, J. Yang, E. Y. Chekmenev, T. Theis, S. Appelt, J. G. Korvink, M. Jouda, Angew. Chem. Int. Ed. (2025) e25699

Publication figure for Biocompatible SABRE Hyperpolarization of [1-13C]Ketoleucine for Cellular Metabolic Flux Sensing
2025

Biocompatible SABRE Hyperpolarization of [1-13C]Ketoleucine for Cellular Metabolic Flux Sensing

P. TomHon, J. Gyesi, A. Abdurraheem, S. McBride, A. Samoilenko, C. Oladun, E. Curran, M. Pike, S. D. Welch, S. Scofield, B. M. Goodson, M. Sadagurski, T. Theis, and E. Y. Chekmenev Chem. Eur. J. (2025) e02734

Publication figure for Machine Learning-Guided Optimization of SABRE Hyperpolarization for α-Ketoglutarate in Acetone–Water
2025

Machine Learning-Guided Optimization of SABRE Hyperpolarization for α-Ketoglutarate in Acetone–Water

E. Curran, S. Sadeghi, S. McBride, K. Mattsson, M. Pike, R. Harrison, M. Abdulmojeed, F. Theiss, P. TomHon, E. Chekmenev, M. Abolhasani, T. Theis Anal. Chem. (2025)

Publication figure for Machine Learning-Guided Optimization of SABRE Hyperpolarization for α-Ketoglutarate in Acetone-Water.
2025

Machine Learning-Guided Optimization of SABRE Hyperpolarization for α-Ketoglutarate in Acetone-Water.

E. Curran, S. Sadeghi, S. McBride, K. Mattsson, M. Pike, R. Harrison, M. Abdulmojeed, F. Theiss, P. TomHon, E. Chekmenev, M. Abolhasani, T. Theis ChemRxiv(2025) 10.26434/chemrxiv-2025-62dkg

Publication figure for Multidimensional pH-Temperature Mapping of SABRE-SHEATH 13C Hyperpolarization of [1-13C]Pyruvate
2025

Multidimensional pH-Temperature Mapping of SABRE-SHEATH 13C Hyperpolarization of [1-13C]Pyruvate

I. Adelabu, J. Gyesi, MRH. Chowdhury, C. Oladun, S. Nantogma, G. Foren, A. Samoilenko, J. Ettedgui, R. E. Swenson, M. C. Krishna, P. TomHon, T. Theis, H. de Maissin, A. B. Schmidt, B. M. Goodson, S. Scofield, L. Stilgenbauer, M. Sadagurski, E. Y. Chekmenev J. Phys. Chem. B (2025)

Publication figure for Ultra-low field 13C MRI of hyperpolarized pyruvate
2025

Ultra-low field 13C MRI of hyperpolarized pyruvate

Thomas Boele, Stephen J McBride, Megan Pike, Erica Curran, Patrick TomHon, Hester Braaksma, Sheng Shen, Neha Koonjoo, David E Korenchan, Eduard Chekmenev, Thomas Theis, David EJ Waddington, Matthew S Rosen ArXiv (2025) arXiv:2509.09966

Publication figure for SABRE-SHEATH hyperpolarized 15N2-imidazole for Zn2+ sensing
2025

SABRE-SHEATH hyperpolarized 15N2-imidazole for Zn2+ sensing

B. K. S. Dhali, A. Abdurraheem, M. Abdulmojeed, A. Samoilenko, M. Pike, R. J. Harrison, F. Theiss, B. M. Goodson, E. Y. Chekmenev, and T. Theis Chem. Commun. (2025)

Publication figure for Roadmap on Advancements of the FHI-aims Software Package
2025

Roadmap on Advancements of the FHI-aims Software Package

J. W. Abbott, et al. ArXiv (2025)

Publication figure for Efficient 15N Hyperpolarization of [15N3]Metronidazole Antibiotic via Spin-Relayed Pulsed SABRE-SHEATH
2025

Efficient 15N Hyperpolarization of [15N3]Metronidazole Antibiotic via Spin-Relayed Pulsed SABRE-SHEATH

S. Nantogma, S. L. Eriksson, T. Theis, W. S. Warren, B. M. Goodson, E. Y. Chekmenev J. Magn. Reson. Open(2025) 100208

Publication figure for RASER for Increased Spectral Resolution in Carbon-13 NMR
2025

RASER for Increased Spectral Resolution in Carbon-13 NMR

C. Nelson, A. B. Schmidt, I. Adelabu, S. Nantogma, S. Dilday, N. Volya, I. Mandzhieva, V. G. Kiselev, A. Abdurraheem, H. de Maissin, S. Lehmkuhl, S. Appelt, E. Y. Chekmenev and T. Theis Analytical Chemistry (2025) 97 (16), 8738-8746 DOI: 10.1021/acs.analchem.4c05527 Cover article

Publication figure for Zero-Field NMR and Millitesla-SLIC Spectra for >200 Molecules from Density Functional Theory and Spin Dynamics
2025

Zero-Field NMR and Millitesla-SLIC Spectra for >200 Molecules from Density Functional Theory and Spin Dynamics

I. Mandzhieva #, F. Theiss #, X. He , A. Ortmeier , A. Koirala, S. McBride, S. DeVience, M. S. Rosen, V. Blum, T. Theis J. Chem. Inf. Model. (2025), 65, 14, 7554–7568

Publication figure for Zero-field NMR and millitesla-SLIC spectra for > 200 molecules from density functional theory and spin dynamics
2025

Zero-field NMR and millitesla-SLIC spectra for > 200 molecules from density functional theory and spin dynamics

I. Mandzhieva #, F. Theiss #, X. He , A. Ortmeier , A. Koirala, S. McBride, S. DeVience, M. Rosen, V. Blum, T. Theis ChemRxiv (2025) 10.26434/chemrxiv-2025-fvm85-v2

Publication figure for Photo-Ejected Ligands Hyperpolarized by Parahydrogen in Reversible Exchange
2025

Photo-Ejected Ligands Hyperpolarized by Parahydrogen in Reversible Exchange

E. E. Brown, R. J. Harrison, D. Havrylyuk, S. J. McBride, E. C. Glazer, F. N. Castellano, and T. Theis Chem. Commun. (2025)

Publication figure for Scalable Hyperpolarized MRI Enabled by Ace-SABRE of [1-13C]Pyruvate
2025

Scalable Hyperpolarized MRI Enabled by Ace-SABRE of [1-13C]Pyruvate

S. J. McBride, M. Pike, E. Curran, A. Zavriyev, B. Adebesin, L. Tucker, J. M. Harzan, I. M. Senanayake, S. Shen, M. Abdulmojeed, F. Theiss, T. Boele, T. P. Gade, S. B. Duckett, B. M. Goodson, M. S. Rosen, E. Y. Chekmenev, H. Yuan, C. Dedesma, S. Kadlecek, T. Theis, P. TomHon Angew. Chem. Int. Ed. (2025), e202501231

Publication figure for Scalable Hyperpolarized MRI Enabled by Ace-SABRE of [1-13C]Pyruvate
2025

Scalable Hyperpolarized MRI Enabled by Ace-SABRE of [1-13C]Pyruvate

S. McBride , M. Pike , E. Curran , A. Zavriyev , B. Adebesin , L. Tucker , J. Harzan , I. Senanayake , M. Abdulmojeed , F. Theiss , S. Shen , T. Boele , S. B. Duckett , B. M. Goodson , M. S. Rosen , E. Y. Chekmenev , H. Yuan , C. Dedesma , T. Gade , S. Kadlecek , T. Theis, and P. M. TomHon ChemRxiv (2025)

Publication figure for 15N SABRE-SHEATH and NMR/DFT Characterization of Amino-Metronidazole, a Metabolic Product of the Antibiotic and Prospective Hypoxia Contrast Agent Metronidazole
2025

15N SABRE-SHEATH and NMR/DFT Characterization of Amino-Metronidazole, a Metabolic Product of the Antibiotic and Prospective Hypoxia Contrast Agent Metronidazole

I. M. Senanayake, Md S. Alam, M. S. H. Kabir, A. F. Petrilla, Z. Siraj, T. Theis, E. Y. Chekmenev, and B. M. Goodson J. Phys. Chem. B (2025), 129, 5, 1662–1669

Publication figure for Indirect Zero-Field Nuclear Magnetic Resonance Spectroscopy
2025

Indirect Zero-Field Nuclear Magnetic Resonance Spectroscopy

K. Buckenmaier, R. Neumann, F. Bullinger, N. Kempf, P. Povolni, J. Engelmann, J. Samlow, J.-B. Hövener, K. Scheffler, A. Ortmeier, M. Plaumann, R. Körber, T. Theis, A. N. Pravdivtsev Anal. Chem. (2025), 97, 32, 17336–17344

Publication figure for Indirect Zero Field NMR Spectroscopy
2024

Indirect Zero Field NMR Spectroscopy

K. Buckenmaier, R. Neumann, F. Bullinger, N. Kempf, P. Povolni, J. Engelmann, J. Samlow, J.-B. Hövener, K. Scheffler, A. Ortmeier, M. Plaumann, R. Körber, T. Theis, A. N. Pravdivtsev aRxiv (2024)

Publication figure for SABRE-SHEATH Hyperpolarization of [1,5-13C2]Z-OMPD for Noninvasive pH Sensing
2024

SABRE-SHEATH Hyperpolarization of [1,5-13C2]Z-OMPD for Noninvasive pH Sensing

M. B. Abdulmojeed, M. Grashei, S. Dilday, P. Wodtke, S. McBride, A. Davidsson, E. Curran, Ke. MacCulloch, A. Browning, P. TomHon, A. B Schmidt, E. Y. Chekmenev, F. Schilling, and T. Theis ACS Sensors (2024) 9, 12, 6372–6381

Publication figure for Carbon‐13 Hyperpolarization of α‐Ketocarboxylates with Parahydrogen in Reversible Exchange
2024

Carbon‐13 Hyperpolarization of α‐Ketocarboxylates with Parahydrogen in Reversible Exchange

S. J. McBride, K. MacCulloch, P. TomHon, A. Browning, S. Meisel, M. Abdulmojeed, B. M. Goodson, E. Y. Chekmenev, and T. Theis ChemMedChem (2024) FRONT Cover article

Publication figure for Toward Next-Generation Molecular Imaging with a Clinical Low-Field (0.064 T) Point-of-Care MRI Scanner
2024

Toward Next-Generation Molecular Imaging with a Clinical Low-Field (0.064 T) Point-of-Care MRI Scanner

N. Iqbal, D. O. Brittin, P. J. Daluwathumullagamage, Md S. Alam, I. M. Senanayake, A. T. Gafar, Z. Siraj, A. Petrilla, M. Pugh, B. Tonazzi, S. Ragunathan, M. E. Poorman, L. Sacolick, T. Theis, M. S. Rosen, E. Y. Chekmenev, and B. M. Goodson Anal. Chem. (2024)

Publication figure for Toward Ultra-high-quality-factor Wireless Masing Magnetic Resonance Sensing
2024

Toward Ultra-high-quality-factor Wireless Masing Magnetic Resonance Sensing

I. Adelabu, S. Nantogma, S. Fleischer, M. Abdulmojeed, H. de Maissin, A. B. Schmidt, S. Lehmkuhl, M. S. Rosen, S. Appelt, T. Theis, C. Qian, E. Y. Chekmenev Angew. Chem. (2024)

Publication figure for Zero to Ultralow Magnetic Field NMR of [1-13C]Pyruvate and [2-13C]Pyruvate Enabled by SQUID Sensors and Hyperpolarization
2024

Zero to Ultralow Magnetic Field NMR of [1-13C]Pyruvate and [2-13C]Pyruvate Enabled by SQUID Sensors and Hyperpolarization

J. Z. Myers, F. Bullinger, N. Kempf, M. Plaumann, A. Ortmeier, T. Theis, P. Povolni, J. Romanowski, J. Engelmann, K. Scheffler, J.-B. Hövener, K. Buckenmaier, R. Körber, and A. N. Pravdivtsev. Physical Review B (2024), 109, 184443. DOI: 10.1103/PhysRevB.109.184443

Publication figure for Molecular NMR shieldings, J-couplings, and magnetizabilities from numeric atom-centered orbital based density-functional calculations
2024

Molecular NMR shieldings, J-couplings, and magnetizabilities from numeric atom-centered orbital based density-functional calculations

R. Laasner, I. Mandzhieva, W. P. Huhn, J. Collel, V. Yu4, W. S. Warren, T. Theis, and V. Blum Electron. Struct. IOPScience (2024)

Publication figure for SABRE-Hyperpolarization Dynamics of [1-13C]Pyruvate Monitored by In Situ Zero- to Ultra-Low Field NMR
2024

SABRE-Hyperpolarization Dynamics of [1-13C]Pyruvate Monitored by In Situ Zero- to Ultra-Low Field NMR

A. Ortmeier, K. MacCulloch, D. A. Barskiy, N. Kempf, J. Z. Myers, R. Körber, A. N. Pravdivtsev, K. Buckenmaier, and T. Theis J. Magn. Reson. Open, (2024) 19, 100149

Publication figure for 13C MRI of hyperpolarized pyruvate at 120 µT
2024

13C MRI of hyperpolarized pyruvate at 120 µT

N. Kempf, R. Körber, M. Plaumann, A. N. Pravdivtsev, J. Engelmann, J. Boldt, K. Scheffler, T. Theis & K. Buckenmaier Nature Sci. Rep. (2024) 14, 4468

Publication figure for Carbon-13 Radiofrequency Amplification by Stimulated Emission of Radiation of the Hyperpolarized Ketone and Hemiketal Forms of Allyl [1-13C]Pyruvate
2024

Carbon-13 Radiofrequency Amplification by Stimulated Emission of Radiation of the Hyperpolarized Ketone and Hemiketal Forms of Allyl [1-13C]Pyruvate

S. Nantogma, H. de Maissin, I. Adelabu, A. Abdurraheem, C. Nelson, N. V. Chukanov, O. G. Salnikov, I. V. Koptyug, S. Lehmkuhl, A. B. Schmidt, S. Appelt, T. Theis, and E. Y. Chekmenev ACS Sens. (2024) Cover Article

Publication figure for Delivering Robust Proton-Only Sensing of Hyperpolarized [1,2-13C2]-Pyruvate Using Broad-Spectral-Range Nuclear Magnetic Resonance Pulse Sequences
2023

Delivering Robust Proton-Only Sensing of Hyperpolarized [1,2-13C2]-Pyruvate Using Broad-Spectral-Range Nuclear Magnetic Resonance Pulse Sequences

I. Mandzhieva, I. Adelabu, S. Nantogma, E. Y. Chekmenev, and T. Theis ACS Sens. (2023)

Publication figure for Spin dynamics of [1,2-13C2]pyruvate hyperpolarization by parahydrogen in reversible exchange at micro Tesla fields
2023

Spin dynamics of [1,2-13C2]pyruvate hyperpolarization by parahydrogen in reversible exchange at micro Tesla fields

A. Browning, K. MacCulloch, P. TomHon, I. Mandzhieva, E. Y. Chekmenev, B. M. Goodson, S. Lehmkuhl, and T. Theis. Physical Chemistry Chemical Physics (2023), 25, 16446–16458. DOI: 10.1039/D3CP00843F

Publication figure for Exploring synchrony and chaos of parahydrogen-pumped two-compartment radio-frequency amplification by stimulated emission of radiation
2023

Exploring synchrony and chaos of parahydrogen-pumped two-compartment radio-frequency amplification by stimulated emission of radiation

L. Lohmann, S. Lehmkuhl, S. Fleischer, M. S. Rosen, E. Y. Chekmenev, T. Theis, A. Adams, and S. Appelt Phys. Rev. A (2023) 108, 022806

Publication figure for Facile Hyperpolarization Chemistry for Molecular Imaging and Metabolic Tracking of [1-13C]Pyruvate In Vivo
2023

Facile Hyperpolarization Chemistry for Molecular Imaging and Metabolic Tracking of [1-13C]Pyruvate In Vivo

K. MacCulloch, A. Browning, D. O. Guarin Bedoya, S. J. McBride, M. B. Abdulmojeed, C. Dedesma, B. M. Goodson, M. S. Rosen, E. Y. Chekmenev, Yi-Fen Yen, P. TomHon, and T. Theis. Journal of Magnetic Resonance Open (2023), 16–17, 100129. DOI: 10.1016/j.jmro.2023.100129

Publication figure for 13C Radiofrequency Amplification by Stimulated Emission of Radiation Threshold Sensing of Chemical Reactions
2023

13C Radiofrequency Amplification by Stimulated Emission of Radiation Threshold Sensing of Chemical Reactions

A. B. Schmidt, I. Adelabu, C. Nelson, S. Nantogma, V. G. Kiselev, M. Zaitsev, A. Abdurraheem, H. Maissin, M. S. Rosen, S. Lehmkuhl, S. Appelt, T. Theis, and E. Y. Chekmenev J. Am. Chem. Soc. (2023)

Publication figure for Parahydrogen in Reversible Exchange Induces Long-Lived 15N Hyperpolarization of Anticancer Drugs Anastrozole and Letrozole
2023

Parahydrogen in Reversible Exchange Induces Long-Lived 15N Hyperpolarization of Anticancer Drugs Anastrozole and Letrozole

K. MacCulloch, A. Browning, P. TomHon, S. Lehmkuhl, E. Y. Chekmenev, and T. Theis Anal. Chem. (2023)

Publication figure for LIGHT-SABRE Hyperpolarizes 1-13C-Pyruvate Continuously without Magnetic Field Cycling
2023

LIGHT-SABRE Hyperpolarizes 1-13C-Pyruvate Continuously without Magnetic Field Cycling

A. N. Pravdivtsev, K. Buckenmaier, N. Kempf, G. Stevanato, K. Scheffler, J. Engelmann, M. Plaumann, R. Koerber, J.-B. Hövener, and T. Theis J. Phys. Chem. C (2023) 127, 14, 6744–6753

Publication figure for SABRE Hyperpolarization with up to 200 bar Parahydrogen in Standard and Quickly Removable Solvents
2023

SABRE Hyperpolarization with up to 200 bar Parahydrogen in Standard and Quickly Removable Solvents

A. Duchowny, J. Denninger, L. Lohmann, T. Theis, S. Lehmkuhl, and A. Adams Int. J. Mol. Sci. (2023), 24(3), 2465

Publication figure for Efficient SABRE-SHEATH Hyperpolarization of Potent Branched-Chain-Amino-Acid Metabolic Probe [1-13C]Ketoisocaproate
2023

Efficient SABRE-SHEATH Hyperpolarization of Potent Branched-Chain-Amino-Acid Metabolic Probe [1-13C]Ketoisocaproate

I. Adelabu, M. R. H. Chowdhury, S. Nantogma, C. Oladun, F. Ahmed, L. Stilgenbauer, M. Sadagurski, T. Theis, B. M. Goodson, and E. Y. Chekmenev. Metabolites (2023), 13 (2), 200. DOI: 10.3390/metabo13020200

Publication figure for Catalyst-Free Aqueous Hyperpolarized [1-13C]Pyruvate Obtained by Re-Dissolution Signal Amplification by Reversible Exchange
2022

Catalyst-Free Aqueous Hyperpolarized [1-13C]Pyruvate Obtained by Re-Dissolution Signal Amplification by Reversible Exchange

A. B. Schmidt, H. de Maissin, I. Adelabu, S. Nantogma, J. Ettedgui, P. TomHon, B. M. Goodson, T. Theis, and E. Y. Chekmenev ACS Sens. (2022) 7, 11, 3430–3439

Publication figure for Triplet Photosensitized para-Hydrogen Induced Polarization
2022

Triplet Photosensitized para-Hydrogen Induced Polarization

E. E. Brown, I. Mandzhieva, P. M. TomHon, T Theis, and F. N. Castellano ACS Central Science (2022) Work highlighted in: “para-Hydrogen-Induced Polarization Enabled by Visible Light Activation” by Chen, Niu and Liu in ACS Cent. Sci. 2022, 8, 12, 1573–1575

Publication figure for Parahydrogen-Induced Carbon-13 Radiofrequency Amplification by Stimulated Emission of Radiation
2022

Parahydrogen-Induced Carbon-13 Radiofrequency Amplification by Stimulated Emission of Radiation

C. Nelson, A. B. Schmidt, I. Adelabu, S. Nantogma, V. G. Kiselev, A. Abdurraheem, H. de Maissin, S. Lehmkuhl, S. Appelt , T Theis, E. Chekmenev Angew. Chem. Int. Ed. (2022)

Publication figure for Interplay of Near-Zero-Field Dephasing, Rephasing, and Relaxation Dynamics and [1-13C]Pyruvate Polarization Transfer Efficiency in Pulsed SABRE-SHEATH
2022

Interplay of Near-Zero-Field Dephasing, Rephasing, and Relaxation Dynamics and [1-13C]Pyruvate Polarization Transfer Efficiency in Pulsed SABRE-SHEATH

S. Nantogma, S. L. Eriksson, I. Adelabu, I. Mandzhieva, A. Browning, P. TomHon, W. S. Warren, T. Theis, B. M. Goodson, and E. Y. Chekmenev J. Phys. Chem. A (2022)

Publication figure for Proton-Only Sensing of Hyperpolarized [1,2-13C2]Pyruvate
2022

Proton-Only Sensing of Hyperpolarized [1,2-13C2]Pyruvate

I. Mandzhieva, I. Adelabu, E. Y. Chekmenev, and T. Theis ACS Sensors (2022)

Publication figure for Rapid 13C Hyperpolarization of the TCA Cycle Intermediate α-Ketoglutarate via SABRE-SHEATH
2022

Rapid 13C Hyperpolarization of the TCA Cycle Intermediate α-Ketoglutarate via SABRE-SHEATH

I. Adelabu, J. Ettedgui, S. M. Joshi, S. Nantogma, R. H. Chowdhury, S. McBride, T. Theis, V. R. Sabbasani, M. Chandrasekhar, D. Sail, K. Yamamoto, R. E. Swenson, M. C. Krishna, B. M. Goodson, and E. Y. Chekmenev Anal. Chem. (2022) PDF_65

Publication figure for RASER MRI: Magnetic Resonance Images formed Spontaneously exploiting Cooperative Nonlinear Interaction
2022

RASER MRI: Magnetic Resonance Images formed Spontaneously exploiting Cooperative Nonlinear Interaction

S. Lehmkuhl, S. Fleischer, L. Lohmann, M. S. Rosen, E. Y. Chekmenev, A. Adams, T. Theis, S. Appelt Sci. Adv. (2022) 8, 28

Publication figure for Instrumentation for Hydrogenative Parahydrogen-Based Hyperpolarization Techniques
2022

Instrumentation for Hydrogenative Parahydrogen-Based Hyperpolarization Techniques

A. B. Schmidt, C. R. Bowers, K. Buckenmaier, E. Y. Chekmenev, H. de Maissin, J. Eills, F. Ellermann, S. Glöggler, J. W. Gordon, S. Knecht, I. V. Koptyug, J. Kuhn, A. N. Pravdivtsev, F. Reineri, T. Theis, K. Them, and J. Hövener Anal. Chem. (2022)

Publication figure for Temperature Cycling Enables Efficient 13C SABRE-SHEATH Hyperpolarization and Imaging of [1-13C]Pyruvate
2022

Temperature Cycling Enables Efficient 13C SABRE-SHEATH Hyperpolarization and Imaging of [1-13C]Pyruvate

P. TomHon, M. Abdulmojeed, I. Adelabu ,S. Nantogma, M. S. H. Kabir, S. Lehmkuhl, E. Y. Chekmenev and T. Theis J. Am. Chem. Soc. (2022) Also: ChemRxiv (2021) 10.33774/chemrxiv-2021-cpz32

Publication figure for Order-Unity 13C Nuclear Polarization of [1-13C]Pyruvate in Seconds and the Interplay of Water and SABRE Enhancement
2021

Order-Unity 13C Nuclear Polarization of [1-13C]Pyruvate in Seconds and the Interplay of Water and SABRE Enhancement

I. Adelabu, P. TomHon, M. S. H. Kabir, S. Nantogma, M. Abdulmojeed, I. Mandzhieva, J. Ettedgui, R. E. Swenson, M. C. Krishna, T. Theis, B. M. Goodson, E. Y. Chekmenev ChemPhysChem (2021) 23, e202100839

Publication figure for A Versatile Compact Parahydrogen Membrane Reactor
2021

A Versatile Compact Parahydrogen Membrane Reactor

P. M. TomHon, S. Han, S. Lehmkuhl, S. Appelt, E. Y. Chekmenev, M. Abolhasani, and T. Theis ChemPhysChem (2021) Cover article

Publication figure for Density Functional Theory Study of Reaction Equilibria in Signal Amplification by Reversible Exchange
2021

Density Functional Theory Study of Reaction Equilibria in Signal Amplification by Reversible Exchange

K. Lin, P. TomHon, S. Lehmkuhl, R. Laasner, T. Theis, V. Blum ChemPhysChem (2021) Cover article

Publication figure for Hyperpolarization of common antifungal agents with SABRE
2021

Hyperpolarization of common antifungal agents with SABRE

K. MacCulloch, P. TomHon, A. Browning, E. Akeroyd, S. Lehmkuhl, E. Y. Chekmenev and T. Theis Magn. Reson. Chem. (2021) 59, 12, 1225 SPECIAL ISSUE RESEARCH ARTICLE

Publication figure for Background-Free Proton NMR Spectroscopy with Radiofrequency Amplification by Stimulated Emission of Radiation
2021

Background-Free Proton NMR Spectroscopy with Radiofrequency Amplification by Stimulated Emission of Radiation

B. Joalland, T. Theis, S. Appelt and E. Y. Chekmenev Angew. Chem. Int. Ed.(2021) INSIDE COVER

Publication figure for Intensified continuous extraction of switchable hydrophilicity solvents triggered by carbon dioxide
2021

Intensified continuous extraction of switchable hydrophilicity solvents triggered by carbon dioxide

S. Han, M. Ramezani, P. TomHon, K. Abdel-Latif, R. W. Epps, T. Theis and M. Abolhasani Green Chem., 2021, Advance Article

Publication figure for Micron-Scale NV-NMR Spectroscopy with Signal Amplification by Reversible Exchange
2021

Micron-Scale NV-NMR Spectroscopy with Signal Amplification by Reversible Exchange

N. Arunkumar, D. B. Bucher, M. J. Turner, P. M. TomHon, D. Glenn, S. Lehmkuhl, M. D. Lukin, H. Park, M. S. Rosen, T. Theis, and R. L. Walsworth PRX Quantum (2021) 2, 010305 ####

Publication figure for SABRE and PHIP pumped RASER and the Route to Chaos
2021

SABRE and PHIP pumped RASER and the Route to Chaos

S. Appelt, S. Lehmkuhl, S. Fleischer , B. Joalland, N. M. Ariyasingha, E. Y. Chekmenev, and T. Theis J. Magn. Reson. (2021)

Publication figure for SABRE polarized low field rare-spin spectroscopy
2020

SABRE polarized low field rare-spin spectroscopy

S. Lehmkuhl, M. Suefke, A. Kentner, Y. Yen, B. Blümich, M. S. Rosen, S. Appelt and T. Theis J. Chem. Phys. 152, 184202 (2020)

Publication figure for Rational ligand choice extends the SABRE substrate scope
2020

Rational ligand choice extends the SABRE substrate scope

J.Colell, A. Logan, Z. Zhou, J. Lindale, Raul Laasner, R. Shchepin, E. Chekmenev, V. Blum, W. Warren, S. J. Malcolmson and T. Theis Chem. Commun. (2020)

Publication figure for Parahydrogen-Induced Radio Amplification by Stimulated Emission of Radiation
2020

Parahydrogen-Induced Radio Amplification by Stimulated Emission of Radiation

Parahydrogen‐Induced Radio Amplification by Stimulated Emission of Radiation” B. Joalland, N. M. Ariyasingha, S. Lehmkuhl , T. Theis, S. Appelt, E. Y. Chekmenev Angew. Chem. Int. Ed. (2020)DOI:10.1002/anie.201916597

Publication figure for Application of 15N2-Diazirines as a Versatile Platform for Hyperpolarization of Biological Molecules by d-DNP
2020

Application of 15N2-Diazirines as a Versatile Platform for Hyperpolarization of Biological Molecules by d-DNP

H. Park, G. Zhang, J. Bae, T. Theis, W. Warren and Q. Wang. Bioconjugate Chem. (2020)DOI: 10.1021/acs.bioconjchem.0c00028

Publication figure for Automated Pneumatic Shuttle for Magnetic Field Cycling and Parahydrogen Hyperpolarized Multidimensional NMR
2020

Automated Pneumatic Shuttle for Magnetic Field Cycling and Parahydrogen Hyperpolarized Multidimensional NMR

P. TomHon, E. Akeroyd, S. Lehmkuhl, E. Y. Chekmenev and T. Theis, J. Magn. Reson.(2020) DOI: 10.1016/j.jmr.2020.106700

Publication figure for Parahydrogen-Induced Hyperpolarization of Gases
2020

Parahydrogen-Induced Hyperpolarization of Gases

K. V. Kovtunov, I. V. Koptyug M. Fekete S. B. Duckett, T. Theis, B. Joalland, E. Y. Chekmenev “Parahydrogen‐induced Hyperpolarization of Gases” Angew. Chem. Int. Ed. DOI

Publication figure for Iodonitrene in Action: Direct Transformation of Amino Acids into Terminal Diazirines and 15N2-Diazirines and their Application as Hyperpolarized Markers
2019

Iodonitrene in Action: Direct Transformation of Amino Acids into Terminal Diazirines and 15N2-Diazirines and their Application as Hyperpolarized Markers

Thomas Glachet, Hamid Marzag, Nathalie Saraiva Rosa, Johannes F. P. Colell, Guannan Zhang, Warren Warren, Xavier Franck, Thomas Theis, Vincent Reboul J. Am. Chem. Soc. (2019)

Publication figure for Selective hyperpolarization of heteronuclear singlet states via pulsed microtesla SABRE
2019

Selective hyperpolarization of heteronuclear singlet states via pulsed microtesla SABRE

CPN Tanner, JR Lindale, SL Eriksson, Z Zhou, JFP Colell, T Theis, W. Warren J. Chem. Phys. (2019) 151 (4), 044201

Publication figure for Quasi-Resonance Fluorine-19 Signal Amplification By Reversible Exchange
2019

Quasi-Resonance Fluorine-19 Signal Amplification By Reversible Exchange

Nuwandi M Ariyasingha, Jacob R Lindale, Shannon L Eriksson, Grayson P Clark, Thomas Theis, Roman V Shchepin, Nikita V Chukanov, Kirill V Kovtunov, Igor V Koptyug, Warren S Warren, Eduard Y Chekmenev Chem. Phys. Lett. (2019) 10, 15, 4229

Publication figure for Terminal Diazirines Enable Reverse Polarization Transfer from 15N2 Singlets
2019

Terminal Diazirines Enable Reverse Polarization Transfer from 15N2 Singlets

G. Zhang, J. F.P. Colell, T. Glachet, J. R. Lindale, V. Reboul, T. Theis, W. Warren Angewandte Chemie (2019) DOI

Publication figure for Nuclear Magnetic Resonance Spectroscopy | Hyperpolarization for Sensitivity Enhancement
2019

Nuclear Magnetic Resonance Spectroscopy | Hyperpolarization for Sensitivity Enhancement

B. M.Goodson, B. Kidd, J. B. Hövener, L. Schröder, T. Theis, N. Whiting, E. Y.Chekmenev, Encyclopedia of Analytical Science(3rd Ed.) ELSEVIER DOI

Publication figure for Hyperpolarizing Concentrated Metronidazole 15NO2 Group Over Six Chemical Bonds with More Than 15% Polarization and 20 Minute Lifetime
2019

Hyperpolarizing Concentrated Metronidazole 15NO2 Group Over Six Chemical Bonds with More Than 15% Polarization and 20 Minute Lifetime

R. V. Shchepin, J. R. Birchall, N. V. Chukanov, K. V. Kovtunov, I. V. Koptyug, T. Theis, W. S. Warren, J. G. Gelovani, B. M. Goodson, S. Shokouhi, M. S. Rosen, Y. Yen, W. Pham, E. Y. Chekmenev, Chem. Eur. J. (2019) DOI

Publication figure for Unveiling coherently driven hyperpolarization dynamics in signal amplification by reversible exchange
2019

Unveiling coherently driven hyperpolarization dynamics in signal amplification by reversible exchange

J. R. Lindale, S. L. Eriksson, C. P. N. Tanner, Z. Zhou, J. F. P. Colell, G. Zhang, J. Bae, E. Y. Chekmenev, T. Theis, W. S. Warren Nature Communications(2019) DOI: ####

Publication figure for Quasi-Resonance Signal Amplification by Reversible Exchange
2018

Quasi-Resonance Signal Amplification by Reversible Exchange

T. Theis, N. M. Ariyasingha, R. V. Shchepin, J. R. Lindale, W. S. Warren and E. Y. Chekmenev J. Phys. Chem. Lett., 2018, 9 (20), pp 6136–6142 DOI: 10.1021/acs.jpclett.8b02669

Publication figure for 15N4-1,2,4,5-tetrazines as potentialmolecular tags: Integrating bioorthogonal chemistry with hyperpolarization andunearthing para-N2
2018

15N4-1,2,4,5-tetrazines as potentialmolecular tags: Integrating bioorthogonal chemistry with hyperpolarization andunearthing para-N2

J. Bae, Z. Zhou, T. Theis, W. Warren and Qiu Wang Science Advances 4, 3, eaar2978, DOI: 10.1126/sciadv.aar2978 corresponding author

Publication figure for Parahydrogen-Based Hyperpolarization for Biomedicine
2018

Parahydrogen-Based Hyperpolarization for Biomedicine

Angew. Chem. Int. Ed. 10.1002/anie.201711842 “Parahydrogen‐based Hyperpolarization for Biomedicine” J. Hovener, A. N. Pravdivtsev, B. Kidd, C. R. Bowers, S. Glöggler, K. V. Kovtunov, M. Plaumann, R. Katz-Brull, K. Buckenmaier, A. Jerschow, F. Reineri, T. Theis, R. V Shchepin, S. Wagner, N. Zacharias, P. Bhattacharya, E. Y. Chekmenev Angew. Chem. Int. Ed. 10.1002/anie.201711842

Publication figure for Spin Relays Enable Efficient Long-Range Heteronuclear Signal Amplification By Reversible Exchange
2017

Spin Relays Enable Efficient Long-Range Heteronuclear Signal Amplification By Reversible Exchange

R. V. Shchepin, L. Jaigirdar, T. Theis, W. S. Warren, B. M. Goodson, and E. Y. Chekmenev J. Phys. Chem. C (2017), DOI: 10.1021/acs.jpcc.7b11485

Publication figure for Diazirines as Potential Molecular Imaging Tags: Probing the Requirements for Efficient and Long-Lived SABRE-Induced Hyperpolarization
2017

Diazirines as Potential Molecular Imaging Tags: Probing the Requirements for Efficient and Long-Lived SABRE-Induced Hyperpolarization

FRONT COVER on Angewandte Chemie ““ K. Shen, A. W. J. Logan, J. F. P. Colell, J. Bae, G. X. Ortiz Jr., T. Theis, W. S. Warren, S. J. Malcolmson, Q. Wang V.I.P.Angew. Chem. Int. Ed. (2017)DOI: 10.1002/anie.201704970

Publication figure for Instrumentation for nuclear magnetic resonance in zero and ultralow magnetic field
2017

Instrumentation for nuclear magnetic resonance in zero and ultralow magnetic field

Cover article “” M. C. D. Tayler, T. Theis, T. F. Sjolander, J. W. Blanchard, A. Kentner, S. Pustelny, A. Pines, D. Budker arXiv:1705.04489 (2017) (invited contribution to Rev. Sci. Inst.

Publication figure for Long-Lived 13C2 Nuclear Spin States Hyperpolarized by Parahydrogen in Reversible Exchange at Micro-Tesla Fields
2017

Long-Lived 13C2 Nuclear Spin States Hyperpolarized by Parahydrogen in Reversible Exchange at Micro-Tesla Fields

Z. Zhou, J. Yu, J. F. P. Colell, R. Laasner, A. W. J. Logan, D. A. Barskiy, R. V. Shchepin, E. Y. Chekmenev, V. Blum, W. S. Warren, and T. Theis J. Phys. Chem. Lett., (2017) DOI: 10.1021/acs.jpclett.7b00987

Publication figure for Toward Hyperpolarized 19F Molecular Imaging via Reversible Exchange with Parahydrogen
2017

Toward Hyperpolarized 19F Molecular Imaging via Reversible Exchange with Parahydrogen

Cover article “” R. V. Shchepin, B. M. Goodson, T. Theis, W. S. Warren, E. Y. Chekmenev ChemPhysChem (2017) DOI: 10.1002/cphc.201700594

Publication figure for The Absence of Quadrupolar Nuclei Facilitates Efficient 13C Hyperpolarization via Reversible Exchange with Parahydrogen
2017

The Absence of Quadrupolar Nuclei Facilitates Efficient 13C Hyperpolarization via Reversible Exchange with Parahydrogen

D. A. Barskiy, R. V. Shchepin, C. P. N. Tanner, J. F. P. Colell, B. M. Goodson, T. Theis, W. S. Warren, and E. Y. Chekmenev Chem. Phys. Chem. (2017) DOI: 10.1002/cphc.201700416

Publication figure for Direct Hyperpolarization of Nitrogen-15 in Aqueous Media with Parahydrogen in Reversible Exchange
2017

Direct Hyperpolarization of Nitrogen-15 in Aqueous Media with Parahydrogen in Reversible Exchange

J. F. P. Colell, M. Emondts, A. W. J. Logan, K. Shen, J. Bae, R. V. Shchepin, G. X. Ortiz, P. Spannring, Q. Wang, S. J. Malcolmson, E. Y. Chekmenev, M. C. Feiters, F.P.J.T. Rutjes, B. Bluemich, T. Theis, and Warren S. Warren J. Am. Chem. Soc.(2017) DOI: 10.1021/jacs.7b00569

Publication figure for Generalizing, Extending, and Maximizing Nitrogen-15 Hyperpolarization induced by Parahydrogen in Reversible Exchange
2017

Generalizing, Extending, and Maximizing Nitrogen-15 Hyperpolarization induced by Parahydrogen in Reversible Exchange

Cover article see “” J. F. P. Colell, A. W. J. Logan, Z. Zhou, R. V. Shchepin, D. A. Barskiy, G. X. Ortiz, Q. Wang, S. J. Malcolmson, E. Y. Chekmenev, W. S. Warren, T. Theis J. Phys. Chem. C (2017), DOI: 10.1021/acs.jpcc.6b12097

Publication figure for Over 20% 15N Hyperpolarization in Under One Minute for Metronidazole, an Antibiotic and Hypoxia Probe
2016

Over 20% 15N Hyperpolarization in Under One Minute for Metronidazole, an Antibiotic and Hypoxia Probe

D. A. Barskiy, R. V. Shchepin, A. M. Coffey, T. Theis, W. S. Warren, B. M. Goodson, and E. Y. Chekmenev J. Am. Chem. Soc. (2016), 138, 26, pp 8080–8083

Publication figure for Hyperpolarization of Nitrogen-15 Schiff Bases by Reversible Exchange Catalysis with para-Hydrogen
2016

Hyperpolarization of Nitrogen-15 Schiff Bases by Reversible Exchange Catalysis with para-Hydrogen

A. Logan, T. Theis, J. Colell, W. Warren, S. Malcolmson Chem. Eur. J. (2016) 22, 10777

Publication figure for 15N Hyperpolarization of Imidazole-15N2 for Magnetic Resonance pH Sensing Via SABRE-SHEATH
2016

15N Hyperpolarization of Imidazole-15N2 for Magnetic Resonance pH Sensing Via SABRE-SHEATH

R. V. Shchepin, D. A. Barskiy, A. M. Coffey, T. Theis, F. Shi, W. S. Warren, B. M. Goodson, E. Y. Chekmenev ACS Sens.(2016) DOI: 10.1021/acssensors.6b0023

Publication figure for Direct and Cost-Efficient Hyperpolarization of Long-lived Nuclear Spin States on Universal 15N2-Diazirine Molecular Tags
2016

Direct and Cost-Efficient Hyperpolarization of Long-lived Nuclear Spin States on Universal 15N2-Diazirine Molecular Tags

T. Theis, G. Ortiz, A. Logan, K. Claytor, Y. Feng, W. Huhn, V. Blum, S. J. Malcolmson, E. Chekmenev, Q. Wang, W. Warren Science Advances (2016) 2 : e1501438

Publication figure for Accessing long lived 1H states via 2H couplings
2016

Accessing long lived 1H states via 2H couplings

Z. Zhou, K. Claytor, W. Warren and T. Theis J. Magn. Reson. (2016) 263 108-115

Publication figure for Hyperpolarization of “Neat” Liquids by NMR Signal Amplification by Reversible Exchange
2015

Hyperpolarization of “Neat” Liquids by NMR Signal Amplification by Reversible Exchange

R. Shchepin, M.Truong, T. Theis, A. Coffey, F. Shi, K. Waddell, W. Warren, B. Goodson, and E. Chekmenev Phys. Chem. Lett. (2015), 6 (10), 1961–1967

Publication figure for 15N Hyperpolarization by Reversible Exchange Using SABRE-SHEATH
2015

15N Hyperpolarization by Reversible Exchange Using SABRE-SHEATH

M. Truong #, T. Theis #, A. Coffey, R. Shchepin, K. Waddell, F. Shi, B. Goodson, W. Warren, E. Chekmenev J. Phys. Chem. C (2015) DOI: 10.1021/acs.jpcc.5b01799 # equal contribution

Publication figure for Microtesla SABRE Enables 10% Nitrogen-15 Nuclear Spin Polarization
2015

Microtesla SABRE Enables 10% Nitrogen-15 Nuclear Spin Polarization

T. Theis, M. Truong, A. Coffey, R. Shchepin, K. Waddell, F. Shi, B. Goodson, W. Warren, E. Chekmenev J. Am. Chem. Soc. (2015) DOI: 10.1021/ja512242d

Publication figure for Accessing long-lived disconnected spin-½ eigenstates through spins > ½
2014

Accessing long-lived disconnected spin-½ eigenstates through spins > ½

K. Claytor, T. Theis, Y. Feng, J. Yu, D. Gooden, W. S. Warren J. Am. Chem. Soc. (2014) DOI:10.1021/ja505792j

Publication figure for LIGHT-SABRE enables efficient in-magnet catalytic hyperpolarization
2014

LIGHT-SABRE enables efficient in-magnet catalytic hyperpolarization

Cover Article: “” T. Theis, M. Truong, A. Coffey, E. Chekmenev, W. S. Warren J. Magn. Reson. (2014), 248, 23-26

Publication figure for Long Lived Polarization Protected by Symmetry: LOLIPOPS
2014

Long Lived Polarization Protected by Symmetry: LOLIPOPS

Y. Feng, T. Theis, T. Wu, K. Claytor, W. S. Warren J. Chem. Phys. (2014) 141, 134307

Publication figure for Analysis of parahydrogen polarized spin systems in low magnetic fields
2014

Analysis of parahydrogen polarized spin systems in low magnetic fields

P. Tuerschmann, J. Colell, T. Theis, B. Blümich, S. Appelt; Phys. Chem. Chem. Phys. (2014) DOI: 10.1039/C4CP01807A

Publication figure for Long-Lived Heteronuclear Spin-Singlet States in Liquids at Zero Magnetic Field
2014

Long-Lived Heteronuclear Spin-Singlet States in Liquids at Zero Magnetic Field

Selected for an Editor’s Choice Highlight: Spotlight on Exceptional Research by the APS “” M. Emondts, M. P. Ledbetter, S. Pustelny, T. Theis, B. Patton, J. W. Blanchard, M. C. Butler, D. Budker, A. Pines; Phys. Rev. Lett. (2014),112, 077601

Publication figure for Measuring Long-Lived 13C2-Singlet State Lifetimes at Natural Abundance
2014

Measuring Long-Lived 13C2-Singlet State Lifetimes at Natural Abundance

K. E. Claytor, T. Theis, Y.Feng and W.S. Warren J. Magn. Reson. (2014), 239, 81-86

Publication figure for Composite and shaped pulses for efficient and robust pumping of dark states in magnetic resonance
2014

Composite and shaped pulses for efficient and robust pumping of dark states in magnetic resonance

T. Theis, Y. Feng, T. Wu, and W. S. Warren J. Chem. Phys. (2014), 140, 014201. ##  2013

Publication figure for Storage of hydrogen spin polarization in long-lived 13C2-singlet order and implications for hyperpolarized magnetic resonance imaging
2013

Storage of hydrogen spin polarization in long-lived 13C2-singlet order and implications for hyperpolarized magnetic resonance imaging

Y. Feng, T. Theis, X. Liang, Q. Wang, P. Zhou, W. S. Warren J. Am. Chem. Soc. (2013), 135(26),9632. Shared first author

Publication figure for Chemical analysis using J-coupling multiplets in zero-field NMR
2013

Chemical analysis using J-coupling multiplets in zero-field NMR

T. Theis, J. W. Blanchard, M.C. Butler, D. Budker, A. Pines; Chem. Phys. Lett. (2013), 580,160

Publication figure for Fundamental aspects of parahydrogen enhanced low field nuclear magnetic resonance
2013

Fundamental aspects of parahydrogen enhanced low field nuclear magnetic resonance

J. Colell, P. Türschmann, S. Glöggler, P. Schleker, T. Theis, M. Ledbetter, D. Budker, A. Pines, B. Blümich, and S. Appelt; Phys. Rev. Lett. (2013), 110(13), 137602

Publication figure for Multiplets at zero magnetic field: the geometry of zero-field NMR
2013

Multiplets at zero magnetic field: the geometry of zero-field NMR

M. C. Butler, M. P. Ledbetter, T. Theis, J. W. Blanchard, D. Budker, A. Pines; J. Chem. Phys. (2013), 138, 184202

Publication figure for Parahydrogen-induced polarization at zero magnetic field
2013

Parahydrogen-induced polarization at zero magnetic field

M. C. Butler, G. Kervern, T. Theis, M. P. Ledbetter, P. J. Ganssle, J.W. Blanchard, D. Budker, A. Pines; J. Chem. Phys. (2013), 138, 234201

Publication figure for High-Resolution Zero-Field NMR J-Spectroscopy of Aromatic Compounds
2013

High-Resolution Zero-Field NMR J-Spectroscopy of Aromatic Compounds

J. W. Blanchard, M. P. Ledbetter, T. Theis, M. C. Butler, Dmitry Budker, A. Pines; J. Am. Chem. Soc. (2013), 135(9),3607

Publication figure for Vibrationally resolved transition state spectroscopy of the F+H2 and F+CH4 reactions
2012

Vibrationally resolved transition state spectroscopy of the F+H2 and F+CH4 reactions

T. I. Yacovitch, E. Garand, J. B. Kim, C. Hock, T. Theis, D. M. Neumark Faraday Discuss. (2012), 157, 399–414

Publication figure for Zero-Field NMR Enhanced by Parahydrogen in Reversible Exchange
2012

Zero-Field NMR Enhanced by Parahydrogen in Reversible Exchange

T. Theis, J.W. Blanchard, P. Ganssle, H.D. Shin, G. Kervern , M.C. Butler, M. P. Ledbetter, D. Budker and A. Pines; J. Am. Chem. Soc. (2012), 134, 3987–3990

Publication figure for Near-zero field magnetic resonance
2011

Near-zero field magnetic resonance

M. P. Ledbetter, T. Theis, J. W. Blanchard, H. Ring, S. Appelt, B. Blümich, A. Pines, and D. Budker; Phys. Rev. Lett. (2011), 107, 107601. Highlighted in a Spotlight for Exceptional Research by the APS

Publication figure for Parahydrogen-enhanced zero-field nuclear magnetic resonance
2011

Parahydrogen-enhanced zero-field nuclear magnetic resonance

T. Theis, P. Ganssle, G. Kervern, S. Knappe, J. Kitching, M. P. Ledbetter, D. Budker and A. Pines; Nat. Phys. (2011), 7, 571–575. Highlighted in Nature, Nature Physics, and online at Physics World.com and at LBNL News Center

Publication figure for Advances in Zero-Field Nuclear Magnetic Resonance Spectroscopy
2011

Advances in Zero-Field Nuclear Magnetic Resonance Spectroscopy

link to PhD thesis

Publication figure for PLP labeling in ESR spectroscopic analysis of secondary and tertiary acrylate propagating radicals.
2008

PLP labeling in ESR spectroscopic analysis of secondary and tertiary acrylate propagating radicals.

M. Buback, P. Hesse, T. Junkers, T. Sergeeva, T. Theis; Macromolecules (2008), 41(2), 288-291. exclusive experimentalist and lead author. In papers from Buback lab authors are in alphabetical order

Publication figure for Chain-length-dependant termination in acrylate radical polymerization studied via pulsed-laser-initiated RAFT polymerization.
2007

Chain-length-dependant termination in acrylate radical polymerization studied via pulsed-laser-initiated RAFT polymerization.

M. Buback, P. Hesse, T. Junkers, T. Theis, P. Vana; Aust. J. Chem. (2007), 60(10), 779-787. exclusive experimentalist and lead author. Authors are in alphabetical order