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Chu Zheng
Chu Zheng
PhD Candidate of Chemistry, Stanford University
Verified email at stanford.edu - Homepage
Title
Cited by
Cited by
Year
Bimetallic cooperative effect on O–O bond formation: copper polypyridyl complexes as water oxidation catalyst
XJ Su, C Zheng, QQ Hu, HY Du, RZ Liao, MT Zhang
Dalton Transactions 47 (26), 8670-8675, 2018
392018
A two-directional vibrational probe reveals different electric field orientations in solution and an enzyme active site
C Zheng, Y Mao, J Kozuch, AO Atsango, Z Ji, TE Markland, SG Boxer
Nature chemistry 14 (8), 891-897, 2022
362022
Testing the limitations of MD-based local electric fields using the vibrational Stark effect in solution: penicillin G as a test case
J Kozuch, SH Schneider, C Zheng, Z Ji, RT Bradshaw, SG Boxer
The Journal of Physical Chemistry B 125 (17), 4415-4427, 2021
162021
Enhanced active-site electric field accelerates enzyme catalysis
C Zheng, Z Ji, II Mathews, SG Boxer
Nature Chemistry 15 (12), 1715-1721, 2023
122023
Solvent Organization and Electrostatics Tuned by Solute Electronic Structure: Amide versus Non-Amide Carbonyls
SDE Fried, C Zheng, Y Mao, TE Markland, SG Boxer
The Journal of Physical Chemistry B 126 (31), 5876-5886, 2022
42022
A unifying electrostatic basis for designing enzymes faster than natural ones
C Zheng, Z Ji, II Mathews, SG Boxer
Biophysical Journal 122 (3), 483a, 2023
2023
Carbon-deuterium bonds as reporters of electric fields in solvent and protein environments
SDE Fried, JM Kirsh, C Zheng, Y Mao, TE Markland, SG Boxer
Biophysical Journal 122 (3), 481a, 2023
2023
A two-directional vibrational probe reveals the distinct electric field orientation at the active site of liver alcohol dehydrogenase
C Zheng, Y Mao, JA Kozuch, AO Atsango, Z Ji, TE Markland, SG Boxer
Biophysical Journal 121 (3), 441a, 2022
2022
Tuning solvent electrostatic environment of amide carbonyls as prototypical peptide backbones
SDE Fried, C Zheng, Y Mao, TE Markland, SG Boxer
Biophysical Journal 121 (3), 186a, 2022
2022
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