ESR study of oxidation product in irradiated α‐amino acids: Nitrogen centered π radical in α‐glycine
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.432896
Reference17 articles.
1. ENDOR studies of the superhyperfine couplings of hydrogen‐bonded protons. IV. Carboxyl radical anions in irradiated glycine and α‐amino isobutyric acid
2. ENDOR studies of the superhyperfine couplings of hydrogen‐bonded protons. IV. Carboxyl radical anions in irradiated glycine and α‐amino isobutyric acid
3. ENDOR studies of the superhyperfine couplings of hydrogen‐bonded protons. IV. Carboxyl radical anions in irradiated glycine and α‐amino isobutyric acid
4. ESR Study of Irradiated Glycine at Low Temperatures
5. Search for a Trapped Hole in an Irradiated Crystal of L‐Alanine by the ESR Technique
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1. Nature of Glycine and Its α-Carbon Radical in Aqueous Solution: A Theoretical Investigation;Journal of Chemical Theory and Computation;2008-09-11
2. Time-Resolved FT EPR and Optical Spectroscopy Study on Photooxidation of Aliphatic α-Amino Acids in Aqueous Solutions; Electron Transfer from Amino vs Carboxylate Functional Group;The Journal of Physical Chemistry A;2006-05-06
3. Evaluation of Different Model Space Approaches Based on DFT to Examine the EPR Parameters of a Radiation-Induced Radical in Solid-State α-Glycine;The Journal of Physical Chemistry A;2004-11-23
4. The Solid-State Radiation Chemistry of Simple Amino Acids, Revisited;Radiation Research;2004-08
5. Time resolved FT EPR study of the decarboxylation following photo-induced electron transfer between α-amino acids and anthraquinone-2,6-disulfonic acid in aqueous solution;Physical Chemistry Chemical Physics;2001
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