Ion–molecule reactions in a flowing afterglow are used to examine the electronic structure of 3- and 4-pyridinylnitrene-n-oxide radical anions. Reactions with nitric oxide are generally similar to those reported previously for other aromatic nitrene radical anions. In particular, phenoxide formation by nitrogen–oxygen exchange is observed with both isomers. Oxygen atom abstraction by NO is also observed with both isomers. Very significant differences in the reactivity are observed in the reactions of the two isomers with carbon disulfide. The reactivity of the 3-noxide isomer with CS2 is similar to that observed previously for nitrene radical anions, and reactions of the n-oxide moiety are not observed, similar to what is expected based on ...
Thesis (Ph.D.)--University of Washington, 2016-03University of Washington Abstract Gaseous Studies o...
Polarizable radical sites in distonic radical anions are stabilized by ostensibly remote negative ch...
In this work, we describe two different methods for generating protonated S-nitrosocysteine in the g...
Ion–molecule reactions in a flowing afterglow are used to examine the electronic structure of 3- and...
This research explores the thermochemistry and gas-phase ion-molecule reactions of nucleobases and a...
A combination of electrospray ionization (ESI), multistage, and high-resolution mass spectrometry ex...
Includes bibliographical references (pages [214]-238).Understanding the structure and reactivity of ...
The present work comprises three independent studies in which novel infrared ion spectroscopy data s...
The covalent addition of nitric oxide (NO) to protein thiols, a posttranslational modification terme...
The positive and negative ionization characteristics of 20 different α-amino acids were investigated...
AbstractThe title species are synthesized in the gas phase and their unimolecular chemistry is deter...
Dissociative electron attachment to dialanine and alanine anhydride has been studied in the gas phas...
Extensive 13C, 15N, and 2H labeling of tetraglycine was used to investigate the b3+ → a3* reaction d...
Gas phase fragmentations of cationic radical peptides provide important fundamental information that...
Studying protonated or metal cationized amino acids and small peptides in the gas phase offers an op...
Thesis (Ph.D.)--University of Washington, 2016-03University of Washington Abstract Gaseous Studies o...
Polarizable radical sites in distonic radical anions are stabilized by ostensibly remote negative ch...
In this work, we describe two different methods for generating protonated S-nitrosocysteine in the g...
Ion–molecule reactions in a flowing afterglow are used to examine the electronic structure of 3- and...
This research explores the thermochemistry and gas-phase ion-molecule reactions of nucleobases and a...
A combination of electrospray ionization (ESI), multistage, and high-resolution mass spectrometry ex...
Includes bibliographical references (pages [214]-238).Understanding the structure and reactivity of ...
The present work comprises three independent studies in which novel infrared ion spectroscopy data s...
The covalent addition of nitric oxide (NO) to protein thiols, a posttranslational modification terme...
The positive and negative ionization characteristics of 20 different α-amino acids were investigated...
AbstractThe title species are synthesized in the gas phase and their unimolecular chemistry is deter...
Dissociative electron attachment to dialanine and alanine anhydride has been studied in the gas phas...
Extensive 13C, 15N, and 2H labeling of tetraglycine was used to investigate the b3+ → a3* reaction d...
Gas phase fragmentations of cationic radical peptides provide important fundamental information that...
Studying protonated or metal cationized amino acids and small peptides in the gas phase offers an op...
Thesis (Ph.D.)--University of Washington, 2016-03University of Washington Abstract Gaseous Studies o...
Polarizable radical sites in distonic radical anions are stabilized by ostensibly remote negative ch...
In this work, we describe two different methods for generating protonated S-nitrosocysteine in the g...