The fragmentation chemistry of anionic deprotonated hydrogen-deficient radical peptides is investigated. Homolytic photodissociation of carbon–iodine bonds with 266 nm light is used to generate the radical species, which are subsequently subjected to collisional activation to induce further dissociation. The charges do not play a central role in the fragmentation chemistry; hence deprotonated peptides that fragment via radical directed dissociation do so via mechanisms which have been reported previously for protonated peptides. However, charge polarity does influence the overall fragmentation of the peptide. For example, the absence of mobile protons favors radical directed dissociation for singly deprotonated peptides. Similarly, a favora...
Fragmentation pathways of peptide radical cations, M+·, with well-defined initial location of the ra...
Comparison between the gas-phase fragmentation of odd-electron M +., [M + H]2+., and [M - 2H]-. ions...
We compare product-ion mass spectra produced by electron detachment dissociation (EDD) and electron ...
The fragmentation chemistry of anionic deprotonated hydrogen-deficient radical peptides is investiga...
The fragmentation chemistry of anionic deprotonated hydrogen-deficient radical peptides is investiga...
Gas phase fragmentation of hydrogen deficient peptide radical cations continues to be an active area...
Odd-electron a + 1 radical ions generated in the 157 nm photodissociation of peptide ions were inves...
Hydrogen-deficient peptide radical cations exhibit fascinating gas phase chemistry, which is governe...
In contrast to protonated peptides, collision-induced dissociation of deprotonated peptides is known...
In contrast to protonated peptides, collision-induced dissociation of deprotonated peptides is known...
A crown ether based, photolabile radical precursor which forms noncovalent complexes with peptides h...
A crown ether based, photolabile radical precursor which forms noncovalent complexes with peptides h...
A crown ether based, photolabile radical precursor which forms noncovalent complexes with peptides h...
Fragmentation pathways of peptide radical cations, M +·, with well-defined initial location of the r...
In contrast to protonated peptides, collision-induced dissociation of deprotonated peptides is known...
Fragmentation pathways of peptide radical cations, M+·, with well-defined initial location of the ra...
Comparison between the gas-phase fragmentation of odd-electron M +., [M + H]2+., and [M - 2H]-. ions...
We compare product-ion mass spectra produced by electron detachment dissociation (EDD) and electron ...
The fragmentation chemistry of anionic deprotonated hydrogen-deficient radical peptides is investiga...
The fragmentation chemistry of anionic deprotonated hydrogen-deficient radical peptides is investiga...
Gas phase fragmentation of hydrogen deficient peptide radical cations continues to be an active area...
Odd-electron a + 1 radical ions generated in the 157 nm photodissociation of peptide ions were inves...
Hydrogen-deficient peptide radical cations exhibit fascinating gas phase chemistry, which is governe...
In contrast to protonated peptides, collision-induced dissociation of deprotonated peptides is known...
In contrast to protonated peptides, collision-induced dissociation of deprotonated peptides is known...
A crown ether based, photolabile radical precursor which forms noncovalent complexes with peptides h...
A crown ether based, photolabile radical precursor which forms noncovalent complexes with peptides h...
A crown ether based, photolabile radical precursor which forms noncovalent complexes with peptides h...
Fragmentation pathways of peptide radical cations, M +·, with well-defined initial location of the r...
In contrast to protonated peptides, collision-induced dissociation of deprotonated peptides is known...
Fragmentation pathways of peptide radical cations, M+·, with well-defined initial location of the ra...
Comparison between the gas-phase fragmentation of odd-electron M +., [M + H]2+., and [M - 2H]-. ions...
We compare product-ion mass spectra produced by electron detachment dissociation (EDD) and electron ...