Time-resolved photoelectron imaging is used to investigate the dynamics of electron attachment and electron interaction with the molecules uracil (U), thymine (T), adenine (A) and imidazole (Im). In this technique, the molecule of interest is clustered with an iodide atom, and a tunable UV photon induces ultrafast electron transfer from iodide to the molecule, forming a transient negative ion with femtosecond time resolution. After a known time delay, a second photon detaches the transient negative ion and the resulting photoelectrons are detected using velocity map imaging. This experimental method allows for insight into how biologically relevant molecules in the gas phase interact with, and accommodate, an excess electron, an important q...
Femtosecond time-resolved photoelectron imaging (TRPEI) is applied to the study of excess electrons ...
The UV chromophores in DNA are the nucleic bases themselves, and it is their photophysics and photoc...
Laser photodissociation spectroscopy of the I‐·guanine complex has been conducted for the first time...
DNA and RNA photodamage mechanisms are of significant importance but remain relatively poorly unders...
DNA and RNA photodamage mechanisms are of significant importance but remain relatively poorly unders...
Time-resolved photoelectron imaging spectroscopy is used to examine the dynamics of charge accommoda...
ABSTRACT: Time-resolved photoelectron imaging has been utilized to probe the energetics and dynamics...
The dynamics of low energy electron attachment to the thio-substituted uracil analog 2-thiouracil ar...
In this article we characterise the radiationless decay of the first few electronic excited states o...
In this article we characterise the radiationless decay of the first few electronic excited states o...
Laser dissociation spectroscopy of I − ·adenine (I − ·A) and H 2 PO − 3 ·adenine (H 2 PO − 3 ·A) has...
In this work we investigate different forms of electron binding in the mass-selected and cooled nucl...
We report a combined experimental and theoretical investigation of dissociative electron attachment ...
Laser photodissociation spectroscopy of the I-·thymine (I-·T) and I-·cytosine (I-·C) nucleobase clus...
The fundamental nanoscale processes that initiate radiation damage in biological material have not y...
Femtosecond time-resolved photoelectron imaging (TRPEI) is applied to the study of excess electrons ...
The UV chromophores in DNA are the nucleic bases themselves, and it is their photophysics and photoc...
Laser photodissociation spectroscopy of the I‐·guanine complex has been conducted for the first time...
DNA and RNA photodamage mechanisms are of significant importance but remain relatively poorly unders...
DNA and RNA photodamage mechanisms are of significant importance but remain relatively poorly unders...
Time-resolved photoelectron imaging spectroscopy is used to examine the dynamics of charge accommoda...
ABSTRACT: Time-resolved photoelectron imaging has been utilized to probe the energetics and dynamics...
The dynamics of low energy electron attachment to the thio-substituted uracil analog 2-thiouracil ar...
In this article we characterise the radiationless decay of the first few electronic excited states o...
In this article we characterise the radiationless decay of the first few electronic excited states o...
Laser dissociation spectroscopy of I − ·adenine (I − ·A) and H 2 PO − 3 ·adenine (H 2 PO − 3 ·A) has...
In this work we investigate different forms of electron binding in the mass-selected and cooled nucl...
We report a combined experimental and theoretical investigation of dissociative electron attachment ...
Laser photodissociation spectroscopy of the I-·thymine (I-·T) and I-·cytosine (I-·C) nucleobase clus...
The fundamental nanoscale processes that initiate radiation damage in biological material have not y...
Femtosecond time-resolved photoelectron imaging (TRPEI) is applied to the study of excess electrons ...
The UV chromophores in DNA are the nucleic bases themselves, and it is their photophysics and photoc...
Laser photodissociation spectroscopy of the I‐·guanine complex has been conducted for the first time...