Understanding the electronic properties of single peptides is not only of fundamental importance to biology, but it is also pivotal to the realization of bio-inspired molecular electronic materials. Natural proteins have evolved to promote electron transfer in many crucial biological processes. However, their complex conformational nature inhibits a thorough investigation, so in order to study electron transfer in proteins, simple peptide models containing redox active moieties present as ideal candidates. Here we highlight the importance of secondary structure characteristic to proteins/peptides, and its relevance to electron transfer. The proposed mechanisms responsible for such transfer are discussed, as are details of the electrochemica...
Bioelectronic materials interface biomolecules, cells, organs, or organisms with electronic devices,...
Bioelectronic materials interface biomolecules, cells, organs, or organisms with electronic devices,...
Understanding the electronic properties inherent to peptides is crucial for controlling charge trans...
Research undertaken in this thesis focuses on electron transfer in peptides constrained into either ...
Electrochemical studies are reported on a series of peptides constrained into either a 3(10)-helix (...
Electrochemical studies are reported on a series of peptides constrained into either a 310-helix (1-...
Understanding long range electron transfer (ET) in proteins is of fundamental interest to elucidate ...
Electrochemical studies are reported on a series of peptides constrained into either a 3<sub>10</sub...
In this thesis the electron mediating properties of 310 helical peptides have been investigated, bot...
In this thesis the electron mediating properties of 310 helical peptides have been investigated, bot...
In this thesis the electron mediating properties of 310 helical peptides have been investigated, bot...
In this thesis the electron mediating properties of 310 helical peptides have been investigated, bot...
Many novel applications in bioelectronics rely on the interaction between biomolecules and electroni...
Metalloproteins are crucial to many biological processes, such as photosynthesis, respiration, and e...
Many novel applications in bioelectronics rely on the interaction between biomolecules and electroni...
Bioelectronic materials interface biomolecules, cells, organs, or organisms with electronic devices,...
Bioelectronic materials interface biomolecules, cells, organs, or organisms with electronic devices,...
Understanding the electronic properties inherent to peptides is crucial for controlling charge trans...
Research undertaken in this thesis focuses on electron transfer in peptides constrained into either ...
Electrochemical studies are reported on a series of peptides constrained into either a 3(10)-helix (...
Electrochemical studies are reported on a series of peptides constrained into either a 310-helix (1-...
Understanding long range electron transfer (ET) in proteins is of fundamental interest to elucidate ...
Electrochemical studies are reported on a series of peptides constrained into either a 3<sub>10</sub...
In this thesis the electron mediating properties of 310 helical peptides have been investigated, bot...
In this thesis the electron mediating properties of 310 helical peptides have been investigated, bot...
In this thesis the electron mediating properties of 310 helical peptides have been investigated, bot...
In this thesis the electron mediating properties of 310 helical peptides have been investigated, bot...
Many novel applications in bioelectronics rely on the interaction between biomolecules and electroni...
Metalloproteins are crucial to many biological processes, such as photosynthesis, respiration, and e...
Many novel applications in bioelectronics rely on the interaction between biomolecules and electroni...
Bioelectronic materials interface biomolecules, cells, organs, or organisms with electronic devices,...
Bioelectronic materials interface biomolecules, cells, organs, or organisms with electronic devices,...
Understanding the electronic properties inherent to peptides is crucial for controlling charge trans...