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Researchers Observe Picosecond Charge Transfer in Peptides


Researchers Observe Picosecond Charge Transfer in Peptides
Written by AZoMApr 15 2021
The transfer of electrons between molecules forms the basis of biological energy flows, for example, in photosynthesis and respiration.
The extended peptide (top) does not mediate charge transfer (detectable charge transfer). The folded peptide (bottom) mediates picosecond charge transfer along the hydrogen bonds between the donor and the acceptor (the hydrogen bonds are indicated with thin red dotted lines). Image Credit: Valentine Vullev.
Although electron transfer is crucial for sustaining life, factors that determine its rate, particularly over long distances, are not clearly understood since the systems that mediate these ultrafast processes are highly complicated. ....

United States , California Institute Of Technology , Olga Staszewska Krajewska , Daniel Gryko , Johna Clark , Jayr Winkler , Maximilianf Mayther , Agnieszka Szumna , Jamesb Derr , Valentine Vullev , Elim Espinoza , Harry Gray , John Clark , Hanna Jedrzejewska , University Of California , Rosemary Bourns College Of Engineering , Academy Of Sciences , Proceedings Of The National Academy Sciences , Study Co , Image Credit , National Academy , Rosemary Bourns College , Polish Academy , California Institute , Study Co Author , Doctoral Student ,

Picosecond electron transfer in peptides can help energy technologies


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Biological energy flows, such as in photosynthesis and respiration, depend on the transfer of electrons from one molecule to another. Despite its importance to sustaining life, factors governing the rate of electron transfer, especially over long distances, are not well understood because the systems that mediate such ultrafast processes are very complex. A better understanding of electron transfer rates would help scientists improve chemical transformations, energy conversion, electronic devices, and photonic technologies.
Now, an international team of researchers led by UC Riverside has observed picosecond charge transfer mediated by hydrogen bonds in peptides. A picosecond is one trillionth of a second. As short-chain analogs of proteins, crucially important building blocks of living organisms, peptides are chains of chemically linked amino acids. The discovery shows the role of hydrogen bonds in electron transfer. The results are published in ....

Olga Staszewska Krajewska , Daniel Gryko , Johna Clark , Jayr Winkler , Maximilianf Mayther , Agnieszka Szumna , Jamesb Derr , Valentine Vullev , Elim Espinoza , Harry Gray , John Clark , Hanna Jedrzejewska , Rosemary Bourns College Of Engineering , California Institute Of Technology , Academy Of Sciences , Proceedings Of The National Academy Sciences , National Academy , Rosemary Bourns College , Polish Academy , California Institute , ஜொன்னா கிளார்க் , ஹாரி சாம்பல் , ஜான் கிளார்க் , ரோஸ்மேரி பெர்ன்ஸ் கல்லூரி ஆஃப் பொறியியல் , கலிஃபோர்னியா நிறுவனம் ஆஃப் தொழில்நுட்பம் , கலைக்கழகம் ஆஃப் அறிவியல் ,