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research article

Oligomers of diphenylalanine examined using cold ion spectroscopy and neural network-based conformational search

Kopysov, Vladimir  
•
Yamaletdinov, Ruslan  
•
Boyarkin, Oleg V.  
October 16, 2024
Physical Chemistry Chemical Physics

Diphenylalanine (Phe2) is the primary building block of many self-assembling nanostructures that are important in biology and materials science. Understanding the detailed mechanism of their formation requires knowledge of the structural motives that the smallest oligomers attain at the very first steps of the process. Herein, we first employed high-resolution mass spectrometry to assign protonated Phe2 and its 2–13-unit oligomers formed in the gas phase from solution via electrospray ionization and then used cold ion spectroscopy to record UV and IR spectra for the monomer, dimer and hexamer. UV spectroscopy suggests the likely lack of specific strong proton–p interactions in oligomers larger than octamers, implying their certain structural stabilization. IR spectroscopy and quantum chemical calculations, enhanced by neural network-based conformational search, jointly determined the lowest-energy structures of the Phe2 monomer and dimer.

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Type
research article
DOI
10.1039/d4cp03476g
Scopus ID

2-s2.0-85208693054

PubMed ID

39479924

Author(s)
Kopysov, Vladimir  

École Polytechnique Fédérale de Lausanne

Yamaletdinov, Ruslan  

École Polytechnique Fédérale de Lausanne

Boyarkin, Oleg V.  

École Polytechnique Fédérale de Lausanne

Date Issued

2024-10-16

Published in
Physical Chemistry Chemical Physics
Volume

26

Issue

44

Start page

27964

End page

27971

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
SCI-SB-RB  
FunderFunding(s)Grant NumberGrant URL

Swiss National Science Foundation

200020_204072

RelationRelated workURL/DOI

IsSupplementedBy

FNS 200020_204072: Cold ion spectroscopy – mass spectroscopy for structural determinations and identifications odf biomolecules

https://infoscience.epfl.ch/handle/20.500.14299/255192
Available on Infoscience
January 25, 2025
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/244045
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