Peptide interfaces with graphene: an emerging intersection of analytical chemistry, theory, and materials

Analytical and Bioanalytical Chemistry
Shane R Russell, Shelley A Claridge

Abstract

Because noncovalent interface functionalization is frequently required in graphene-based devices, biomolecular self-assembly has begun to emerge as a route for controlling substrate electronic structure or binding specificity for soluble analytes. The remarkable diversity of structures that arise in biological self-assembly hints at the possibility of equally diverse and well-controlled surface chemistry at graphene interfaces. However, predicting and analyzing adsorbed monolayer structures at such interfaces raises substantial experimental and theoretical challenges. In contrast with the relatively well-developed monolayer chemistry and characterization methods applied at coinage metal surfaces, monolayers on graphene are both less robust and more structurally complex, levying more stringent requirements on characterization techniques. Theory presents opportunities to understand early binding events that lay the groundwork for full monolayer structure. However, predicting interactions between complex biomolecules, solvent, and substrate is necessitating a suite of new force fields and algorithms to assess likely binding configurations, solvent effects, and modulations to substrate electronic properties. This article briefly di...Continue Reading

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Citations

Mar 15, 2016·Journal of the American Chemical Society·Jae Jin BangShelley A Claridge
Jan 17, 2017·Journal of the American Chemical Society·Xingquan ZouZhan Chen
Dec 8, 2020·Physical Chemistry Chemical Physics : PCCP·Anastassia N RissanouVagelis Harmandaris
Mar 5, 2021·The Journal of Physical Chemistry. B·Siva Dasetty, Sapna Sarupria
Jun 23, 2021·Colloids and Surfaces. B, Biointerfaces·Nikolay A BarinovDmitry V Klinov
Nov 28, 2019·Journal of the American Chemical Society·Shuai WeiZhan Chen
Jan 18, 2018·Langmuir : the ACS Journal of Surfaces and Colloids·Tyson C DavisShelley A Claridge
Aug 19, 2017·Journal of the American Chemical Society·Terry A VillarrealShelley A Claridge

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