Electronic Properties of a Graphene Device with Peptide Adsorption: Insight from Simulation

被引:55
作者
Akdim, Brahim [1 ]
Pachter, Ruth [1 ]
Kim, Steve S. [1 ]
Naik, Rajesh R. [1 ]
Walsh, Tiffany R. [2 ]
Trohalaki, Steven [1 ]
Hong, Gongyi [1 ]
Kuang, Zhifeng [1 ]
Farmer, Barry L. [1 ]
机构
[1] Air Force Res Lab, Mat & Mfg Directorate, Wright Patterson AFB, OH 45433 USA
[2] Deakin Univ, Inst Frontier Mat, Waurn Ponds, Vic 3216, Australia
关键词
field effects transistor; peptide adsorption; single-layer graphene; density functional theory; molecular dynamics; electronic properties; DISTRIBUTED MULTIPOLE ANALYSIS; MOLECULAR-DYNAMICS; BINDING; FIELD; ACCURATE; ORIGINS; FILMS;
D O I
10.1021/am401731c
中图分类号
TB3 [工程材料学];
学科分类号
082905 [生物质能源与材料];
摘要
In this work, to explain doping behavior of single-layer graphene upon HSSYWYAFNNKT (P1) and HSSAAAAFNNKT (P1-3A) adsorption in field-effect transistors (GFETs), we applied a combined computational approach, whereby peptide adsorption was modeled by molecular dynamics simulations, and the lowest energy configuration was confirmed by density functional theory calculations. On the basis of the resulting structures of the hybrid materials, electronic structure and transport calculations were investigated. We demonstrate that pi-pi stacking of the aromatic residues and proximate peptide backbone to the graphene surface in P1 have a role in the p-doping. These results are consistent with our experimental observation of the GFET's p-doping even after a 24-h annealing procedure. Upon substitution of three of the aromatic residues to Ala in (P1-3A), a considerable decrease from p-doping is observed experimentally, demonstrating n-doping as compared to the nonadsorbed device, yet not explained based on the atomistic MD simulation structures. To gain a qualitative understanding of P1-3A's adsorption over a longer simulation time, which may differ from aromatic amino acid residues' swift anchoring on the surface, we analyzed equilibrated coarse-grain simulations performed for 500 ns. Desorption of the Ala residues from the surface was shown computationally, which could in turn affect charge transfer, yet a full explanation of the mechanism of n-doping will require elucidation of differences between various aromatic residues as dependent on peptide composition, and inclusion of effects of the substrate and environment, to be considered in future work.
引用
收藏
页码:7470 / 7477
页数:8
相关论文
共 64 条
[1]
Adam S., 2012, GRAPHENE CARRIER TRA, P357
[2]
A self-consistent theory for graphene transport [J].
Adam, Shaffique ;
Hwang, E. H. ;
Galitski, V. M. ;
Das Sarma, S. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2007, 104 (47) :18392-18397
[3]
On modeling biomolecular-surface nonbonded interactions: application to nucleobase adsorption on single-wall carbon nanotube surfaces [J].
Akdim, B. ;
Pachter, R. ;
Day, P. N. ;
Kim, S. S. ;
Naik, R. R. .
NANOTECHNOLOGY, 2012, 23 (16)
[4]
COUNTERINTUITIVE ORBITAL MIXING IN SEMI-EMPIRICAL AND ABINITIO MOLECULAR-ORBITAL CALCULATIONS [J].
AMMETER, JH ;
BURGI, HB ;
THIBEAULT, JC ;
HOFFMANN, R .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1978, 100 (12) :3686-3692
[5]
[Anonymous], AT TOOLK VERS 12 2
[6]
Bae S, 2010, NAT NANOTECHNOL, V5, P574, DOI [10.1038/nnano.2010.132, 10.1038/NNANO.2010.132]
[7]
Density-functional thermochemistry .5. Systematic optimization of exchange-correlation functionals [J].
Becke, AD .
JOURNAL OF CHEMICAL PHYSICS, 1997, 107 (20) :8554-8560
[8]
Density-functional method for nonequilibrium electron transport -: art. no. 165401 [J].
Brandbyge, M ;
Mozos, JL ;
Ordejón, P ;
Taylor, J ;
Stokbro, K .
PHYSICAL REVIEW B, 2002, 65 (16) :1654011-16540117
[9]
GENERALIZED MANY-CHANNEL CONDUCTANCE FORMULA WITH APPLICATION TO SMALL RINGS [J].
BUTTIKER, M ;
IMRY, Y ;
LANDAUER, R ;
PINHAS, S .
PHYSICAL REVIEW B, 1985, 31 (10) :6207-6215
[10]
Accurate and transferable extended Huckel-type tight-binding parameters [J].
Cerdá, J ;
Soria, F .
PHYSICAL REVIEW B, 2000, 61 (12) :7965-7971