Title of article :
A computational analysis for amino acid adsorption
Author/Authors :
Owens، نويسنده , , Brandon E. and Riemann، نويسنده , , Andreas، نويسنده ,
Issue Information :
هفته نامه با شماره پیاپی سال 2014
Pages :
12
From page :
118
To page :
129
Abstract :
In this study we have systematically investigated the effects of surface configuration and molecular state for the adsorption of methionine (C5H11NO2S) on a graphite surface using two model force fields, AMBER 3 and MM +. Computational results were compared with experimental results. ercial computational chemistry software (HyperChem™) was utilized in this study. Parameter sets for the force fields, AMBER 3 and MM +, were employed together with methionine in its non-ionic and zwitterionic state to investigate the molecular adsorption on a graphene sheet, a graphene sheet with hydrogen termination, as well as double layers of graphite with and without hydrogen termination. sults show that the model produces excellent qualitative results regarding inter-molecular configuration. Using the AMBER3 force field and methionine in its zwitterionic state adsorbed on a single graphite sheet leads to results which clearly resemble the experimental results and show hydrogen bonding between neighboring methionine molecules through the amino and carboxyl groups. Dimers are formed when two molecules are anti-parallel to each other, and parallel molecules are the building blocks of molecular rows.
Keywords :
Molecular mechanics , Scanning tunneling microscopy , graphene , Methionine , force fields , Amino acid
Journal title :
Surface Science
Serial Year :
2014
Journal title :
Surface Science
Record number :
1706392
Link To Document :
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