Rahman R, Mazumdar D
Department of Aerospace engineering and Mechanics, The University of Alabama, Tuscaloosa, AL 35487, USA.
J Nanosci Nanotechnol. 2012 Mar;12(3):2360-6. doi: 10.1166/jnn.2012.5798.
We investigate the adsorption process of an organic biomolecule (chitosan) on epoxy-functionalized graphene using ab-initio density functional methods incorporating van-der-waals (vdW) interactions. The role of London dispersion force on the cohesive energy and conformal preference of the molecule is quantitatively elucidated. Functionalizing graphene with epoxy leads to weak hydrogen-bond interactions with chitosan. Binding energy values increase by over an order of magnitude after including vdW corrections, implying that dispersive interactions dominate the physisorption process. Conformal study show binding upto 30 kcal/mol when the molecule is oriented with the hydroxyl group approaching the functionalized graphene. Our study advances the promise of functionalized graphene for a variety of applications.
我们使用包含范德华(vdW)相互作用的从头算密度泛函方法,研究了有机生物分子(壳聚糖)在环氧官能化石墨烯上的吸附过程。定量阐明了伦敦色散力对分子内聚能和构象偏好的作用。用环氧官能化石墨烯会导致与壳聚糖形成弱氢键相互作用。包括vdW校正后,结合能值增加了一个多数量级,这意味着色散相互作用主导了物理吸附过程。构象研究表明,当分子的羟基靠近官能化石墨烯时,结合能高达30 kcal/mol。我们的研究推动了官能化石墨烯在各种应用中的前景。