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DFT study of the conductance of molecular wire:The effect of coupling geometry and intermolecular interaction on the transport properties
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作者 QI Yuanhua GUAN Daren LIU Chengbu 《Science China Chemistry》 SCIE EI CAS 2006年第6期492-498,共7页
The density functional theory(DFT)combining with the non-equilibrium Green functions(NEGF)method is applied to the study of the electronic transport properties for a Di-thiol-benzene(DTB)molecule coupled to two Au(111... The density functional theory(DFT)combining with the non-equilibrium Green functions(NEGF)method is applied to the study of the electronic transport properties for a Di-thiol-benzene(DTB)molecule coupled to two Au(111)surfaces.The dependence of the transport properties on the bias,the coupling geometry of the molecule-electrode interface,and the intermolecular interaction are examined in detail.The results show that the existence of the hydrogen atom at the end of the DTB molecule would significantly decrease the transmission coefficients,and then the differential conductance(dI/dV).By changing the position of the DTB molecule located between two electrodes a maximum value of calculated current is observed.It is also found that the intermolecular interaction will strongly influence the transport properties of the system studied. 展开更多
关键词 non-equilibrium Green functions method transmission spectrum the molecular projected selfconsistent Hamiltonian projected density of state.
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