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Effect of Chirality on the Electronic Transport Properties of the Thioxanthene-Based Molecular Switch

Effect of Chirality on the Electronic Transport Properties of the Thioxanthene-Based Molecular Switch
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摘要 Based on the nonequilibrium Green function method and density functional theory calculations, we theoretically investigate the effect of chirality on the electronic transport properties of thioxanthene-based molecular switch. The molecule comprises the switch which can exhibit different chiralities, that is, cis-form and trans-form by ultraviolet or visible irradiation. The results clearly reveal that the switching behaviors can be realized when the molecule converts between cis-form and trans-form. ~urthermore, the on-off ratio can be modulated by the chirality of the carbon nanotube electrodes. The maximum on-off ratio can reach 109 at 0.4 V for the armchair junction, suggesting potential applications of this type of junctions in future design of functional molecular devices. Based on the nonequilibrium Green function method and density functional theory calculations, we theoretically investigate the effect of chirality on the electronic transport properties of thioxanthene-based molecular switch. The molecule comprises the switch which can exhibit different chiralities, that is, cis-form and trans-form by ultraviolet or visible irradiation. The results clearly reveal that the switching behaviors can be realized when the molecule converts between cis-form and trans-form. ~urthermore, the on-off ratio can be modulated by the chirality of the carbon nanotube electrodes. The maximum on-off ratio can reach 109 at 0.4 V for the armchair junction, suggesting potential applications of this type of junctions in future design of functional molecular devices.
机构地区 School of Science
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2016年第4期108-112,共5页 中国物理快报(英文版)
基金 Supported by the National Natural Science Foundation of China under Grant No 11004156 the Natural Science Foundation of Shaanxi Province under Grant No 2014JM1025 the Science and Technology Star Project of Shaanxi Province under Grant No2016KJXX-38 the Special Foundation of Key Academic Subjects Development of Shaanxi Province under Grant No 2008-169 the Xi'an Polytechnic University Young Scholar Supporting Plan under Grant No 2013-06
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