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Controlling the conductance of molecular junctions using proton transfer reactions: A theoretical model study

机译:使用质子转移反应控制分子交叉点的电导:理论模型研究

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The influence of an intramolecular proton transfer reaction on the conductance of a molecular junction is investigated employing a generic model, which includes the effects of the electric field of the gate and leads electrodes and the coupling to a dissipative environment. Using a quantum master equation approach it is shown that, depending on the localization of the proton, the junction exhibits a high or low current state, which can be controlled by external electric fields. Considering different regimes, which range from weak to strong hydrogen bonds in the proton transfer complex and comprise situations with high and low barriers, necessary preconditions to achieve control are analyzed. The results show that systems with a weak hydrogen bond and a significant energy barrier for the proton transfer can be used as molecular transistors or diodes. Published by AIP Publishing.
机译:研究了分子内质子转移反应对采用通用模型的分子结的电导的影响,该通用模型包括栅极的电场和引线电极的电场和耦合到耗散环境的效果。 使用量子母部方程方法示出,根据质子的定位,结呈现出高或低电流状态,其可以由外部电场控制。 考虑到不同的制度,该范围从质子转移复合物中的弱到强氢键,并且包括高低障碍的情况,分析了实现对照的必要前提。 结果表明,具有弱氢键的系统和用于质子转移的显着能量屏障可以用作分子晶体管或二极管。 通过AIP发布发布。

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