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Activation-relaxation processes and related effects in quantum conductance of molecular junctions

机译:激活 - 放松过程和分子交叉点量子电导中的相关效果

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摘要

We reveal the comparative relationship between small changes in quantum conductivity behavior for molecular junctions. We clarify the mechanisms of acquiring and losing additional thermal activation energy during average current flow in a gold-1,4 benzenediamine (BDA)-gold molecular junction and explain the quantum conductance modulation process. Small changes in working temperature lead to a change in quantum conductivity, which is reflected in random telegraph signal behavior. We demonstrate the high sensitivity of the BDA molecules to small changes in temperature. For BDA molecules, conductance thermo-sensitivity values are relatively high near to (0.8 divided by 1.6) x 10(-7) Omega(-1) K-1. This advantage can be used to measure weak variations in the ambient temperature. We show that the additional thermal energy arising from the change in temperature can impact on the strength of the electrode-molecule coupling, on the modulation of quantum conductivity. Local changes in quantum conductance of the order of quanta or smaller are conditioned by small random changes in the working regime arising from some of the activation processes. On the basis of the modulation of conductance, we calculate the magnitude of the spring constant of the 1,4 benzenediamine molecule as k(s) approximate to 7.1 x 10(-3) N m(-1) at the stretching length of 0.03 nm for the Au-NH2 molecular junction.
机译:我们揭示了分子交叉点量子电导行为的小变化之间的比较关系。我们阐明了在金-1,4苯并二胺(BDA) - 核分子结中的平均电流期间获得和失去额外热激活能量的机制,并解释了量子电导调制过程。工作温度的小变化导致量子电导率的变化,其反映在随机电报信号行为中。我们证明了BDA分子对温度较小变化的高敏感性。对于BDA分子,电导热敏值相对高(0.8除以1.6)ωω(-1)k-1。该优点可用于测量环境温度的弱变化。我们表明,由于温度变化而产生的额外热能会对电极分子偶联的强度产生影响量子电导率的调节。量子传导量级或更小的量子电导的局部变化是由来自一些激活过程产生的工作状态的小随机变化调节。在测量的调节的基础上,我们在拉伸长度为k(s)为k(s)的k(s)的k(s)的弹簧常数的大小在拉伸长度为0.03的情况下达到7.1×10(-3)n m(-1) NM用于AU-NH2分子交界处。

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