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Tuning the Thermoelectric Properties of Ferrocene Molecular Junctions

机译:调整二茂铁分子连接的热电性能

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The calculations of thermoelectric and transport properties have been carried out by using the SIESTA implementation of density functional theory (DFT), with a generalized gradient functional approximation (GGA-PBE) for the exchange and correlation functionals. In this work we have compared the thermoelectric properties of FeCP with two different configurations. The results show that the spin-dependent transport properties can be affected by the molecular structure and the substitution of the terminal thiol groups plays an important role on the spin-dependent transmission of the molecular junctions. Meanwhile, electrical conductance and thermal conductance also affected. The thermoelectric properties of Ferrocene (FeCp2) for these two different configurations have been compared. Thus, all these transport properties are combined to produce a good value of the room-temperature figure of merit ZT.
机译:通过使用密度泛的函数理论(DFT)的午睡实现来进行热电和运输特性的计算,具有用于交换和相关函数的广义梯度函数逼近(GGA-PBE)。在这项工作中,我们将FECP的热电性能与两种不同的配置进行了比较。结果表明,旋转依赖性运输特性可能受到分子结构的影响,硫醇基团的取代对分子交叉点的旋转依赖性传递起重要作用。同时,电导率和热传导也受到影响。已经比较了这两种不同配置的二茂铁(FECP2)的热电性能。因此,组合所有这些传输性能以产生优选ZT的室温系数的良好值。

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