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Molecular interfaces for plasmonic hot electron photovoltaics

机译:分子电子接口电浆热太阳能光电板

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摘要

The use of self-assembled monolayers (SAMs) to improve and tailor the photovoltaic performance of plasmonic hot-electron Schottky solar cells is presented. SAMs allow the simultaneous control of open-circuit voltage, hot-electron injection and short-circuit current. To that end, a plurality of molecule structural parameters can be adjusted: SAM molecule's length can be adjusted to control plasmonic hot electron injection. Modifying SAMs dipole moment allows for a precise tuning of the open-circuit voltage. The functionalization of the SAM can also be selected to modify short-circuit current. This allows the simultaneous achievement of high open-circuit voltages (0.56 V) and fill-factors (0.58), IPCE above 5% at the plasmon resonance and maximum power-conversion efficiencies of 0.11%, record for this class of devices.
机译:自组装单层膜的使用(SAMs)改进和调整光伏性能电浆热电子肖特基太阳能电池提出了。热电子注入和开路电压短路电流。分子结构参数调整:山姆分子的长度可以调整控制电浆热电子注入。偶极矩允许修改地对空导弹精确调优的开路电压。功能化的山姆也可以选择修改短路电流。同时实现高开路电压(0.56 V)和fill-factors (0.58), IPCE5%以上的等离子体共振和最大能量转化效率为0.11%,记录这类设备。

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