首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Elucidating the Contributions of Plasmon-Induced Excitons and Hot Carriers to the Photocurrent of Molecular Junctions
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Elucidating the Contributions of Plasmon-Induced Excitons and Hot Carriers to the Photocurrent of Molecular Junctions

机译:阐明血浆诱导的激子和热载体对分子交叉点的光电流的贡献

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摘要

Interfacial dephasing of plasmons can take place by several mechanisms. Deterministic control over their relative contributions to interfacial charge transfer is essential for many prospect highly efficient photon-harvesting applications. Here, using transport measurements of plasmon-induced current in molecular junctions, it is experimentally demonstrated that when plasmons with intraband energies are exclusively formed momentum matching constraints limit the contribution of hot carriers to the overall photocurrent to such an extent that near-field molecular exciton creation becomes the dominant dephasing mechanism. The implications of this observation are crucial for the realization of light-controlled coherent transport schemes in nanoscale junctions.
机译:等离子体的界面脱模可以通过几种机制进行。 对对界面电荷转移的相对贡献的确定性控制对于许多前景高效的光子收获应用至关重要。 这里,使用分子交叉点中的等离子体诱导电流的传输测量,它是通过实验证明的,当具有内部能量的等离子体完全形成动量匹配约束时,将热载体的贡献限制在近场分子激子的整体光电流的贡献 创作成为主导的脱离机制。 该观察的含义对于实现纳米级连接中的轻控制相干运输方案至关重要。

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