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Electronic properties of hybrid Cu_2S/Ru semiconductor/metallic- cage nanoparticles

机译:杂化Cu_2S / Ru半导体/金属笼型纳米粒子的电子性质

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Hybrid inorganic nanoparticles, comprising a semiconducting Cu_2S quantum-dot (QD) core encapsulated by a metallic Ru cage-like shell, and each of their individual components, are studied via scanning tunneling spectroscopy. Bare Cu_2S QDs show nearly identical semiconducting-like I-V characteristics while the empty Ru cages exhibit single electron tunneling effects - the Coulomb blockade and staircase. Surprisingly, in some cases negative differential conductance features, with periodicity that correlates to the Coulomb staircase, were observed. The tunneling spectra measured on the hybrid QDs varies greatly along a single particle, manifesting synergetic electrical properties that originate from this unique semiconducting-metallic interface.
机译:通过扫描隧道光谱法研究了杂化无机纳米粒子,该纳米粒子包含被金属Ru笼状壳包裹的半导体Cu_2S量子点(QD)核及其各个组分。裸露的Cu_2S量子点显示出几乎相同的类似半导体的I-V特性,而空的Ru笼子则表现出单电子隧穿效应-库仑阻塞和阶梯效应。令人惊讶地,在某些情况下,观察到负微分电导特征,其周期性与库仑阶梯相关。在混合量子点上测得的隧穿谱沿单个粒子变化很大,表现出源自这种独特的半导体-金属界面的协同电性能。

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