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胶体八足形 CdSe/CdS 纳米晶体形成的薄膜的空间分辨光电导性。

Spatially resolved photoconductivity of thin films formed by colloidal octapod-shaped CdSe/CdS nanocrystals.

机构信息

Italian Institute of Technology, Via Morego 30, 16163 Genoa, Italy.

出版信息

Nanoscale. 2011 Jul;3(7):2964-70. doi: 10.1039/c1nr10251f. Epub 2011 Jun 3.

Abstract

We studied the optical absorption and photoconductive properties of thin films consisting of core-shell octapod-shaped nanocrystals, which consisted of CdS pods that branch out from a CdSe core. The current-voltage characteristics were measured at room and cryogenic temperatures and agreed well with a phenomenological exponential fitting model, from which we could extract the sheet resistance and the average voltage barrier for the charge tunneling between the octapods. The temperature dependence of the photocurrent showed temperature activated behavior above 220 K and a non-Arrhenius exponential (T/T(0))(n) dispersion below 220 K. Furthermore, we mapped the photocurrent generation within the octapod film via scanning photocurrent microscopy, which revealed photocurrent enhancement near micron-size voids and spatial shifts of the photocurrent maxima with bias voltage.

摘要

我们研究了由核壳型八足纳米晶体组成的薄膜的光学吸收和光电导特性,这些纳米晶体由从 CdSe 核分支出来的 CdS 荚组成。在室温及低温下测量了电流-电压特性,其与唯象指数拟合模型吻合良好,由此我们可以提取出薄片电阻和八足之间电荷隧穿的平均电压势垒。在 220 K 以上,光电流的温度依赖性表现出温度激活行为,在 220 K 以下,呈现出非 Arrhenius 指数(T/T(0))(n)的分散。此外,我们通过扫描光电导显微镜对八足薄膜内的光电流产生进行了映射,这揭示了在微米级空隙附近的光电流增强和随着偏置电压的光电流最大值的空间移动。

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