Ou Y C, Cheng S F, Jian W B
Institute of Physics, National Chiao Tung University, Hsinchu, Taiwan.
Nanotechnology. 2009 Jul 15;20(28):285401. doi: 10.1088/0957-4484/20/28/285401. Epub 2009 Jun 23.
Interdot Coulomb interactions and collective Coulomb blockade were theoretically argued to be a newly important topic, and experimentally identified in semiconductor quantum dots, formed in the gate confined two-dimensional electron gas system. Developments of cluster science and colloidal synthesis accelerated the studies of electron transport in colloidal nanocrystal or quantum-dot solids. To study the interdot coupling, various sizes of two-dimensional arrays of colloidal PbSe quantum dots are self-assembled on flat gold surfaces for scanning tunneling microscopy and scanning tunneling spectroscopy measurements at both room and liquid-nitrogen temperatures. The tip-to-array, array-to-substrate, and interdot capacitances are evaluated and the tunneling spectra of quantum-dot arrays are analyzed by the theory of collective Coulomb blockade. The current-voltage of PbSe quantum-dot arrays conforms properly to a scaling power law function. In this study, the dependence of tunneling spectra on the sizes (numbers of quantum dots) of arrays is reported and the capacitive coupling between quantum dots in the arrays is explored.
点间库仑相互作用和集体库仑阻塞在理论上被认为是一个新的重要课题,并在由栅极限制二维电子气系统形成的半导体量子点中得到了实验验证。团簇科学和胶体合成的发展加速了对胶体纳米晶体或量子点固体中电子输运的研究。为了研究点间耦合,各种尺寸的二维胶体PbSe量子点阵列在平坦的金表面上自组装,用于在室温和液氮温度下进行扫描隧道显微镜和扫描隧道光谱测量。评估了针尖与阵列、阵列与衬底以及点间电容,并通过集体库仑阻塞理论分析了量子点阵列的隧道光谱。PbSe量子点阵列的电流-电压与标度幂律函数相符。在本研究中,报道了隧道光谱对阵列尺寸(量子点数量)的依赖性,并探索了阵列中量子点之间的电容耦合。