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单壁碳纳米管器件上纳米晶体量子点的光电流成像

Photocurrent imaging of nanocrystal quantum dots on single-walled carbon nanotube device.

作者信息

Chang Won Seok, Jeong Sohee, Shim Hung Chul, Han Chang Soo, Park Jaegu, Ahn Young Hwan, Jeong Mun Seok

机构信息

Nano-Mechanical Systems Research Division, Korea Institute of Machinery and Materials, Daejeon 305-343, Korea.

出版信息

J Nanosci Nanotechnol. 2011 May;11(5):4300-4. doi: 10.1166/jnn.2011.3658.

Abstract

Semiconductor nanocrystal quantum dots (NQDs) are considered an attractive candidate for use in optoelectronic applications due to the ease of band gap control provided by varying the particle size. To increase the efficiency of NQDs when practically applied in devices, researchers have introduced the concept of coupling of NQDs to one-dimensional nanostructures such as single-walled carbon nanotubes (SWCNTs), which have a ballistic conducting channel. In the present study, NQDs of CdSe core and CdSe/ZnS are used as light absorbing building blocks. SWCNTs and functionalized NQDs are non-covalently coupled using pyridine molecules in order to maintain their electronic structures. To measure the electrical signals from the device, a NQDs-SWCNT hybrid nanostructure is fabricated as a field-effect transistor (FET) using the dielectrophoresis (DEP) method. A confocal scanning microscope was used to scan the devices using a diffraction-limited laser spot and the photocurrent was recorded as a function of the position of the laser spot. To improve the performance of detecting small electronic signal with high signal-to-noise ratio we used a lock-in technique with an intensity-modulated laser. In this paper, we have demonstrated that detection of local photoconductivity provides an efficient means to resolve electronic structure modulations along NQDs-SWCNT hybrid nanostructures.

摘要

半导体纳米晶体量子点(NQDs)因其通过改变颗粒尺寸可轻松实现带隙控制,而被视为光电子应用中有吸引力的候选材料。为提高NQDs在实际器件应用中的效率,研究人员引入了将NQDs与一维纳米结构(如具有弹道传导通道的单壁碳纳米管(SWCNTs))耦合的概念。在本研究中,CdSe核和CdSe/ZnS的NQDs被用作光吸收构建块。SWCNTs和功能化的NQDs使用吡啶分子进行非共价耦合,以维持其电子结构。为测量器件的电信号,采用介电电泳(DEP)方法将NQDs-SWCNT混合纳米结构制备成场效应晶体管(FET)。使用共聚焦扫描显微镜,用衍射极限激光光斑扫描器件,并将光电流记录为激光光斑位置的函数。为提高检测小电子信号的性能并获得高信噪比,我们使用了强度调制激光的锁相技术。在本文中,我们证明了局部光电导率检测为解析沿NQDs-SWCNT混合纳米结构的电子结构调制提供了一种有效手段。

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