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多孔单晶 CdSe 纳米带:阳离子交换合成及对 Cu 的高选择性光电传感

Porous Single-Crystalline CdSe Nanobelts: Cation-Exchange Synthesis and Highly Selective Photoelectric Sensing toward Cu.

机构信息

Institute of Physical Science and Information Technology, Anhui University, Hefei, 230601, P. R. China.

Key Laboratory of Environmental Optics and Technology, Institute of Intelligent Machines, Chinese Academy of Sciences, Hefei, 230031, P. R. China.

出版信息

Chemistry. 2018 Jul 11;24(39):9877-9883. doi: 10.1002/chem.201801215. Epub 2018 Jun 8.

Abstract

Porous single-crystalline nanostructures are of tremendous interest for their application in the catalytic, electronic and sensing fields due to their large active surfaces, favorable diffusion, and good electronic transport. Despite the recent advances of various other components, photoelectric chalcogenides remain almost undeveloped. The present study contributes a facile strategy to prepare porous single-crystalline CdSe nanobelts through a cation-exchange reaction, in which ZnSe⋅0.5 N H hybrid nanobelts are employed as precursors. The detailed characterizations indicate the preservation of the belt-like morphology of the precursors due to the spatial confinement effect, which arises from the coated surfactant layer during the cation-exchange process. Simultaneously, CdSe nanobelts with porous and single-crystalline structures are formed following a complete exchange between Zn and Cd , the release of N H , and the atomic arrangement. The native photoelectric properties of the as-prepared porous single-crystalline CdSe nanobelts are systematically addressed based on the nanodevices fabricated with a single nanobelt and assembled nanobelt array. The results indicate that they present a rapid, stable, and repeatable photoelectric response. Moreover, as-prepared nanobelts exhibit highly selective photoelectric sensing toward Cu with a low detection limit down to 0.1 ppm. To illuminate this phenomenon, a possible sensing mechanism is also discussed.

摘要

多孔单晶纳米结构因其具有较大的活性表面、有利的扩散和良好的电子输运等优点,在催化、电子和传感等领域得到了广泛的关注。尽管最近在其他各种组件方面取得了进展,但光电半导体仍然几乎没有得到开发。本研究通过阳离子交换反应提供了一种简便的策略来制备多孔单晶 CdSe 纳米带,其中使用 ZnSe⋅0.5N H 混合纳米带作为前体。详细的表征表明,由于在阳离子交换过程中覆盖的表面活性剂层的空间限制效应,前驱体保持了带状形态。同时,Zn 和 Cd 之间的完全交换、N H 的释放和原子排列导致形成了具有多孔和单晶结构的 CdSe 纳米带。基于用单个纳米带和组装的纳米带阵列制造的纳米器件,系统地研究了所制备的多孔单晶 CdSe 纳米带的本征光电性能。结果表明,它们呈现出快速、稳定和可重复的光电响应。此外,所制备的纳米带对 Cu 表现出高度选择性的光电传感,检测限低至 0.1ppm。为了阐明这一现象,还讨论了一种可能的传感机制。

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