Optoelectronics Using 2D Colloidal Nanocrystals from Wide Band Gap to Narrow Band Gap Materials

Bertille Martinez, Clément Livache, N. Goubet, Eva Izquierdo, M. Silly, S. Ithurria, E. Lhuillier
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引用次数: 1

Abstract

Colloidal nanocrystals are playing an increasing role for the development of low cost optoelectronics. Among these materials, 2D nanoplatelets (NPL) offer particularly well-controlled optical features and their integration into device such as transistor and photoconductor is here discussed. We present recent results obtained on the optoelectronic properties of CdSe/CdS and HgTe 2D nanoplatelets (NPL). The manuscript is organized along three main sections. The first part is an introduction to 2D NPLs and their structural and optical properties. The second part gets focused on CdSe/CdS NPL and their photoconductive properties. We in particular highlight the key role plays by the 2D geometries on the charge dissociation. Finally the last part of the paper discusses about the recent report of HgTe and HgSe NPL with optical features in the near infrared. Here we discuss how the surface chemistry can be used to tune the majority carrier and the photoconductive properties of the material.
光电子学应用二维胶体纳米晶体从宽带隙到窄带隙材料
胶体纳米晶体在低成本光电子技术的发展中发挥着越来越重要的作用。在这些材料中,二维纳米片(NPL)提供了特别好的控制光学特性,并将其集成到晶体管和光电导体等器件中。我们介绍了CdSe/CdS和HgTe 2D纳米血小板(NPL)光电特性的最新研究结果。手稿由三个主要部分组成。第一部分介绍了二维不良贷款及其结构和光学性质。第二部分重点介绍了CdSe/CdS NPL及其光导性能。我们特别强调了二维几何形状对电荷解离的关键作用。最后,对近年来报道的具有近红外光学特征的HgTe和HgSe NPL进行了综述。在这里,我们讨论了如何利用表面化学来调整大多数载流子和材料的光导特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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