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巯基乙酸盐封端的 PbS 纳米立方:双极性输运使基于量子点的电路能够在柔性衬底上实现。

Thiocyanate-capped PbS nanocubes: ambipolar transport enables quantum dot based circuits on a flexible substrate.

机构信息

Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104, United States.

出版信息

Nano Lett. 2011 Nov 9;11(11):4764-7. doi: 10.1021/nl202578g. Epub 2011 Oct 24.

Abstract

We report the use of thiocyanate as a ligand for lead sulfide (PbS) nanocubes for high-performance, thin-film electronics. PbS nanocubes, self-assembled into thin films and capped with the thiocyanate, exhibit ambipolar characteristics in field-effect transistors. The nearly balanced, high mobilities for electrons and holes enable the fabrication of CMOS-like inverters with promising gains of ∼22 from a single semiconductor material. The mild chemical treatment and low-temperature processing conditions are compatible with plastic substrates, allowing the realization of flexible, nonsintered quantum dot circuits.

摘要

我们报告了使用硫氰酸盐作为硫化铅 (PbS) 纳米立方体的配体,以实现高性能的薄膜电子器件。自组装成薄膜并被硫氰酸盐覆盖的 PbS 纳米立方体在场效应晶体管中表现出双极性特性。电子和空穴的近乎平衡、高迁移率使得能够使用单一半导体材料制造具有约 22 的增益的类似 CMOS 的逆变器。温和的化学处理和低温处理条件与塑料衬底兼容,允许实现灵活的、非烧结的量子点电路。

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