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锑掺杂二氧化锡纳米晶体的即时合成后水性分散体:小分子胺与锑掺杂比例之间的协同作用

Instant Postsynthesis Aqueous Dispersion of Sb-Doped SnO Nanocrystals: The Synergy between Small-Molecule Amine and Sb Dopant Ratio.

作者信息

Chen Zhangxian, Xie Qiannan, Ding Juxuan, Yang Zeheng, Zhang Weixin, Cheng Hansong

机构信息

School of Chemistry & Chemical Engineering, Hefei University of Technology, Hefei 230009, China.

School of Materials Science & Engineering, Hefei University of Technology, Hefei 230009, China.

出版信息

ACS Appl Mater Interfaces. 2020 Jul 1;12(26):29937-29945. doi: 10.1021/acsami.0c04494. Epub 2020 Jun 21.

Abstract

Direct printing of transparent conducting oxide (TCO) nanocrystal dispersions holds great promise in solution-processed optoelectronics due to its advantages of low material waste and direct patterning on substrates. An essential prerequisite for printable TCO colloidal solutions is the effective stabilization of TCO nanocrystals to prevent their strong aggregation. In situ stabilization uses long-chain ligands to provide interparticle steric repulsion between TCO nanocrystals during the growth of TCO nanocrystals. In sharp contrast, the postsynthesis dispersion of TCO nanocrystals is particularly challenging since the agglomeration already occurs, especially for TCO nanocrystals synthesized without protection by any organic species. Herein, we propose an instant postsynthesis strategy for aqueous colloidal dispersions of Sb-doped SnO (ATO) nanocrystals using small-molecule amines of propylamine, ethylenediamine, monoethanolamine, and triethylamine. The average size of ATO secondary particles in aqueous dispersions can be instantly reduced from around 400 to about 25 nm using these amines. The increased Sb dopant ratio also plays a synergistic role in the dispersion effect. The small-molecule amines are found to be preferably adsorbed onto the Sb sites exposed on ATO nanocrystal surface. A higher Sb dopant ratio would facilitate the adsorption of more amines and induce stronger surface charge repulsion that benefits the stable dispersion of ATO nanocrystals. TCO films fabricated with the ATO nanocrystal dispersions have a high transparency of 80.6% and low sheet resistance of 492 Ω/sq, showing promising application in electrochromic devices.

摘要

直接印刷透明导电氧化物(TCO)纳米晶体分散体在溶液处理的光电子学中具有巨大潜力,因为它具有材料浪费低和可直接在基板上进行图案化的优点。可印刷TCO胶体溶液的一个基本前提是有效稳定TCO纳米晶体,以防止它们强烈聚集。原位稳定化使用长链配体在TCO纳米晶体生长过程中提供TCO纳米晶体之间的颗粒间空间排斥力。与之形成鲜明对比的是,TCO纳米晶体的合成后分散尤其具有挑战性,因为团聚已经发生,特别是对于没有任何有机物种保护下合成的TCO纳米晶体。在此,我们提出了一种使用丙胺、乙二胺、单乙醇胺和三乙胺等小分子胺对掺锑二氧化锡(ATO)纳米晶体的水性胶体分散体进行即时合成后处理的策略。使用这些胺可以将水性分散体中ATO二次颗粒的平均尺寸从约400nm立即减小到约25nm。增加的锑掺杂比例在分散效果中也起到协同作用。发现小分子胺优选吸附在ATO纳米晶体表面暴露的锑位点上。较高的锑掺杂比例将促进更多胺的吸附并诱导更强的表面电荷排斥,这有利于ATO纳米晶体的稳定分散。用ATO纳米晶体分散体制备的TCO薄膜具有80.6%的高透明度和492Ω/sq的低方块电阻,在电致变色器件中显示出有前景的应用。

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