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胶态 CsPbBr3 钙钛矿纳米晶体的配体介导合成研究:有机酸、碱和铯前驱体的作用。

Insight into the Ligand-Mediated Synthesis of Colloidal CsPbBr3 Perovskite Nanocrystals: The Role of Organic Acid, Base, and Cesium Precursors.

机构信息

Department of Chemistry, School of Science, Xi'an Jiaotong University , Xianning West Road, 28, Xi'an, 710049, China.

Xinjiang Key Laboratory of Electronic Information Materials and Devices, Xinjiang Technical Institute of Physics & Chemistry, Chinese Academy of Sciences , Urumqi 830011, China.

出版信息

ACS Nano. 2016 Aug 23;10(8):7943-54. doi: 10.1021/acsnano.6b03863. Epub 2016 Aug 8.

Abstract

While convenient solution-based procedures have been realized for the synthesis of colloidal perovskite nanocrystals, the impact of surfactant ligands on the shape, size, and surface properties still remains poorly understood, which calls for a more detailed structure-morphology study. Herein we have systematically varied the hydrocarbon chain composition of carboxylic acids and amines to investigate the surface chemistry and the independent impact of acid and amine on the size and shape of perovskite nanocrystals. Solution phase studies on purified nanocrystal samples by (1)H NMR and IR spectroscopies have confirmed the presence of both carboxylate and alkylammonium ligands on surfaces, with the alkylammonium ligand being much more mobile and susceptible to detachment from the nanocrystal surfaces during polar solvent washes. Moreover, the chain length variation of carboxylic acids and amines, ranging from 18 carbons down to two carbons, has shown independent correlation to the size and shape of nanocrystals in addition to the temperature effect. We have additionally demonstrated that employing a more soluble cesium acetate precursor in place of the universally used Cs2CO3 results in enhanced processability without sacrificing optical properties, thus offering a more versatile recipe for perovskite nanocrystal synthesis that allows the use of organic acids and amines bearing chains shorter than eight carbon atoms. Overall our studies have shed light on the influence of ligand chemistry on crystal growth and stabilization of the nanocrystals, which opens the door to functionalizable perovskite nanocrsytals through surface ligand manipulation.

摘要

虽然已经实现了方便的基于溶液的方法来合成胶体钙钛矿纳米晶体,但是表面活性剂配体对形状、尺寸和表面性质的影响仍然了解甚少,这需要更详细的结构-形态研究。在此,我们系统地改变了羧酸和胺的烃链组成,以研究表面化学以及酸和胺对钙钛矿纳米晶体尺寸和形状的独立影响。通过(1)H NMR 和 IR 光谱对纯化的纳米晶体样品进行的溶液相研究证实了表面上同时存在羧酸盐和烷基铵配体,其中烷基铵配体更具流动性,并且在极性溶剂洗涤过程中更容易从纳米晶体表面脱离。此外,羧酸和胺的链长变化范围从 18 个碳原子减少到 2 个碳原子,除了温度效应之外,还与纳米晶体的尺寸和形状具有独立相关性。我们还证明了,用更易溶解的醋酸铯前体代替普遍使用的 Cs2CO3,可以在不牺牲光学性能的情况下提高加工性能,从而为钙钛矿纳米晶体合成提供了更通用的配方,允许使用短于 8 个碳原子的链的有机酸和胺。总的来说,我们的研究揭示了配体化学对晶体生长和纳米晶体稳定的影响,这为通过表面配体操纵实现功能化钙钛矿纳米晶体开辟了道路。

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