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利用纳米粒子阳离子交换反应对纤锌矿型和闪锌矿型ZnS、CdS及CuInS进行结构选择性合成。

Structure-Selective Synthesis of Wurtzite and Zincblende ZnS, CdS, and CuInS Using Nanoparticle Cation Exchange Reactions.

作者信息

Fenton Julie L, Steimle Benjamin C, Schaak Raymond E

机构信息

Department of Chemistry and Materials Research Institute , The Pennsylvania State University , University Park , Pennsylvania 16802 , United States.

出版信息

Inorg Chem. 2019 Jan 7;58(1):672-678. doi: 10.1021/acs.inorgchem.8b02880. Epub 2018 Dec 7.

Abstract

For polymorphic solid-state systems containing multiple distinct crystal structures of the same composition, identifying rational pathways to selectively target one particular structure is an important synthetic capability. Cation exchange reactions can transform a growing library of metal chalcogenide nanocrystals into different phases by replacing the cation sublattice, often while retaining morphology and crystal structure. However, only a few examples have been demonstrated where multiple distinct phases in a polymorphic system could be selectively accessed using nanocrystal cation exchange reactions. Here, we show that roxbyite (hexagonal) and digenite (cubic) CuS nanoparticles transform upon cation exchange with Cd, Zn, and In to wurtzite (hexagonal) and zincblende (cubic) CdS, ZnS, and CuInS, respectively. These products retain the anion and cation sublattice features programmed into the copper sulfide template, and each phase forms to the exclusion of other known crystal structures. These results significantly expand the scope of structure-selective cation exchange reactions in polymorphic systems.

摘要

对于包含相同组成的多个不同晶体结构的多晶型固态体系而言,确定合理的途径以选择性地靶向某一特定结构是一项重要的合成能力。阳离子交换反应可以通过替换阳离子亚晶格,将不断增加的金属硫族化物纳米晶体库转变为不同的相,同时通常保留形态和晶体结构。然而,仅有少数例子表明,利用纳米晶体阳离子交换反应能够选择性地获得多晶型体系中的多个不同相。在此,我们表明,菱硫铜铅矿(六方晶系)和辉铜矿(立方晶系)的硫化铜纳米颗粒在与镉、锌和铟进行阳离子交换时,分别转变为纤锌矿(六方晶系)和闪锌矿(立方晶系)的硫化镉、硫化锌和铜铟硫。这些产物保留了编入硫化铜模板中的阴离子和阳离子亚晶格特征,并且每个相的形成都排除了其他已知的晶体结构。这些结果显著扩展了多晶型体系中结构选择性阳离子交换反应 的范围。

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