纳米晶
四方晶系
材料科学
硒化物
铜
纤锌矿晶体结构
纳米结构
纳米技术
无定形固体
相(物质)
亚稳态
化学工程
晶体结构
结晶学
化学
锌
冶金
硒
有机化学
工程类
作者
Feifan Chen,Yadong Zhang,Li‐Jun Hu,Lifang Zheng,Feiyue Ge,Changsheng Feng,Dan Xu,Chen‐Lei Tao,Xue‐Jun Wu
出处
期刊:SmartMat
[Wiley]
日期:2023-03-03
卷期号:4 (3)
被引量:4
摘要
Abstract The crystal phases are essential to the physicochemical properties and functionalities of materials. Copper selenide has emerged as an important and appealing semiconductor, which can exist in a variety of polymorphic phases. However, the richness of polymorphs also makes it a challenge to the direct preparation of copper selenide nanocrystals with tunable phases. Herein, two polymorphs, that is, quasi‐tetragonal Cu 2− x Se nanocubes and metastable wurtzite Cu 2 Se nanodisks, are successfully synthesized by using a single precursor, copper(I) selenocyanate (CuSeCN), as the Cu and Se sources. The key to phase modulation is the optimal choice of the ligand in the synthesis. The as‐prepared nanocrystals possess different morphologies and compositions, giving rise to distinct optical properties and electrical conductivities. Interestingly, the copper selenide nanocrystals can provide a platform for the rational construction of two types of amorphous hollow Au─Cu─Se nanostructures by reaction with Au(I) precursor, in which their final shapes are well kept as that of the original nanocrystal templates. This work provides an easy strategy for the phase‐controlled synthesis of copper selenide nanocrystals and enables the design of new materials for broad applications.
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