Issue 32, 2018

Nanostructured binary copper chalcogenides: synthesis strategies and common applications

Abstract

Nanostructured binary copper chalcogenides (NBCCs) have been the subject of extensive research as promising candidates in energy-related and biological applications due to their advantageous properties, environmental compatibility, and abundance. The remarkable properties of these materials is born out of the variable stoichiometry between the copper and chalcogens, as well as the structural versatility, with zero-dimension to three-dimension structures, which consequently improves their electrical, optical, and catalytic properties. Here, the research history and development process of the binary copper chalcogenides are introduced. Typical synthesis strategies for NBCCs vary according to structure dimensionality and specific energy-related and biological applications dependent on the structure and stoichiometry are summarized. The future development of designed nanostructures and tuned stoichiometry in NBCCs for further high-performance applications are outlined.

Graphical abstract: Nanostructured binary copper chalcogenides: synthesis strategies and common applications

Article information

Article type
Review Article
Submitted
10 Jul 2018
Accepted
16 Jul 2018
First published
17 Jul 2018

Nanoscale, 2018,10, 15130-15163

Nanostructured binary copper chalcogenides: synthesis strategies and common applications

X. Chen, J. Yang, T. Wu, L. Li, W. Luo, W. Jiang and L. Wang, Nanoscale, 2018, 10, 15130 DOI: 10.1039/C8NR05558K

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