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Solvothermal synthesis of zincblende and wurtzite CuInS 2 nanocrystals and their photovoltaic application
Journal article   Peer reviewed

Solvothermal synthesis of zincblende and wurtzite CuInS 2 nanocrystals and their photovoltaic application

Wan-Chen Huang, Chih-Hsiao Tseng, Shu-Hao Chang, Hsing-Yu Tuan, Chien-Chih Chiang, Lian-Ming Lyu and Michael H. Huang
Langmuir, Vol.28(22), pp.8496-8501
05/06/2012

Abstract

CuInS2 nanocrystals
We report a simple solvothermal synthesis approach to the growth of CuInS 2 nanocrystals with zincblende- and wurtzite-phase structures. Zincblende nanocrystals with particle sizes of 10-20 nm were produced using oleylamine as the solvent. When ethylenediamine was used as the solvent, similarly sized wurtzite nanocrystals with some degree of particle aggregation were formed. Use of a mixture of these solvents gave products with mixed phases including some polyhedral nanostructures. The crystal phases of these nanocrystals were carefully determined by X-ray diffraction and transmission electron microscopy analysis. All the samples exhibit strong absorption from the entire visible light region to the near-infrared region beyond 1300 nm. Pure-phase zincblende and wurtzite CuInS 2 nanocrystals were employed as ink in the fabrication of solar cells. The spray-coated nanocrystal layer was subjected to a selenization process. A power conversion efficiency of ∼0.74% and a good external quantum efficiency profile over broad wavelengths have been measured. The results demonstrate that wurtzite and zincblende CuInS 2 nanocrystals may be attractive precursors to light-absorbing materials for making efficient photovoltaic devices. © 2012 American Chemical Society.

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