Issue 44, 2016, Issue in Progress

Ge-alloyed CZTSe thin film solar cell using molecular precursor adopting spray pyrolysis approach

Abstract

We report a promising fabrication approach for the synthesis of Ge-alloyed Cu2Zn(GexSn1−x)Se4 (CZGTSe) thin films using molecular precursors by spray pyrolysis to obtain band gap tuned kesterite solar cells. A stable and well dissolved precursor solution of CZTS/CZGTS with the desired elemental composition is prepared in DMSO solvent, sprayed on a Mo substrate and subsequently selenized under ambient selenium at high temperature to obtain well-crystallized absorber layers. The Ge-alloyed CZTSe thin films had improved surface morphology, grain size and crystal quality, which led to power conversion efficiencies as high as 4.72%. The growth properties and device analysis suggest that enhancement of the device performance can be achieved by further optimization of the absorber and interface layers with mitigation of defect activities.

Graphical abstract: Ge-alloyed CZTSe thin film solar cell using molecular precursor adopting spray pyrolysis approach

Supplementary files

Article information

Article type
Paper
Submitted
26 Jan 2016
Accepted
24 Mar 2016
First published
30 Mar 2016

RSC Adv., 2016,6, 37621-37627

Ge-alloyed CZTSe thin film solar cell using molecular precursor adopting spray pyrolysis approach

D. B. Khadka, S. Kim and J. Kim, RSC Adv., 2016, 6, 37621 DOI: 10.1039/C6RA02291J

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