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Compositional Optimization of Photovoltaic Grade Cu2ZnSnS4 (CZTS) Films Synthesized by Colloidal Route

IR@NPL: CSIR-National Physical Laboratory, New Delhi

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Title Compositional Optimization of Photovoltaic Grade Cu2ZnSnS4 (CZTS) Films Synthesized by Colloidal Route
 
Creator Jain, Shefali
Sharma, Shailesh Narain
 
Subject Applied Physics/Condensed Matter
 
Description In recent years, kesterite structured Cu2ZnSn(S, Se)(4) materials have attracted significant interest as second generation solar cell material. However, the capability of reproducibly synthesizing these nanocrystal (NC) inks with accurately controlled and specific compositions is very crucial for making efficient solar cell devices. In this work rod shaped CZTS nanoparticles are synthesized by cost effective and rapid hot injection technique using TOPO-TOP as capping ligand for various Zn/ Sn precursor ratios. Since, for good solar cell device material (here, CZTS nanocrystals) higher zinc concentration are required so here, we varies zinc concentration and we find that mere increase in zinc amount in precursors for the synthesis of CZTS nanocrystals may not be necessarily advantageous for solar cell application. It should be optimized with respect to tin (Sn), phosphorus (P) and copper (Cu) for best PV properties and we find that incorporation of zinc into CZTS is higher in case where zinc amount is less in precursors. Different aspects of these nanorods are analyzed by EDAX, contact angle, transmission electron microscopy (TEM) and photoluminescence spectroscopy respectively.
 
Publisher Springer Verlag
 
Date 2017
 
Type Conference or Workshop Item
PeerReviewed
 
Format application/pdf
 
Identifier http://npl.csircentral.net/2940/1/Compositional%20Optimization%20of%20Photovoltaic%20Grade%20Cu%202%20ZnSnS.pdf
Jain, Shefali and Sharma, Shailesh Narain (2017) Compositional Optimization of Photovoltaic Grade Cu2ZnSnS4 (CZTS) Films Synthesized by Colloidal Route. In: International Conference on the Recent Trends in Materials and Devices (ICRTMD), DEC 15-17, 2015, INDIA.
 
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