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Synthesis of wurtzite-zincblende Cu2ZnSnS4 and Cu2ZnSnSe4 nanocrystals: insight into the structural selection of quaternary and ternary compounds influenced by binary nuclei

Title
Synthesis of wurtzite-zincblende Cu2ZnSnS4 and Cu2ZnSnSe4 nanocrystals: insight into the structural selection of quaternary and ternary compounds influenced by binary nuclei
Author
김태환
Keywords
INORGANIC HYBRID PHOTODETECTORS; CZTSSE SOLAR-CELLS; TUNABLE BAND-GAP; CU2ZNSN(S1-XSEX)(4) NANOCRYSTALS; COLLOIDAL SYNTHESIS; THERMOELECTRIC PROPERTIES; CU2ZNGESE4 NANOCRYSTALS; CUINS2; PERFORMANCE; FABRICATION
Issue Date
2014-04
Publisher
ROYAL SOC CHEMISTRY, THOMAS GRAHAM HOUSE, SCIENCE PARK, MILTON RD, CAMBRIDGE CB4 0WF, CAMBS, ENGLAND
Citation
NANOSCALE; 2014, 6, 7, p3777-p3785
Abstract
Nearly monodispersed wurtzite-dominant Cu2ZnSnS4 and zincblende-dominant Cu2ZnSnSe4 nanocrystals were successfully synthesized by mixing metal salts with heated thiourea or selenourea in oleylamine. A perspective of the structural relationship between quaternary and ternary semiconductors was investigated through the application of different anion sources to prepare Cu2SnS3 and Cu2SnSe3 nanocrystals. Investigations on copper-based binary compounds found that CuSe (or CuS) and Cu2Se (or Cu1.96S, Cu9S5) nuclei were primarily responsible for the formation of zincblende or wurtzite structures, respectively. Further management over these binary intermediates corresponded to slight structural transformations of the quaternary nanocrystals which could be observed not only in XRD patterns, but from optical and electrical properties as well. According to these results, Cu2ZnGeS4 nanocrystals with wurtzite-dominant structures were first reported using SC(NH2)(2), which also verified that the binary semiconductors are the determinative factors.
URI
http://pubs.rsc.org/-/content/articlelanding/2014/nr/c3nr05358j/unauth#!divAbstracthttp://hdl.handle.net/20.500.11754/50128
ISSN
2040-3364
DOI
10.1039/C3NR05358J
Appears in Collections:
COLLEGE OF ENGINEERING[S](공과대학) > ELECTRONIC ENGINEERING(융합전자공학부) > Articles
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