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Wen, Xin; Shao, Hansen; Fu, Gao; Zhou, Yong; Zou, Zhigang; Luo, Wenjun; Guan, Zhongjie, E-mail: iamwjluo@njtech.edu.cn, E-mail: zgzou@nju.edu.cn2016
AbstractAbstract
[en] Cu_2ZnSnS_4 (CZTS) is one of the most promising light capture materials for solar cells or solar fuels. Construction of 3D hierarchical structure is very important for efficient optoelectronic devices. It is challenging to directly fabricate 3D hierarchical structure CZTS film by a facile solution method. Herein, we present a one-step sol–gel method for fabrication of CZTS thin films with 3D hierarchical structures. For the first time, it is found that the morphologies of thin films can be adjusted between dense, porous and 3D hierarchical structures by tuning anion ratios of Cl"−/Ac"− in precursor solution. Further analysis suggests the formation of intermediate phases of SnO_2 nanoparticles and SnS_2 nanosheets by tuning ratios of Cl"−/Ac"− in precursor solution, which has important effects on the formation of different nanostructures of CZTS. This study can deepen understanding of anion’ effect on morphologies of samples using a solution method and forms a reference to prepare novel nanostructures of other materials. (paper)
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Available from http://dx.doi.org/10.1088/0022-3727/49/10/105102; Country of input: International Atomic Energy Agency (IAEA)
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Journal Article
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ALKALINE EARTH METAL COMPOUNDS, ALLOYS, CHALCOGENIDES, COMPLEXES, DIRECT ENERGY CONVERTERS, DISPERSIONS, DYES, ELEMENTS, EQUIPMENT, FILMS, HETEROCYCLIC COMPOUNDS, HOMOGENEOUS MIXTURES, METALS, MIXTURES, ORGANIC COMPOUNDS, OXIDES, OXYGEN COMPOUNDS, PARTICLES, PHOTOELECTRIC CELLS, PHOTOVOLTAIC CELLS, PLATINUM METALS, REFRACTORY METALS, SEMICONDUCTOR JUNCTIONS, SOLAR EQUIPMENT, SULFIDES, SULFUR COMPOUNDS, TIN COMPOUNDS, TRANSITION ELEMENT COMPOUNDS, TRANSITION ELEMENTS, YTTRIUM COMPOUNDS
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