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Tunable Morphology of the Self-Assembled Organic Microcrystals for the Efficient Laser Optical Resonator by Molecular Modulation
Wang, Xuedong; Li, Hui; Wu, Yishi; Xu, Zhenzhen; Fu, Hongbing
NOV 26 2014
Source PublicationJOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume136Issue:47Pages:16602-16608
AbstractControlling the position of metal sulfide architectures is prerequisite and facilitates their device applications in solar cells, light-emitting diodes, and many other optoelectronic fields. Thanks to ambient-connected gas network trapped upon superhydrophobic surfaces, H2S gas can be continuously transported and reacted with metal ions along solid/liquid/gas triphase contact interface. Therefore, precisely positioning metal sulfide microstructure arrays are generated accordingly. The growth mechanisms as well as influencing factors are investigated to tailor the morphology, structure, and chemical composition of these metal sulfide materials. This interface-mediated strategy can be widely applied to many other metal sulfides, such as PbS, MnS, Ag2S, and CuS. In particular, heterostructured metal sulfide architectures, such as PbS/CdS concentric microflower arrays, can be generated by stepwise replacement of metal ions inside liquid, exhibiting the advanced applications of this interface-mediated growth strategy.
Indexed BySCI
Document Type期刊论文
Identifierhttp://ir.iccas.ac.cn/handle/121111/38619
Collection其它
Recommended Citation
GB/T 7714
Wang, Xuedong,Li, Hui,Wu, Yishi,et al. Tunable Morphology of the Self-Assembled Organic Microcrystals for the Efficient Laser Optical Resonator by Molecular Modulation[J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY,NOV ,136(47):16602-16608.
APA Wang, Xuedong,Li, Hui,Wu, Yishi,Xu, Zhenzhen,&Fu, Hongbing.(NOV ).Tunable Morphology of the Self-Assembled Organic Microcrystals for the Efficient Laser Optical Resonator by Molecular Modulation.JOURNAL OF THE AMERICAN CHEMICAL SOCIETY,136(47),16602-16608.
MLA Wang, Xuedong,et al."Tunable Morphology of the Self-Assembled Organic Microcrystals for the Efficient Laser Optical Resonator by Molecular Modulation".JOURNAL OF THE AMERICAN CHEMICAL SOCIETY 136.47(NOV ):16602-16608.
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