Phase-controlled synthesis and photocatalytic properties of SnS, SnS2 and SnS/SnS2 heterostructure nanocrystals
摘要:
A phase-controlled synthesis of well-defined tin sulphides, including SnS, SnS2 and SnS/SnS2 heterostructured materials, was developed by one-step pyrolysis method. Such a- phase-controlled process was realized by changing the amount of CS2 in the precursor, in which pure SnS and SnS2 flakes were obtained upon no CS2 involved or CS2 excessively existed, while SnS/SnS2 heterostructured material formed by adding a suitable amount of CS2 to the precursor, following the Ostwald ripening. As-prepared tin sulphides materials showed a wide-range UV-vis absorption (300-800 nm) and excellent photoresponse property; particularly, SnS/SnS2 heterostructured material showed improved photocatalytic performance on photodegrading organic dyes, compared with that of as-synthesized pure phases of SnS and SnS2 materials. (C) 2013 Elsevier Ltd. All rights reserved.
Crystal and molecular structure of a novel mixed ligand complex of tin(IV)
作者:Suman Sharma、Rakesh Bohra、Ram C. Mehrotra
DOI:10.1016/0277-5387(95)00391-6
日期:1996.5
Recrystallization of [BrSn(S2CNEt2)2(OC(CH3)CHCOCH3)] 1, formed from the reaction of Br2Sn(S2CNEt2)2 with Na(CH3COCHCOCH3) in 1:1 molar ratio yields 2, a unique derivative, which was characterized by X-ray crystallography. The geometry around tin(IV) is distorted octahedral, with the average SnS distance [2.548(4)Å] of the chelated dithiocarbamate being longer than the SnS distance [2.388(5)Å] of the