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首页> 外文期刊>RSC Advances >Phase transition in Cu2+xSnS3+y (0 ≤ x ≤ 2; 0 ≤ y ≤ 1) ternary systems synthesized from complexes of coumarin derived thiocarbamate motifs: optical and morphological properties
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Phase transition in Cu2+xSnS3+y (0 ≤ x ≤ 2; 0 ≤ y ≤ 1) ternary systems synthesized from complexes of coumarin derived thiocarbamate motifs: optical and morphological properties

机译:由香豆素衍生的硫代氨基甲酸酯基序配合物合成的Cu2 + xSnS3 + y(0≤x≤2; 0≤y≤1)三元体系的相变:光学和形态学性质

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Tetragonal Cu _(2) SnS _(3) and orthorhombic Cu _(4) SnS _(4) nanocubes were synthesized by a heat up procedure with oleylamine (OLA) and dodecanethiol (DT) acting as both solvent and capping ligands. Both mohite–anorthic and monoclinic phases were obtained from the same variant of precursors mixture, by hot injection synthesis, at 200 and 250 °C. Changing the reaction conditions also leads to the formation of different morphologies. When OLA was used as a solvent, nanosheets or nanocubes were obtained, while the reaction with DT resulted in the formation of particles in the form of nanohexagons. The growth process of copper tin sulphide starts with the formation of Cu ~(+) seeds, followed by the oxidation of Sn ~(2+) to Sn ~(4+) . Dodecanethiol was an additional source of sulphur. The overall reaction leads to the formation of either phase pure Cu _(2) SnS _(3) or Cu _(4) SnS _(4) , depending on the reaction conditions, with band-gap energies of 1.05–1.45 eV, which are in the optimum range for photovoltaic applications.
机译:通过加热程序以油胺(OLA)和十二烷硫醇(DT)作为溶剂和封端配体,合成了四方Cu _(2)SnS _(3)和斜方Cu _(4)SnS _(4)纳米立方体。 Mohite-anorthic和单斜晶相都是通过在200和250°C下通过热注射合成从相同的前体混合物变体获得的。改变反应条件也导致形成不同的形态。当OLA用作溶剂时,获得纳米片或纳米立方体,而与DT的反应导致形成纳米六方形式的颗粒。硫化铜锡的生长过程始于形成Cu〜(+)晶种,然后将Sn〜(2+)氧化为Sn〜(4+)。十二烷硫醇是硫的另一来源。整个反应会导致形成纯Cu _(2)SnS _(3)或Cu _(4)SnS _(4)相,取决于反应条件,带隙能为1.05-1.45 eV,在光伏应用的最佳范围内。

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