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Thermal decomposition of Zn(C6H5)2PSSe2 single-source precursor for the chemical vapour deposition of binary and ternary zinc chalcogenides: a theoretical study

机译:Zn (C6H5)2PSSe 2单源前驱体的热分解用于二元和三元硫属元素化物的化学气相沉积:理论研究

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摘要

The mechanistic pathways for the formation of zinc selenide, zinc sulphide and ternary zinc selenide sulphide in the gas phase decomposition of Zn[(C6H5)2PSSe]2 single-source precursor has been explored on the singlet and doublet potential energy surfaces using density functional theory method in order to understand the thermodynamic and kinetic properties. The optimized geometries and the predicted energies were obtained using the M06 functional and a combination of the basis sets LACVP* for Zn and 6-31(d) for light atoms. The rate constants of each elementary reaction have been calculated using the transition state theory. The results indicate that the steps that lead to ternary ZnSexS1−x formation on both the singlet and doublet potential energy surfaces is favoured kinetically and thermodynamically over those that lead to ZnSe and ZnS formation. Density functional theory calculations of the gas phase decomposition of the complex indicate that the deposition of ternary ZnSexS1−x in chemical vapour deposition may involve more than one step but the steps that lead to its formation are consistent with a dominant role for both thermodynamic and kinetic factors. The theoretical study showed important insights as a general tool to anticipate the gas phase decomposition mechanism of a novel precursor when direct experimental measurements are not available.
机译:利用密度泛函理论,研究了单重态和双重态势能面上Zn [(C6H5)2PSSe] 2单源前驱体气相分解过程中形成硒化锌,硫化锌和三价硫化硒化锌的机理。为了了解热力学和动力学性质的方法。使用M06泛函和Zn的基元LACVP *和轻原子的6-31(d)的组合获得了优化的几何形状和预测的能量。每个元素反应的速率常数已使用过渡态理论进行了计算。结果表明,导致单线态和双线态势能表面上三元ZnSexS1-x形成的步骤在动力学和热力学上都比导致ZnSe和ZnS形成的步骤更受动力学和热力学的支持。配合物气相分解的密度泛函理论计算表明,化学气相沉积中三元ZnSexS1-x的沉积可能涉及多个步骤,但导致其形成的步骤与热力学和动力学的主导作用相一致。因素。该理论研究显示出重要的见解,可作为无法直接进行实验测量时预测新型前体气相分解机理的通用工具。

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