李士娜, 马瑞新, 马春红, 黄凯, 牛建文, 朱鸿民. 基于Cu+-In3+-Se2--NH3-L2--Cl--H2O体系的常温全液相法制备CuInSe2粉体[J]. 工程科学学报, 2015, 37(8): 1036-1043. DOI: 10.13374/j.issn2095-9389.2015.08.010
引用本文: 李士娜, 马瑞新, 马春红, 黄凯, 牛建文, 朱鸿民. 基于Cu+-In3+-Se2--NH3-L2--Cl--H2O体系的常温全液相法制备CuInSe2粉体[J]. 工程科学学报, 2015, 37(8): 1036-1043. DOI: 10.13374/j.issn2095-9389.2015.08.010
LI Shi-na, MA Rui-xin, MA Chun-hong, HUANG Kai, NIU Jian-wen, ZHU Hong-min. Preparation of basic CuInSe2 nanoparticles in the solution system of Cu+-In3+-Se2--NH3-L2--Cl--H2O[J]. Chinese Journal of Engineering, 2015, 37(8): 1036-1043. DOI: 10.13374/j.issn2095-9389.2015.08.010
Citation: LI Shi-na, MA Rui-xin, MA Chun-hong, HUANG Kai, NIU Jian-wen, ZHU Hong-min. Preparation of basic CuInSe2 nanoparticles in the solution system of Cu+-In3+-Se2--NH3-L2--Cl--H2O[J]. Chinese Journal of Engineering, 2015, 37(8): 1036-1043. DOI: 10.13374/j.issn2095-9389.2015.08.010

基于Cu+-In3+-Se2--NH3-L2--Cl--H2O体系的常温全液相法制备CuInSe2粉体

Preparation of basic CuInSe2 nanoparticles in the solution system of Cu+-In3+-Se2--NH3-L2--Cl--H2O

  • 摘要: 采用同时平衡和质量守恒原理对全液相常温常压法制备CuInSe2(CIS)粉体过程中Cu+-In3+-Se2--NH3-L2--Cl--H2O体系的热力学平衡进行分析,并绘制一系列的浓度对数lgc-pH值曲线.依据平衡图,发现溶液中NH3T的变化主要影响溶液中Cu+T在体系中的浓度变化,L2-T的变化主要影响的是体系中In3+T的浓度变化,而Cl-T的变化对Cu+T和In3+T的浓度变化均有影响,并可发现在pH7.0~8.5时沉淀率最高.依据Cu+-In3+-Se2--NH3-L2--Cl--H2O体系的同时平衡和质量守恒原理,采用全液相常温常压法,在pH7.0~8.5条件下制备出粒径在20~50nm且基本符合标准化学计量比的CIS纳米粉体.

     

    Abstract: According to the principles of simultaneous equilibria and mass equilibria, CuInSe2 (CIS) were prepared by total aqueous process at normal pressure and room temperature. A series of thermodynamic equilibrium equations were deduced for the complex system of Cu+-In3+-Se2--NH3-L2--Cl--H2O (T=298 K), and the equilibrium curves of lgc-pH were drawn. It was found from these equilibrium diagrams thatNH3T primarily affected theCu+T concentration,L2-T influenced theIn3+T concentration, andCl-T had impact on both. The highest precipitation coefficient was obtained at pH 7.0-8.5. As a result, based on the principles of simultaneous equilibria and mass equilibria of the Cu+-In3+-Se2--NH3-L2--Cl--H2O system (T=298 K) and used total aqueous process at normal pressure and room temperature, CIS nanoparticles can be synthesized by adjusting the pH value to 7.0-8.5, and their size is about 20 to 50 nm.

     

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