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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >A hybrid ink of binary copper sulfide nanoparticles and indium precursor solution for a dense CuInSe2 absorber thin film and its photovoltaic performance
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A hybrid ink of binary copper sulfide nanoparticles and indium precursor solution for a dense CuInSe2 absorber thin film and its photovoltaic performance

机译:致密CuInSe2吸收体薄膜的二元硫化铜纳米粒子与铟前驱体溶液的混合墨水及其光伏性能

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A newly developed hybrid ink of binary CuS nanoparticles and In precursor solution was prepared to form a CuInSe2 (CIS) thin film. Previously, we have shown a CIS thin film solar cell with 4.19% conversion efficiency using the hybrid ink of Cu_(2-x)Se nanoparticles and In precursor. Deposition using hybrid ink offers advantages including the provision of stress-relief and crack-deflection centers by pure material based nanoparticles and effective binding with the nanoparticles by precursor solutions without other organic binders. Here, we demonstrate volume expansion of a thin film for forming a well-grown absorber layer using CuS nanoparticles instead of Cu_(2-x)Se. Binary nanoparticles were synthesized by a low temperature colloidal process and a precursor solution was prepared by using a non-toxic chelating agent to disperse the In component stably. The band gap of the CIS thin film was 1.08 eV, as determined by external quantum efficiency (EQE) measurements, and the reproducible conversion efficiency of the fabricated device was 6.23%.
机译:制备了新开发的二元CuS纳米粒子和In前驱体溶液的混合墨水,以形成CuInSe2(CIS)薄膜。以前,我们已经展示了使用Cu_(2-x)Se纳米粒子和In前驱体的混合墨水的转换效率为4.19%的CIS薄膜太阳能电池。使用混合墨水进行沉积提供的优势包括:通过基于纯材料的纳米颗粒提供应力消除和裂纹偏转中心,以及通过前体溶液有效结合纳米颗粒而无需其他有机粘合剂。在这里,我们演示了使用CuS纳米粒子代替Cu_(2-x)Se形成用于形成良好吸收层的薄膜的体积膨胀。通过低温胶体工艺合成了二元纳米颗粒,并使用无毒螯合剂稳定地分散了In组分,制备了前体溶液。通过外部量子效率(EQE)测量确定,CIS薄膜的带隙为1.08 eV,所制造器件的可再现转换效率为6.23%。

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