Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104, United States.
ACS Nano. 2013 May 28;7(5):4307-15. doi: 10.1021/nn4008059. Epub 2013 May 8.
CuInSe2, which is one of the highest efficiency thin-film solar cell active layer materials, has been an attractive target for nanocrystal synthesis and manipulation. Here, we report unprecedented, simultaneous control of the synthesis and self-assembly behavior of CuInSe2 nanocrystals. These nanocrystals are solution-processable, monodisperse tetragonal bipyramids that exhibit photoconductivity and self-assemble into crystallographically oriented thin films. Structural characterization indicates that these nanocrystals are tetragonal phase, as is used in high-efficiency, second-generation, thin-film solar cells. Elemental analysis indicates that approximately 1:1:2 Cu/In/Se stoichiometry can be achieved, and that the elemental composition can be adjusted from copper-rich to indium-rich with reaction time.
CuInSe2 是最高效率的薄膜太阳能电池活性层材料之一,一直是纳米晶体合成和操控的一个有吸引力的目标。在这里,我们报告了对 CuInSe2 纳米晶体的前所未有的同时控制合成和自组装行为。这些纳米晶体是可溶液处理的、单分散的四方双锥,表现出光电导性,并自组装成结晶定向的薄膜。结构表征表明,这些纳米晶体为四方相,这是高效、第二代薄膜太阳能电池中所使用的相。元素分析表明,可以达到大约 1:1:2 的 Cu/In/Se 化学计量比,并且可以通过反应时间将元素组成从富铜调整到富铟。