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首页> 外文期刊>Nanoscale >Highly concentrated synthesis of copper-zinc-tin-sulfide nanocrystals with easily decomposable capping molecules for printed photovoltaic applications
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Highly concentrated synthesis of copper-zinc-tin-sulfide nanocrystals with easily decomposable capping molecules for printed photovoltaic applications

机译:高度集中的合成copper-zinc-tin-sulfide纳米晶体与轻松可分解的限制分子打印出来光伏应用

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摘要

Among various candidate materials, Cu2ZnSnS4 (CZTS) is a promising earth-abundant semiconductor for low-cost thin film solar cells. We report a facile, less toxic, highly concentrated synthetic method utilizing the heretofore unrecognized, easily decomposable capping ligand of triphenylphosphate, where phase-pure, single-crystalline, and well-dispersed colloidal CZTS nanocrystals were obtained. The favorable influence of the easily decomposable capping ligand on the microstructural evolution of device-quality CZTS absorber layers was clarified based on a comparative study with commonly used oleyl-amine-capped CZTS nanoparticles. The resulting CZTS nanoparticles enabled us to produce a dense and crack-free absorbing layer through annealing under a N2 + H2S (4%) atmosphere, demonstrating a solar cell with an efficiency of 3.6% under AM 1.5 illumination.
机译:在各种候选人材料,Cu2ZnSnS4(CZTS)是一个有前途的地球上充足半导体为低成本薄膜太阳能电池。我们报告一个肤浅,更少的有毒,高度利用集中的合成方法到目前为止无法识别,容易可分解的triphenylphosphate限制配体,phase-pure、单个水晶的说法胶体CZTS纳米晶体获得的。可分解的限制上的配体微观结构演化的器件质量CZTS吸收层是基于一个澄清与常用的比较研究oleyl-amine-capped CZTS纳米颗粒。CZTS纳米粒子使我们产生一个密集的和无吸收层通过退火在N2 +硫化氢(4%)氛围,展示一个太阳能电池在是1.5照明效率3.6%。

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