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High efficiency Cu2ZnSnS4 nanocrystal ink solar cells through improved nanoparticle synthesis and selenization

机译:通过改进的纳米粒子合成和硒化,高效Cu2ZNS4纳米晶墨水太阳能电池

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In this work we present the improved efficiency of nanocrystal ink based Cu2ZnSn(S, Se)4 (CZTSSe) solar cells to 9.15%. CZTSSe devices prepared from nanocrystal inks are known for the presence of an unintended amorphous/fine-grained layer (unsintered layer) near the back contact. We demonstrate the ability to reduce the proportion of the unsintered layer in the final film through improved nanocrystal synthesis techniques and tailored thermal annealing in selenium atmosphere (selenization). Interestingly, our selenization process has not led to similar device performance in films prepared from particles using other recipes from the literature.
机译:在这项工作中,我们介绍了基于纳米晶油墨的Cu2Znsn(SE,SE)4(CZTSSE)太阳能电池至9.15%的提高效率。从纳米晶体墨水制备的CZTSSE器件是已知在背面接触附近的非预期的非晶/细粒层(未烧结层)的情况下已知的。我们证明了通过改进的纳米晶合成技术和硒气氛中的定制热退火(硒化)来减少最终膜中未烧结层的比例的能力。有趣的是,我们的硒化过程并未导致使用来自文献的其他食谱从粒子制备的薄膜中的类似装置性能。

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