纳米晶
材料科学
纳米技术
光电子学
光电探测器
能量转换效率
碘化物
化学
无机化学
作者
Yongjie Wang,Zeke Liu,Nengjie Huo,Fēi Li,Mingxia Gu,Xufeng Ling,Yannan Zhang,Kunyuan Lu,Lu Han,Hong‐Hua Fang,Artem G. Shulga,Xue Yang,Shaoxia Zhou,Fan Yang,Xun Tang,Jiawei Zheng,Maria Antonietta Loi,Gerasimos Konstantatos,Wanli Ma
标识
DOI:10.1038/s41467-019-13158-6
摘要
Abstract Lead sulphide (PbS) nanocrystals (NCs) are promising materials for low-cost, high-performance optoelectronic devices. So far, PbS NCs have to be first synthesized with long-alkyl chain organic surface ligands and then be ligand-exchanged with shorter ligands (two-steps) to enable charge transport. However, the initial synthesis of insulated PbS NCs show no necessity and the ligand-exchange process is tedious and extravagant. Herein, we have developed a direct one-step, scalable synthetic method for iodide capped PbS (PbS-I) NC inks. The estimated cost for PbS-I NC inks is decreased to less than 6 $·g −1 , compared with 16 $·g −1 for conventional methods. Furthermore, based on these PbS-I NCs, photodetector devices show a high detectivity of 1.4 × 10 11 Jones and solar cells show an air-stable power conversion efficiency (PCE) up to 10%. This scalable and low-cost direct preparation of high-quality PbS-I NC inks may pave a path for the future commercialization of NC based optoelectronics.
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