配体(生物化学)
化学
量子点
光伏
曲面(拓扑)
纳米技术
化学工程
材料科学
光伏系统
数学
电气工程
生物化学
几何学
工程类
受体
作者
Chao Wang,Yinglin Wang,Yuwen Jia,Hai Wang,Xiaofei Li,Shuai Liu,Xinlu Liu,Hongbo Zhu,Wei Wang,Yichun Liu,Shouxin Zhang
标识
DOI:10.1002/advs.202204655
摘要
The surface ligand environment plays a dominant role in determining the physicochemical, optical, and electronic properties of colloidal quantum dots (CQDs). Specifically, the ligand-related electronic traps are the main reason for the carrier nonradiative recombination and the energetic losses in colloidal quantum dot solar cells (CQDSCs), which are usually solved with numerous advanced ligand exchange reactions. However, the synthesis process, as the essential initial step to control the surface ligand environment of CQDs, has lagged behind these post-synthesis ligand exchange reactions. The current PbS CQDs synthesis tactic generally uses lead oxide (PbO) as lead precursor, and thus suffers from the water byproducts issue increasing the surface-hydroxyl ligands and aggravating trap-induced recombination in the PbS CQDSCs. Herein, an organic-Pb precursor, lead (II) acetylacetonate (Pb(acac)
科研通智能强力驱动
Strongly Powered by AbleSci AI