钙钛矿(结构)
发光
材料科学
手性(物理)
光致发光
溶剂
量子点
结晶学
化学工程
复合材料
纳米技术
光电子学
化学
有机化学
手征对称性
物理
工程类
量子力学
Nambu–Jona Lasinio模型
夸克
作者
Hongmei Zhu,Qingqian Wang,Wei Chen,Kun Sun,Huaying Zhong,Taikang Ye,Zhaojin Wang,Wenda Zhang,Peter Müller‐Buschbaum,Xiao Wei Sun,Dan Wu,Kai Wang
摘要
Chiral perovskite materials are being extensively studied as one of the most promising candidates for circularly polarized luminescence (CPL)-related applications. Balancing chirality and photoluminescence (PL) properties is of great importance for enhancing the value of the dissymmetry factor (glum), and a higher glum value indicates better CPL. Chiral perovskite/quantum dot (QD) composites emerge as an effective strategy for overcoming the dilemma that achieving strong chirality and PL in chiral perovskite while at the same time achieving high glum in this composite is very crucial. Here, we choose diphenyl sulfoxide (DPSO) as an additive in the precursor solution of chiral perovskite to regulate the lattice distortion. How structural variation affects the chiral optoelectronic properties of the chiral perovskite has been further investigated. We find that chiral perovskite/CdSe–ZnS QD composites with strong CPL have been achieved, and the calculated maximum |glum| of the composites increased over one order of magnitude after solvent-additive modulation (1.55 × 10−3 for R-DMF/QDs, 1.58 × 10−2 for R-NMP-DPSO/QDs, −2.63 × 10−3 for S-DMF/QDs, and −2.65 × 10−2 for S-NMP-DPSO/QDs), even at room temperature. Our findings suggest that solvent-additive modulation can effectively regulate the lattice distortion of chiral perovskite, enhancing the value of glum for chiral perovskite/CdSe–ZnS QD composites.
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