Coordination-Constraint-Driven Enhanced Chirality Induction in Perovskite Quantum Dot Solids
Cong Geng, Ruiyang Yin, Wenda Sun, Linyue Gao, Zijin Ding, Xue Han, Keyu Wei, Changjiu Sun 等 16 位
Nankai University Advanced Energy Materials (United States) Peking University Tianjin University of Technology
内容与影响
Perovskite quantum dots (PQDs) are promising chiroptical materials owing to their soft ionic lattice and strong surface-lattice coupling. However, achieving efficient chirality induction in solid-state chiral PQD (CPQD) thin films remains a fundamental challenge. Here, we establish sterically constrained surface coordination as a strategy to promote chirality induction and lattice asymmetry in PQD solids. Using a synthesis-on-substrate approach, CsPbBr 3 CPQD thin films with exclusive chiral ligand coverage are directly constructed, enabling well-defined ligand-surface interactions. Density functional theory calculations indicate that ligand coordination geometry, rather than ligand density, governs the strength of asymmetric interaction at the PQD surface. As a result, the CPQD films exhibit photoluminescence dissymmetry factors exceeding 10 –2 across the tunable range of 468–515 nm, reaching 3.47 × 10 –2 at 510 nm, and combine pronounced chirality-induced spin selectivity with high electrical conductivity. Spin light-emitting diodes based on the CPQD films achieve an electroluminescence dissymmetry factor of 0.15 and an external quantum efficiency of 17.9%. Our results highlight the role of coordination environment in chirality transfer and underscore the potential of CPQDs for spin-optoelectronic applications.
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工程Perovskite Materials and Applications
Quantum Dots Synthesis And Properties · Ammonia Synthesis and Nitrogen Reduction
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