量子点
钙钛矿(结构)
材料科学
钝化
纳米晶
量子产额
光电子学
胶体
光致发光
扩散
纳米技术
成核
配体(生物化学)
纳米颗粒
激子
发光
半导体
惰性
产量(工程)
兴奋剂
三极管
比克西顿
结晶
声子
硒化镉
光发射
灵活性(工程)
作者
Marina Cagnon-Trouche,Ernest Ruby,Margaux Cartier,Christophe Voisin,Maxime Vallet,Yannick Chassagneux,Cédric R. Mayer,Carole Diederichs
出处
期刊:Nano Letters
[American Chemical Society]
日期:2026-07-29
卷期号:26 (31): 10307-10313
标识
DOI:10.1021/acs.nanolett.6c02242
摘要
Colloidal perovskite quantum dots (pQDs) are promising quantum light emitters, yet single-pQD studies have so far relied mostly on hot-injection synthesis, which requires precise temperature control and an inert atmosphere. Demonstrating high optical quality at the single-emitter level is the most stringent benchmark for milder synthesis routes, which often yield structural and surface defects. Here, we show that a modified ligand-assisted reprecipitation (LARP) approach produces ∼10 nm CsPbBr3 pQDs with state-of-the-art single-emitter optical properties. Combining amine-mediated postsynthetic size-trimming with didodecyldimethylammonium bromide (DDAB) ligands for enhanced passivation and colloidal stability, we obtain isolated pQDs with stable emission and minimal spectral diffusion at cryogenic temperatures. Microphotoluminescence resolves the bright-exciton fine structure, its optical phonon replicas, and the trion and biexciton states, while time-resolved and photon-correlation measurements reveal a short emission lifetime and high-purity single-photon emission. Modified LARP thus offers an accessible, room-temperature alternative to hot injection, with added flexibility for postsynthetic ligand engineering.
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