化学
胶体
配体(生物化学)
分散性
纳米晶
粒子(生态学)
粒径
化学稳定性
量子产额
化学工程
纳米技术
有机化学
物理化学
荧光
材料科学
工程类
受体
地质学
物理
海洋学
量子力学
生物化学
作者
Franziska Krieg,Quy K. Ong,Max Burian,Gabriele Rainò,Denys Naumenko,Heinz Amenitsch,A. Suess,Matthias J. Grotevent,Frank Krumeich,Maryna I. Bodnarchuk,Ivan Shorubalko,Francesco Stellacci,Maksym V. Kovalenko
摘要
Attaining thermodynamic stability of colloids in a broad range of concentrations has long been a major thrust in the field of colloidal ligand-capped semiconductor nanocrystals (NCs). This challenge is particularly pressing for the novel NCs of cesium lead halide perovskites (CsPbX3; X = Cl, Br) owing to their highly dynamic and labile surfaces. Herein, we demonstrate that soy lecithin, a mass-produced natural phospholipid, serves as a tightly binding surface-capping ligand suited for a high-reaction yield synthesis of CsPbX3 NCs (6-10 nm) and allowing for long-term retention of the colloidal and structural integrity of CsPbX3 NCs in a broad range of concentrations-from a few ng/mL to >400 mg/mL (inorganic core mass). The high colloidal stability achieved with this long-chain zwitterionic ligand can be rationalized with the Alexander-De Gennes model that considers the increased particle-particle repulsion due to branched chains and ligand polydispersity. The versatility and immense practical utility of such colloids is showcased by the single NC spectroscopy on ultradilute samples and, conversely, by obtaining micrometer-thick, optically homogeneous dense NC films in a single spin-coating step from ultraconcentrated colloids.
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