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首页> 外文期刊>Nanoscale >Size-selected and surface-passivated CsPbBr3 perovskite nanocrystals for self-enhanced electrochemiluminescence in aqueous media
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Size-selected and surface-passivated CsPbBr3 perovskite nanocrystals for self-enhanced electrochemiluminescence in aqueous media

机译:Size-selected和表面钝化CsPbBr3钙钛矿为self-enhanced纳米晶体电化学发光水媒体

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In this work, CsPbBr3 perovskite nanocrystals (NCs) synthesized via a ligand-assisted reprecipitation method (LCPB) were discovered to emit self-enhanced electrochemiluminescence (ECL) with the surface oleylamine as both a coreactant and a stabilizer. Solvent regulation and tri-n-octylphosphine post-treatment were manipulated for size-selected and surface-passivated LCPBs, which showed remarkable aqueous ECL performance with respect to efficiency and stability. Furthermore, thanks to the self-enhancement mode with a shorter charge transfer pathway and less energy loss, the ECL efficiency obtained for these as-synthesized LCPBs in aqueous solution without any additional coreactant was up to 57.08% using the Ru(bpy)(3)(2+)-tripropylamine system as the standard. As a proof-of-concept, the products were successfully employed for the bioanalyses of hydrogen peroxide, ascorbic acid, and cancer cells based on inhibition, coreaction, and impedance detection principles, respectively. More importantly, the basic properties of LCPBs in aqueous media including surface chemistry, charge transfer process, and ECL mechanism were studied systematically. Such efforts are aimed at perfecting the fundamental research of all-inorganic perovskite NCs and opening an avenue for the design of highly crystalline and luminescent perovskites as advanced ECL emitters for applications in the ECL domain.
机译:在这个工作中,CsPbBr3钙钛矿纳米晶体通过ligand-assisted (nc)合成再沉淀方法(LCPB)被发现发出self-enhanced电化学发光(ECL)与表面油酰胺coreactant和稳定剂。tri-n-octylphosphine后处理是操纵size-selected和表面钝化LCPBs,表现出非凡的水对ECL性能效率和稳定性。短的自我提高模式转移途径,减少能量损失,发射极耦合逻辑为这些as-synthesized效率获得没有任何附加LCPBs在水溶液coreactant使用多达57.08%俄文(bpy) (3) (2 +) -tripropylamine系统标准。被成功用于bioanalyses的过氧化氢、抗坏血酸和癌症基于抑制细胞,coreaction,阻抗检测原则,分别。更重要的是,LCPBs的基本性质在水媒体包括表面化学,电荷转移过程,发射极耦合逻辑机制系统地研究了。完善的基础研究all-inorganic钙钛矿nc和开放大道的高度结晶和设计发光钙钛矿作为先进的ECL发射器发射极耦合逻辑的应用程序域。

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