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揭示量子点高效且稳定的电化学发光机制

Unraveling Mechanisms of Highly Efficient Yet Stable Electrochemiluminescence from Quantum Dots.

作者信息

Cao Zhiyuan, Li Chuyue, Shu Yufei, Zhu Meiyi, Su Bin, Qin Haiyan, Peng Xiaogang

机构信息

Key Laboratory of Excited-State Materials of Zhejiang Province and Department of Chemistry, Zhejiang University, Hangzhou 310027, China.

出版信息

J Am Chem Soc. 2023 Dec 6;145(48):26425-26434. doi: 10.1021/jacs.3c10556. Epub 2023 Nov 17.

Abstract

With CdSe/CdS/ZnS core/shell/shell quantum dots (QDs) as the model system, time- and potential-resolved spectroelectrochemical measurements are successfully applied for studying the general mechanisms and kinetics of electrochemiluminescence (ECL) generation. The rate constant of electron injection from the cathode into a QD to form a negatively charged QD (QD) increases monotonically from -0.88 V to -1.2 V (vs Ag/AgCl). Mainly due to the deep LUMO of the QDs, the resulting QD as the key intermediate for ECL generation is structurally stable and possesses very slow spontaneous deionization channels. The latter (the main non-ECL channels) are usually 3-4 orders of magnitude slower than the rate constant of the successive hole injection from an active co-reactant into a QD. The kinetic studies quantify the internal ECL quantum yield of ideal QD ECL emitters to be nearly identical to that of photoluminescence, which is near unity for the current system. Identification of the key intermediate, discovery of the related elementary steps, and determination of all rate constants not only establish a general framework for understanding ECL generation but also offer basic design rules for ECL emitters.

摘要

以CdSe/CdS/ZnS核/壳/壳量子点(QDs)为模型体系,成功地将时间分辨和电位分辨光谱电化学测量应用于研究电化学发光(ECL)产生的一般机制和动力学。从阴极向量子点注入电子以形成带负电荷的量子点(QD)的速率常数从-0.88 V单调增加到-1.2 V(相对于Ag/AgCl)。主要由于量子点的深最低未占分子轨道(LUMO),作为ECL产生关键中间体的所得量子点在结构上是稳定的,并且具有非常缓慢的自发去离子化通道。后者(主要的非ECL通道)通常比活性共反应物向量子点连续注入空穴的速率常数慢3-4个数量级。动力学研究将理想量子点ECL发射体的内部ECL量子产率量化为与光致发光几乎相同,对于当前体系接近1。关键中间体的鉴定、相关基本步骤的发现以及所有速率常数的测定不仅为理解ECL产生建立了一个通用框架,而且为ECL发射体提供了基本设计规则。

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