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室温下将反应中间体转化为水相 ZnSe 魔法尺寸团簇和量子点

Manipulating Reaction Intermediates to Aqueous-Phase ZnSe Magic-Size Clusters and Quantum Dots at Room Temperature.

作者信息

Li Yang, Zhang Meng, He Li, Rowell Nelson, Kreouzis Theo, Zhang Chunchun, Wang Shanling, Luan Chaoran, Chen Xiaoqin, Zhang Sijie, Yu Kui

机构信息

National Engineering Research Center in Biomaterials, College of Biomedical Engineering, Sichuan University, Chengdu, Sichuan, 610065, P. R. China.

Institute of Atomic and Molecular Physics, Sichuan University, Chengdu, 610065, P. R. China.

出版信息

Angew Chem Int Ed Engl. 2022 Sep 26;61(39):e202209615. doi: 10.1002/anie.202209615. Epub 2022 Aug 19.

Abstract

It is not resolved which model describes better the aqueous-phase nucleation and growth of semiconductor quantum dots (QDs), the classical one-step one or the nonclassical multi-step one. Here, we design a room-temperature reaction to trap reaction intermediates in the prenucleation stage of ZnSe QDs (as a model system). We show that the trapped intermediate can transform to magic-size clusters (MSCs) via intra-molecular reorganization and can fragment to enable the growth of QDs. The MSCs exhibit a sharp optical absorption peaking at 299 nm, labelled MSC-299. The intermediate, the precursor compound (PC-299) of MSC-299, is optically transparent at 299 nm and to longer wavelengths. This intermediate forms in various Zn and Se reaction systems. The present study provides unambiguous evidence that the nonclassical and classical pathways are both necessary to explain the nucleation and growth of aqueous-phase QDs, with the former pathway favored more by high reaction concentrations.

摘要

目前尚未确定哪种模型能更好地描述半导体量子点(QDs)在水相中的成核和生长过程,是经典的一步模型还是非经典的多步模型。在此,我们设计了一个室温反应,以捕获ZnSe量子点(作为一个模型系统)成核前阶段的反应中间体。我们表明,捕获的中间体可通过分子内重组转化为魔法尺寸团簇(MSCs),并可碎裂以促进量子点的生长。这些MSCs在299 nm处呈现出尖锐的光吸收峰,标记为MSC - 299。中间体,即MSC - 299的前体化合物(PC - 299),在299 nm及更长波长处是光学透明的。这种中间体在各种锌和硒反应体系中形成。本研究提供了明确的证据,表明非经典和经典途径对于解释水相量子点的成核和生长都是必要的,其中前者途径在高反应浓度下更受青睐。

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