Scalable Synthesis of High‐Quality Core/Shell Quantum Dots With Suppressed Blinking

Author:

Tao Chen‐Lei1,Ma Jinling2,Wei Changting3ORCID,Xu Dan1,Xie Zhuoyi1,Jiang Zhengfei1,Ge Feiyue1,Zhang Han4,Xie Mingcai2,Ye Zhiliang3,Cheng Fang4,Xu Bo3,Tian Yuxi2,Wu Xue‐Jun1ORCID

Affiliation:

1. State Key Laboratory of Coordination Chemistry School of Chemistry and Chemical Engineering Nanjing University Nanjing 210023 China

2. Key Laboratory of Mesoscopic Chemistry of MOE School of Chemistry and Chemical Engineering Nanjing University Nanjing 210023 China

3. MIIT Key Laboratory of Advanced Display Materials and Devices Institute of Optoelectronics & Nanomaterials School of Materials Science and Engineering Nanjing University of Science and Technology Nanjing 210094 China

4. State Key Laboratory for Organic Electronics and Information Displays, Jiangsu Key Laboratory for Biosensors Institute of Advanced Materials (IAM) Jiangsu National Synergetic Innovation Center for Advanced Materials (SICAM) Nanjing University of Posts and Telecommunications Nanjing 210023 China

Abstract

AbstractA facile and reproducible method for scalable synthesis of high‐quality core/shell quantum dots (QDs) is a prerequisite to facilitate their versatile applications. Herein, a seed‐mediated heat‐up approach is developed for the preparation of high‐quality core/shell QDs with variable shell composition and continuously tunable shell thickness by selection of conventional salts as the precursors. The method is very simple and highly reproducible and, therefore, can be easily scaled up to get gram‐level product. The as‐obtained CdSe/CdS and CdSe/ZnCdS core/shell QDs exhibit intriguing optical properties, that is a narrow photoluminescence (PL) emission peak and near‐unity PL quantum yield. Importantly, the CdSe/ZnCdS core/shell QDs with a size of 11.4 nm exhibit obviously suppressed blinking behavior, and the fraction of nonblinking QDs (defined by an on‐time fraction ≥ 0.95) can reach as high as 96.0% on the measurement of more than 200 QDs. Moreover, quantum‐dot light‐emitting diodes (QLEDs) based on CdSe/ZnCdS core/shell QDs show a peak external quantum efficiency of 14.8% and low efficiency roll‐off at luminance ranging from 1000 to 25 000 cd·m−2. It is anticipated that the presented work will pave a novel way for the large‐scale production of high‐quality QDs and further boost their applications in light‐emitting diodes, lasing, and biological imaging.

Funder

National Natural Science Foundation of China

Fundamental Research Funds for the Central Universities

State Key Laboratory of Analytical Chemistry for Life Science

Publisher

Wiley

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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