Near-Unity Photoluminescence Quantum Yield of Core-Only InP Quantum Dots via a Simple Postsynthetic InF3 Treatment

被引:20
作者
Stam, Maarten [1 ]
Almeida, Guilherme [1 ]
Ubbink, Reinout F. [1 ]
van der Poll, Lara M. [1 ]
Vogel, Yan B. [1 ]
Chen, Hua [1 ]
Giordano, Luca [2 ]
Schiettecatte, Pieter [2 ]
Hens, Zeger [2 ]
Houtepen, Arjan J. [1 ]
机构
[1] Delft Univ Technol, Fac Appl Sci, Optoelect Mat Sect, NL-2629 HZ Delft, Netherlands
[2] Univ Ghent, Dept Chem, Phys & Chem Nanostruct, B-9000 Ghent, Belgium
基金
荷兰研究理事会;
关键词
quantum dots; InP; near-unity quantum yield; photoluminescence; phosphors; HIGHLY EFFICIENT; OPTICAL GAIN; SURFACE-DEFECTS; EMISSION; NANOCRYSTALS; LIFETIMES; SINGLE;
D O I
10.1021/acsnano.4c03290
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Indium phosphide (InP) quantum dots (QDs) are considered the most promising alternative for Cd and Pb-based QDs for lighting and display applications. However, while core-only QDs of CdSe and CdTe have been prepared with near-unity photoluminescence quantum yield (PLQY), this is not yet achieved for InP QDs. Treatments with HF have been used to boost the PLQY of InP core-only QDs up to 85%. However, HF etches the QDs, causing loss of material and broadening of the optical features. Here, we present a simple postsynthesis HF-free treatment that is based on passivating the surface of the InP QDs with InF3. For optimized conditions, this results in a PLQY as high as 93% and nearly monoexponential photoluminescence decay. Etching of the particle surface is entirely avoided if the treatment is performed under stringent acid-free conditions. We show that this treatment is applicable to InP QDs with various sizes and InP QDs obtained via different synthesis routes. The optical properties of the resulting core-only InP QDs are on par with InP/ZnSe/ZnS core-shell QDs, with significantly higher absorption coefficients in the blue, and with potential for faster charge transport. These are important advantages when considering InP QDs for use in micro-LEDs or photodetectors.
引用
收藏
页码:14685 / 14695
页数:11
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