光致发光
量子点
青色
材料科学
量子效率
光谱学
光电子学
发光
光学
物理
量子力学
作者
Hannes Van Avermaet,Pieter Schiettecatte,S.W.A. Hinz,Luca Giordano,Fabio Ferrari,Céline Nayral,Fabien Delpech,Janina Maultzsch,Holger Lange,Zeger Hens
出处
期刊:ACS Nano
[American Chemical Society]
日期:2022-06-16
卷期号:16 (6): 9701-9712
被引量:65
标识
DOI:10.1021/acsnano.2c03138
摘要
Photoluminescent color conversion by quantum dots (QDs) makes possible the formation of spectrum-on-demand light sources by combining blue LEDs with the light generated by a specific blend of QDs. Such applications, however, require a near-unity photoluminescence quantum efficiency since self-absorption magnifies disproportionally the impact of photon losses on the overall conversion efficiency. Here, we present a synthesis protocol for forming InP-based QDs with +90% quantum efficiency across the full visible spectrum from blue/cyan to red. The central features of our approach are as follows: (1) the formation of InP core QDs through one-batch-one-size reactions based on aminophosphine as the phosphorus precursor, (2) the introduction of a core/shell/shell InP/Zn(Se,S)/ZnS structure, and (3) the use of specific interfacial treatments, most notably the saturation of the ZnSe surface with zinc acetate prior to ZnS shell growth. Moreover, we adapted the composition of the Zn(Se,S) inner shell to attain the intended emission color while minimizing line broadening induced by the InP/ZnS lattice mismatch. The protocol is established by analysis of the QD composition and structure using multiple techniques, including solid-state nuclear magnetic resonance spectroscopy and Raman spectroscopy, and verified for reproducibility by having different researchers execute the same protocol. The realization of full-spectrum, +90% quantum efficiency will strongly facilitate research into light–matter interaction in general and luminescent color conversion in particular through InP-based QDs.
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