Merck
CN
  • Electrochemically-stable ligands bridge the photoluminescence-electroluminescence gap of quantum dots.

Electrochemically-stable ligands bridge the photoluminescence-electroluminescence gap of quantum dots.

Nature communications (2020-02-20)
Chaodan Pu, Xingliang Dai, Yufei Shu, Meiyi Zhu, Yunzhou Deng, Yizheng Jin, Xiaogang Peng
摘要

Colloidal quantum dots are promising emitters for quantum-dot-based light-emitting-diodes. Though quantum dots have been synthesized with efficient, stable, and high colour-purity photoluminescence, inheriting their superior luminescent properties in light-emitting-diodes remains challenging. This is commonly attributed to unbalanced charge injection and/or interfacial exciton quenching in the devices. Here, a general but previously overlooked degradation channel in light-emitting-diodes, i.e., operando electrochemical reactions of surface ligands with injected charge carriers, is identified. We develop a strategy of applying electrochemically-inert ligands to quantum dots with excellent luminescent properties to bridge their photoluminescence-electroluminescence gap. This material-design principle is general for boosting electroluminescence efficiency and lifetime of the light-emitting-diodes, resulting in record-long operational lifetimes for both red-emitting light-emitting-diodes (T95 > 3800 h at 1000 cd m-2) and blue-emitting light-emitting-diodes (T50 > 10,000 h at 100 cd m-2). Our study provides a critical guideline for the quantum dots to be used in optoelectronic and electronic devices.

材料
货号
品牌
产品描述

Sigma-Aldrich
油胺, technical grade, 70%
Sigma-Aldrich
油酸, technical grade, 90%
Sigma-Aldrich
1-十八烯, technical grade, 90%
Sigma-Aldrich
硫, powder, 99.98% trace metals basis
Sigma-Aldrich
三正辛基膦, 97%
Sigma-Aldrich
2-乙基己硫醇, 97%