TY - JOUR
T1 - Ultra Broad-Band Excitable Organic–Inorganic Copper(I) Halides
T2 - Large-Scale Synthesis, Outstanding Stability, and Highly Efficient White Light-Emitting Diodes Application
AU - Xie, Lingling
AU - Liu, Zheng
AU - Yang, Henan
AU - Chen, Kunlin
AU - Lv, Ning
AU - Pi, Huihui
AU - Chen, Xiyao
AU - Li, Xitao
AU - Liu, Zhe
AU - Li, Siyi
AU - Wang, Zhenguang
AU - Wang, Yongtian
AU - Chen, Bingkun
N1 - Publisher Copyright:
© 2024 Wiley-VCH GmbH.
PY - 2024/9/23
Y1 - 2024/9/23
N2 - Organic–inorganic copper(I) halides (OICHs) have recently attracted great attentions for their unique optoelectronic properties. However, most of them have poor stability and narrow excitation in UV region, which seriously hinder their applications in efficient white light-emitting diodes (WLEDs). Herein, 0D (C19H18P)2Cu4I6 with super broad-band excitation (300–500 nm) and yellow emission with the absolute photoluminescence quantum yield of 87.4% is synthesized in a quantity of gram scale. Specifically, (C19H18P)2Cu4I6 possesses exceptional thermal-, photo-, air-stability, and can maintain efficient emission even if soaked in water, ethyl acetate, and isopropanol over 30 days. WLEDs with remarkable color stability under various driven currents are fabricated using 450, 400, 365, and 310 nm LED chips. The ideal WLEDs based on single (C19H18P)2Cu4I6 by 450 nm LED chip presents high color rendering index of 86.7, and outstanding luminous efficiency of 90 lm W−1. To the best of the knowledge, this is the highest value that is achieved based on single-component OICHs using blue light chip. This work not only promotes the prospect of OICHs in WLEDs but also significantly broadens their application in special lighting fields, such as underwater illumination.
AB - Organic–inorganic copper(I) halides (OICHs) have recently attracted great attentions for their unique optoelectronic properties. However, most of them have poor stability and narrow excitation in UV region, which seriously hinder their applications in efficient white light-emitting diodes (WLEDs). Herein, 0D (C19H18P)2Cu4I6 with super broad-band excitation (300–500 nm) and yellow emission with the absolute photoluminescence quantum yield of 87.4% is synthesized in a quantity of gram scale. Specifically, (C19H18P)2Cu4I6 possesses exceptional thermal-, photo-, air-stability, and can maintain efficient emission even if soaked in water, ethyl acetate, and isopropanol over 30 days. WLEDs with remarkable color stability under various driven currents are fabricated using 450, 400, 365, and 310 nm LED chips. The ideal WLEDs based on single (C19H18P)2Cu4I6 by 450 nm LED chip presents high color rendering index of 86.7, and outstanding luminous efficiency of 90 lm W−1. To the best of the knowledge, this is the highest value that is achieved based on single-component OICHs using blue light chip. This work not only promotes the prospect of OICHs in WLEDs but also significantly broadens their application in special lighting fields, such as underwater illumination.
KW - organic–inorganic copper(I) halides
KW - outstanding stability
KW - ultra broad-band excitable
KW - white light-emitting diodes
UR - http://www.scopus.com/inward/record.url?scp=85196730507&partnerID=8YFLogxK
U2 - 10.1002/adom.202401050
DO - 10.1002/adom.202401050
M3 - Article
AN - SCOPUS:85196730507
SN - 2195-1071
VL - 12
JO - Advanced Optical Materials
JF - Advanced Optical Materials
IS - 27
M1 - 2401050
ER -