Back to Search Start Over

Multicolor light emission and multifunctional applications in double perovskite-Cs 2 NaInCl 6 by Cu + /Sb 3+co-doping

Authors :
Cai, Weidong
Qin, Jiajun
Ma, Xinyu
Wang, Shun
Zhang, Muyi
Liu, Tianjun
Pang, Tiqiang
Morat, Julia
Shang, Yuequn
Ji, Fuxiang
Yue, Shengying
Gao, Feng
Cai, Weidong
Qin, Jiajun
Ma, Xinyu
Wang, Shun
Zhang, Muyi
Liu, Tianjun
Pang, Tiqiang
Morat, Julia
Shang, Yuequn
Ji, Fuxiang
Yue, Shengying
Gao, Feng
Publication Year :
2024

Abstract

Halide double perovskites managed by metal doping approach can exhibit dual emission colors, which have been considered as promising multicolor luminescent materials. However, an independent and stable emission at yellow region is missing owing to limited doping candidates, hindering the further commercialization of multicolor luminescence applications in double perovskites. In this work, we successfully obtain stable multicolor emission with PLQE (photoluminescence quantum yield) as high as 78% through developing the CuI doping strategy in Sb-Cs2NaInCl6. By introducing a high CuI feed ratio in airtight autoclave to compete the oxidization effect, the oxidization of CuI into CuII (detrimental factor for high PLQE due to serious quenching effect) is largely suppressed. With changing the CuI feed ratio, at least four distinct emission colors ranging from blue, purple, pink to yellow can be realized via changing the excitation wavelength. Depending on tunable multicolor emission, we further demonstrate the promise of our co-doped double perovskites in anti-counterfeiting technology and multicolor lighting devices. Our results open the way for enriching the optical applications of double perovskites based on multicolor emission.<br />Funding Agencies|Knut and Alice Wallenberg Foundation [KAW 2019.0082]; Swedish Government Strategic Research Area in Materials Science on Functional Materials at Linkoping University [2009-00971]; China Scholarship Council (CSC)

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1442971699
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1016.j.cej.2024.151212