Literature DB >> 30305742

Perovskite light-emitting diodes based on spontaneously formed submicrometre-scale structures.

Yu Cao1, Nana Wang1, He Tian2, Jingshu Guo3, Yingqiang Wei1, Hong Chen1, Yanfeng Miao1, Wei Zou1, Kang Pan1, Yarong He1, Hui Cao1, You Ke1, Mengmeng Xu1, Ying Wang1, Ming Yang1, Kai Du2, Zewu Fu1, Decheng Kong1, Daoxin Dai3, Yizheng Jin4, Gongqiang Li1, Hai Li1, Qiming Peng1, Jianpu Wang5, Wei Huang6,7,8.   

Abstract

Light-emitting diodes (LEDs), which convert electricity to light, are widely used in modern society-for example, in lighting, flat-panel displays, medical devices and many other situations. Generally, the efficiency of LEDs is limited by nonradiative recombination (whereby charge carriers recombine without releasing photons) and light trapping1-3. In planar LEDs, such as organic LEDs, around 70 to 80 per cent of the light generated from the emitters is trapped in the device4,5, leaving considerable opportunity for improvements in efficiency. Many methods, including the use of diffraction gratings, low-index grids and buckling patterns, have been used to extract the light trapped in LEDs6-9. However, these methods usually involve complicated fabrication processes and can distort the light-output spectrum and directionality6,7. Here we demonstrate efficient and high-brightness electroluminescence from solution-processed perovskites that spontaneously form submicrometre-scale structures, which can efficiently extract light from the device and retain wavelength- and viewing-angle-independent electroluminescence. These perovskites are formed simply by introducing amino-acid additives into the perovskite precursor solutions. Moreover, the additives can effectively passivate perovskite surface defects and reduce nonradiative recombination. Perovskite LEDs with a peak external quantum efficiency of 20.7 per cent (at a current density of 18 milliamperes per square centimetre) and an energy-conversion efficiency of 12 per cent (at a high current density of 100 milliamperes per square centimetre) can be achieved-values that approach those of the best-performing organic LEDs.

Entities:  

Year:  2018        PMID: 30305742     DOI: 10.1038/s41586-018-0576-2

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  98 in total

1.  Two-dimensional halide perovskite lateral epitaxial heterostructures.

Authors:  Enzheng Shi; Biao Yuan; Stephen B Shiring; Yao Gao; Yunfan Guo; Cong Su; Minliang Lai; Peidong Yang; Jing Kong; Brett M Savoie; Yi Yu; Letian Dou
Journal:  Nature       Date:  2020-04-29       Impact factor: 49.962

2.  Efficient perovskite solar cells via improved carrier management.

Authors:  Jason J Yoo; Gabkyung Seo; Matthew R Chua; Tae Gwan Park; Yongli Lu; Fabian Rotermund; Young-Ki Kim; Chan Su Moon; Nam Joong Jeon; Juan-Pablo Correa-Baena; Vladimir Bulović; Seong Sik Shin; Moungi G Bawendi; Jangwon Seo
Journal:  Nature       Date:  2021-02-24       Impact factor: 49.962

3.  Poly(catecholamine) coated CsPbBr3 perovskite microlasers: lasing in water and biofunctionalization.

Authors:  Sangyeon Cho; Seok Hyun Yun
Journal:  Adv Funct Mater       Date:  2021-04-25       Impact factor: 19.924

4.  Ultralow-voltage operation of light-emitting diodes.

Authors:  Yaxiao Lian; Dongchen Lan; Shiyu Xing; Bingbing Guo; Zhixiang Ren; Runchen Lai; Chen Zou; Baodan Zhao; Richard H Friend; Dawei Di
Journal:  Nat Commun       Date:  2022-07-04       Impact factor: 17.694

5.  Carbonized polymer dots enhanced stability and flexibility of quasi-2D perovskite photodetector.

Authors:  Mingrui Tan; Mingbian Li; Wanting Pan; Xiaopeng Feng; Yuhong He; Junjun Liu; Fengxia Dong; Haotong Wei; Bai Yang
Journal:  Light Sci Appl       Date:  2022-10-18       Impact factor: 20.257

6.  Cesium Lead Halide Perovskite Nanocrystals Assembled in Metal-Organic Frameworks for Stable Blue Light Emitting Diodes.

Authors:  Hsinhan Tsai; Hsin-Hsiang Huang; John Watt; Cheng-Hung Hou; Joseph Strzalka; Jing-Jong Shyue; Leeyih Wang; Wanyi Nie
Journal:  Adv Sci (Weinh)       Date:  2022-03-15       Impact factor: 17.521

7.  Single-emissive-layer all-perovskite white light-emitting diodes employing segregated mixed halide perovskite crystals.

Authors:  Hongling Yu; Heyong Wang; Galia Pozina; Chunyang Yin; Xiao-Ke Liu; Feng Gao
Journal:  Chem Sci       Date:  2020-09-25       Impact factor: 9.825

Review 8.  Non-toxic near-infrared light-emitting diodes.

Authors:  Kunping Guo; Marcello Righetto; Alessandro Minotto; Andrea Zampetti; Franco Cacialli
Journal:  iScience       Date:  2021-05-15

9.  Local Morphology Effects on the Photoluminescence Properties of Thin CsPbBr3 Nanocrystal Films.

Authors:  Marco Anni; Arianna Cretí; Maria Luisa De Giorgi; Mauro Lomascolo
Journal:  Nanomaterials (Basel)       Date:  2021-06-01       Impact factor: 5.076

10.  Color-Stable Blue Light-Emitting Diodes Enabled by Effective Passivation of Mixed Halide Perovskites.

Authors:  Hongling Yu; Heyong Wang; Tiankai Zhang; Chang Yi; Guanhaojie Zheng; Chunyang Yin; Max Karlsson; Jiajun Qin; Jianpu Wang; Xiao-Ke Liu; Feng Gao
Journal:  J Phys Chem Lett       Date:  2021-06-24       Impact factor: 6.475

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