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weidong xu
  邮箱   ifewdxu@nwpu.edu.cn 
TA的实验室:   perovskite@XuLab
论文

Mixed halide perovskites for spectrally stable and high-efficiency blue light-emitting diodes

AbstractBright and efficient blue emission is key to further development of metal halide perovskite light-emitting diodes. Although modifying bromide/chloride composition is straightforward to achieve blue emission, practical implementation of this strategy has been challenging due to poor colour stability and severe photoluminescence quenching. Both detrimental effects become increasingly prominent in perovskites with the high chloride content needed to produce blue emission. Here, we solve these critical challenges in mixed halide perovskites and demonstrate spectrally stable blue perovskite light-emitting diodes over a wide range of emission wavelengths from 490 to 451 nanometres. The emission colour is directly tuned by modifying the halide composition. Particularly, our blue and deep-blue light-emitting diodes based on three-dimensional perovskites show high EQE values of 11.0% and 5.5% with emission peaks at 477 and 467 nm, respectively. These achievements are enabled by a vapour-assisted crystallization technique, which largely mitigates local compositional heterogeneity and ion migration.

期刊: Nature Communications  2021
作者: Max Karlsson,Ziyue Yi,Sebastian Reichert,Xiyu Luo,Weihua Lin,Zeyu Zhang,Chunxiong Bao,Rui Zhang,Sai Bai,Guanhaojie Zheng,Pengpeng Teng,Lian Duan,Yue Lu,Kaibo Zheng,Tönu Pullerits,Carsten Deibel,Weidong Xu,Richard Friend,Feng Gao
DOI:10.1038/s41467-020-20582-6

Manipulating crystallization dynamics through chelating molecules for bright perovskite emitters

AbstractMolecular additives are widely utilized to minimize non-radiative recombination in metal halide perovskite emitters due to their passivation effects from chemical bonds with ionic defects. However, a general and puzzling observation that can hardly be rationalized by passivation alone is that most of the molecular additives enabling high-efficiency perovskite light-emitting diodes (PeLEDs) are chelating (multidentate) molecules, while their respective monodentate counterparts receive limited attention. Here, we reveal the largely ignored yet critical role of the chelate effect on governing crystallization dynamics of perovskite emitters and mitigating trap-mediated non-radiative losses. Specifically, we discover that the chelate effect enhances lead-additive coordination affinity, enabling the formation of thermodynamically stable intermediate phases and inhibiting halide coordination-driven perovskite nucleation. The retarded perovskite nucleation and crystal growth are key to high crystal quality and thus efficient electroluminescence. Our work elucidates the full effects of molecular additives on PeLEDs by uncovering the chelate effect as an important feature within perovskite crystallization. As such, we open new prospects for the rationalized screening of highly effective molecular additives.

期刊: Nature Communications  2021
作者: Yatao Zou,Pengpeng Teng,Weidong Xu,Guanhaojie Zheng,Weihua Lin,Jun Yin,Libor Kobera,Sabina Abbrent,Xiangchun Li,Julian A. Steele,Eduardo Solano,Maarten B. J. Roeffaers,Jun Li,Lei Cai,Chaoyang Kuang,Ivan G. Scheblykin,Jiri Brus,Kaibo Zheng,Ying Yang,Omar F. Mohammed,Osman M. Bakr,Tönu Pullerits,Sai Bai,Baoquan Sun,Feng Gao
DOI:10.1038/s41467-021-25092-7

Metal halide perovskites for light-emitting diodes

期刊: NATURE MATERIALS  2021
作者: Xiao-Ke Liu,Weidong Xu,Sai Bai,Yizheng Jin,Jianpu Wang
DOI:10.1038/s41563-020-0784-7

Bidirectional optical signal transmission between two identical devices using perovskite diodes

期刊: Nature Electronics  2020
作者: Chunxiong Bao,Weidong Xu,Jie Yang,Sai Bai,Pengpeng Teng,Ying Yang,Jianpu Wang,Ni Zhao,Wenjing Zhang,Wei Huang,Feng Gao
DOI:10.1038/s41928-020-0382-3

Rational molecular passivation for high-performance perovskite light-emitting diodes

期刊: Journal of Semiconductors  2019
作者: ...
DOI:10.1088/1674-4926/40/4/040203

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