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CMP
Credit: Jack Hobhouse

Xinyu Shen

PDRA

Sub department

  • Condensed Matter Physics

Research groups

  • Photovoltaic & Optoelectronic Device Group
xinyu.shen@physics.ox.ac.uk
Robert Hooke Building
  • About
  • Publications

Enhancing the Efficiency and Stability of CsPbI3 Nanocrystal-Based Light-Emitting Diodes through Ligand Engineering with Octylamine

The Journal of Physical Chemistry C American Chemical Society (ACS) 126:2 (2022) 1085-1093

Authors:

Hanming Li, Wei Dong, Xinyu Shen, Chengda Ge, Yilong Song, Zisheng Wang, Anran Wang, Ziqi Yang, Mingwei Hao, Yu Zhang, Weitao Zheng, Xiaoyu Zhang, Qingfeng Dong

A polymer/small-molecule binary-blend hole transport layer for enhancing charge balance in blue perovskite light emitting diodes

Journal of Materials Chemistry A Royal Society of Chemistry (RSC) 10:26 (2022) 13928-13935

Authors:

Zhongkai Yu, Woo Hyeon Jeong, Keehoon Kang, Hochan Song, Xinyu Shen, Hyungju Ahn, Seok Woo Lee, Xiangyang Fan, Ji Won Jang, Su Ryong Ha, Jeong Wan Min, Jong Hyun Park, Jongmin Han, Eui Dae Jung, Myoung Hoon Song, Dong Wook Chang, Won Bin Im, Sung Heum Park, Hyosung Choi, Bo Ram Lee

Abstract:

A polymer/small-molecule binary-blend hole transport layer provided balanced charge transport and efficient recombination of electrons and holes in the perovskite layer, and an optimal device based on the blended HTL shows the highest EQE of 5.30%.

Post-treatment of CsPbI3 nanocrystals by p-iodo-D-Phenylalanine for efficient perovskite LEDs

Materials Today Physics Elsevier BV 21 (2021) 100555

Authors:

Chengyuan Tang, Xinyu Shen, Siyao Yu, Yuan Zhong, Zhenyu Wang, Junhua Hu, Min Lu, Zhennan Wu, Yu Zhang, William W Yu, Xue Bai

Optimizing the Performance of Perovskite Nanocrystal LEDs Utilizing Cobalt Doping on a ZnO Electron Transport Layer.

The journal of physical chemistry letters 12:41 (2021) 10112-10119

Authors:

Chengyuan Tang, Xinyu Shen, Xiufeng Wu, Yuan Zhong, Junhua Hu, Min Lu, Zhennan Wu, Yu Zhang, William W Yu, Xue Bai

Abstract:

Metal halide perovskite nanocrystal (PNC) light-emitting devices (LEDs) are promising in the future ultra-high-definition display applications due to their tunable bandgap and high color purity. Balanced carrier injection is indispensable for realizing highly efficient LEDs. Herein, cobalt (Co) was doped into ZnO to modulate the electron mobility of a pristine electron transport layer (ETL) and to inhibit exciton quenching at the ZnO/EML interface due to the passivation of oxygen vacancies and the reduction of electron concentration resulting from the trapping of electrons by the Co2+-induced deep impurity level. Also, the bandgap was widened due to the size confinement effect. All of those were beneficial to achieve a balanced charge injection during the operating process. Consequently, the maximum luminance increased from 867 cd m-2 for ZnO LEDs to 1858 cd m-2 for Co-doped ZnO LEDs, and there was a 70% increase of external quantum efficiency (EQE). By further inserting a polyethylenimine (PEI) layer in the Co-doped ZnO LEDs, the EQE reached 13.0%.

Bright red YCl3-promoted CsPbI3 perovskite nanorods towards efficient light-emitting diode

Nano Energy Elsevier BV 81 (2021) 105615

Authors:

Gencai Pan, Xue Bai, Xinyu Shen, Lei Wang, Yanli Mao, Xu Chen, Wen Xu, He Shao, Donglei Zhou, Biao Dong, Lin Xu, Junhua Hu, Hongwei Song

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