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Materials Science

D-Index
45
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7847
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11729
National Ranking
3235

Overview

Hui-Xiong Deng is affiliated with the Chinese Academy of Sciences in China. Their research spans several interconnected domains in materials science and engineering, with a particular focus on semiconductor materials and devices, as well as two-dimensional (2D) materials and perovskite materials and applications.

They have contributed extensively to the study of materials chemistry and electrical and electronic engineering, supported by work in subfields such as atomic and molecular physics, optics, electronic, optical and magnetic materials, and condensed matter physics.

The scientist's main topics of research include:

  • 2D Materials and Applications
  • Perovskite Materials and Applications
  • Semiconductor materials and devices
  • Chalcogenide Semiconductor Thin Films
  • Advancements in Semiconductor Devices and Circuit Design
  • ZnO doping and properties
  • Graphene research and applications

Recent papers authored by Hui-Xiong Deng cover evolving directions in perovskite solar cells and photonic materials. Selected publications include:

  • "Inactive (PbI 2)2 RbCl stabilizes perovskite films for efficient solar cells" (2022, Science)
  • "Large cation ethylammonium incorporated perovskite for efficient and spectra stable blue light-emitting diodes" (2020, Nature Communications)
  • "Surface in situ reconstruction of inorganic perovskite films enabling long carrier lifetimes and solar cells with 21% efficiency" (2023, Nature Energy)
  • "Recent Advances of 2D Materials in Nonlinear Photonics and Fiber Lasers" (2020, Advanced Optical Materials)
  • "Ultrafast photonics of two dimensional AuTe2Se4/3 in fiber lasers" (2020, Communications Physics)

Frequent coauthors contributing to their scientific collaborations include Zhongming Wei, Su-Huai Wei, Caixin Zhang, Kaike Yang, and Tao Shen.

Publication venues where Hui-Xiong Deng has appeared regularly include Physical Review B (7 publications), Advanced Materials (5 publications), Small (4 publications), Science China Physics Mechanics and Astronomy (4 publications), and Applied Physics Letters (4 publications).

Their research integrates experimental and theoretical approaches within materials science and engineering to address challenges in advanced semiconductor and optoelectronic technologies.

Best Publications

  • Inactive (PbI2)2RbCl stabilizes perovskite films for efficient solar cells

    Unknown

  • Machine learning in materials science

    Jing Wei;Xuan Chu;Xiang‐Yu Sun;Kun Xu

  • Stable 6%-efficient Sb 2 Se 3 solar cells with a ZnO buffer layer

    Liang Wang;Deng-Bing Li;Kanghua Li;Chao Chen

  • Large cation ethylammonium incorporated perovskite for efficient and spectra stable blue light-emitting diodes

    Zema Chu;Yang Zhao;Fei Ma;Cai-Xin Zhang

  • Recent Advances of 2D Materials in Nonlinear Photonics and Fiber Lasers

    Wenjun Liu;Wenjun Liu;Mengli Liu;Ximei Liu;Xiaoting Wang;Xiaoting Wang

  • Thickness-Dependent Carrier Transport Characteristics of a New 2D Elemental Semiconductor: Black Arsenic

    Mianzeng Zhong;Mianzeng Zhong;Qinglin Xia;Longfei Pan;Yuqing Liu

  • Flexible photodetectors based on phase dependent PbI2 single crystals

    Mianzeng Zhong;Le Huang;Hui-Xiong Deng;Xiaoting Wang

  • High-Efficiency Single-Component Organic Light-Emitting Transistors.

    Zhengsheng Qin;Haikuo Gao;Jinyu Liu;Ke Zhou

  • Highly sensitive and fast phototransistor based on large size CVD-grown SnS2 nanosheets

    Yun Huang;Hui-Xiong Deng;Kai Xu;Zhen-Xing Wang

  • Unified theory of direct or indirect band-gap nature of conventional semiconductors

    Lin-Ding Yuan;Hui-Xiong Deng;Shu-Shen Li;Su-Huai Wei

  • Exceptional Optoelectronic Properties of Hydrogenated Bilayer Silicene

    Bing Huang;Bing Huang;Hui Xiong Deng;Hoonkyung Lee;Mina Yoon

  • Highly polarization sensitive photodetectors based on quasi-1D titanium trisulfide (TiS3)

    Sijie Liu;Wenbo Xiao;Mianzeng Zhong;Longfei Pan

  • Tunable electronic and optical properties of InSe/InTe van der Waals heterostructures toward optoelectronic applications

    Jimin Shang;Longfei Pan;Xiaoting Wang;Jingbo Li

  • Electronic structure and exciton shifts in Sb-doped MoS 2 monolayer

    Mianzeng Zhong;Mianzeng Zhong;Chao Shen;Le Huang;Hui-Xiong Deng

  • Origin of Reduced Efficiency in Cu(In,Ga)Se $_2$ Solar Cells With High Ga Concentration: Alloy Solubility Versus Intrinsic Defects

    Bing Huang;Shiyou Chen;Hui-Xiong Deng;Lin-Wang Wang

  • Anti-Ambipolar Field-Effect Transistors Based On Few-Layer 2D Transition Metal Dichalcogenides

    Yongtao Li;Yan Wang;Le Huang;Xiaoting Wang

  • Investigation of Electrode Electrochemical Reactions in CH 3 NH 3 PbBr 3 Perovskite Single-Crystal Field-Effect Transistors

    Junzhan Wang;Satyaprasad P. Senanayak;Jie Liu;Yuanyuan Hu

  • Composition-tunable 2D SnSe2(1−x)S2x alloys towards efficient bandgap engineering and high performance (opto)electronics

    Yan Wang;Le Huang;Bo Li;Jimin Shang

  • Electrical and magnetic anisotropies in van der Waals multiferroic CuCrP2S6

    Unknown

  • Ultrafast photonics of two dimensional AuTe 2 Se 4/3 in fiber lasers

    Wenjun Liu;Wenjun Liu;Mengli Liu;Mengli Liu;Xu Chen;Tao Shen

  • Origin of antiferromagnetism in CoO: A density functional theory study

    Hui Xiong Deng;Jingbo Li;Shu Shen Li;Jian Bai Xia

  • Quantum Confinement Effects and Electronic Properties of SnO2 Quantum Wires and Dots

    Hui-Xiong Deng;Shu-Shen Li;Jingbo Li

Frequent Co-Authors

Su-Huai Wei
Su-Huai Wei Eastern Institute of Technology, Ningbo
Zhongming Wei
Zhongming Wei Chinese Academy of Sciences
Shu-Shen Li
Shu-Shen Li Chinese Academy of Sciences
Jingbo Li
Jingbo Li South China Normal University
Wenjun Liu
Wenjun Liu Beijing University of Posts and Telecommunications
Lin-Wang Wang
Lin-Wang Wang Lawrence Berkeley National Laboratory
Wenping Hu
Wenping Hu Tianjin University
Ming Lei
Ming Lei Beijing University of Posts and Telecommunications
Guozhen Shen
Guozhen Shen Beijing Institute of Technology
Jun Zhang
Jun Zhang Nanyang Technological University

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