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Materials Science

D-Index
74
Citations
16528
World Ranking
3716
National Ranking
1189

Overview

Ming Lei is affiliated with Beijing University of Posts and Telecommunications in China. Their research spans multiple intersecting fields within engineering and materials science, focusing particularly on electrical and electronic engineering, renewable energy, sustainability, materials chemistry, biomedical engineering, and civil and structural engineering.

The scientist has contributed extensively to topics related to electrocatalysts for energy conversion, advanced battery technologies research, advanced sensor and energy harvesting materials, conducting polymers and applications, advanced photocatalysis techniques, fuel cells and related materials, and catalytic processes in materials science.

Their recent publications include:

  • Recent Advances of 2D Materials in Nonlinear Photonics and Fiber Lasers (2020) published in Advanced Optical Materials
  • Sub-10 nm two-dimensional transistors: Theory and experiment (2021) published in Physics Reports
  • Silver nanosheets doped polyvinyl alcohol hydrogel piezoresistive bifunctional sensor with a wide range and high resolution for human motion detection (2022) published in Advanced Composites and Hybrid Materials
  • Ultrafast photonics of two dimensional AuTe2Se4/3 in fiber lasers (2020) published in Communications Physics
  • A large-area AgNW-modified textile with high-performance electromagnetic interference shielding (2020) published in npj Flexible Electronics

This body of work represents a significant contribution to journals and venues including Advanced Composites and Hybrid Materials, SSRN Electronic Journal, Research Square, Engineered Science, and Advanced Functional Materials.

Frequent collaborators in Ming Lei's research efforts include:

  • Kai Huang
  • Peng Du
  • Hui Wu
  • Ruyue Wang
  • Junchen Liu

These collaborations have contributed to a substantial output in the scholar's primary research themes and disciplines.

Ming Lei's engagement with interdisciplinary topics within engineering and materials science involves a combination of experimental and theoretical approaches. This is evident in their work on two-dimensional materials for photonics and electronics, sensor technologies with advanced composite materials, and innovations in energy conversion and storage devices.

Best Publications

  • Machine learning in materials science

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

  • One-step synthesis of easy-recycling TiO2-rGO nanocomposite photocatalysts with enhanced photocatalytic activity

    Ping Wang;Jin Wang;Xuefei Wang;Huogen Yu

  • Iced photochemical reduction to synthesize atomically dispersed metals by suppressing nanocrystal growth

    Hehe Wei;Kai Huang;Da Wang;Ruoyu Zhang

  • Significantly enhanced energy storage performance promoted by ultimate sized ferroelectric BaTiO3 fillers in nanocomposite films

    Yanan Hao;Xiaohui Wang;Ke Bi;Jiameng Zhang

  • Significantly Enhanced Uranium Extraction from Seawater with Mass Produced Fully Amidoximated Nanofiber Adsorbent

    Dong Wang;Dong Wang;Jianan Song;Jun Wen;Yihui Yuan

  • Roll-to-Roll Production of Transparent Silver-Nanofiber-Network Electrodes for Flexible Electrochromic Smart Windows.

    Sen Lin;Sen Lin;Xiaopeng Bai;Haiyang Wang;Haolun Wang;Haolun Wang

  • Interfacial Properties of Monolayer and Bilayer MoS2 Contacts with Metals: Beyond the Energy Band Calculations

    Hongxia Zhong;Ruge Quhe;Ruge Quhe;Yangyang Wang;Yangyang Wang;Zeyuan Ni

  • Recent Advances in the Functional 2D Photonic and Optoelectronic Devices

    Xiaoting Wang;Xiaoting Wang;Yu Cui;Tao Li;Ming Lei

  • Direct spray-coating of highly robust and transparent Ag nanowires for energy saving windows

    Sen Lin;Sen Lin;Haiyang Wang;Xuenan Zhang;Xuenan Zhang;Dong Wang

  • Tungsten disulfide saturable absorbers for 67 fs mode-locked erbium-doped fiber lasers.

    Wenjun Liu;Lihui Pang;Hainian Han;Mengli Liu

  • High-performance sub-10 nm monolayer Bi2O2Se transistors

    Ruge Quhe;Junchen Liu;Jinxiong Wu;Jie Yang

  • Ultrathin Li3VO4 Nanoribbon/Graphene Sandwich-Like Nanostructures with Ultrahigh Lithium ion Storage Properties

    Jun Liu;Pei Jie Lu;Shuquan Liang;Wenjun Wang

  • SnO 2 -in-Polymer Matrix for High-Efficiency Perovskite Solar Cells with Improved Reproducibility and Stability.

    Jing Wei;Fengwan Guo;Xi Wang;Kun Xu

  • A Marine-Inspired Hybrid Sponge for Highly Efficient Uranium Extraction from Seawater

    Dong Wang;Dong Wang;Jianan Song;Sen Lin;Sen Lin;Jun Wen

  • Tungsten disulphide for ultrashort pulse generation in all-fiber lasers

    Wenjun Liu;Wenjun Liu;Lihui Pang;Hainian Han;Ke Bi

  • Durable and Efficient Hollow Porous Oxide Spinel Microspheres for Oxygen Reduction

    Hao Wang;Hao Wang;Ruiping Liu;Ruiping Liu;Yutao Li;Xujie Lü

  • Simulations of Quantum Transport in Sub-5-nm Monolayer Phosphorene Transistors

    Ruge Quhe;Qiuhui Li;Qiaoxuan Zhang;Yangyang Wang

  • Optical properties and applications for MoS 2 -Sb 2 Te 3 -MoS 2 heterostructure materials

    Wenjun Liu;Ya-Nan Zhu;Mengli Liu;Bo Wen

  • Room-temperature production of silver-nanofiber film for large-area, transparent and flexible surface electromagnetic interference shielding

    Sen Lin;Sen Lin;Haiyang Wang;Fan Wu;Qingmin Wang

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

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

  • Dark solitons in WS 2 erbium-doped fiber lasers

    Wenjun Liu;Lihui Pang;Hainian Han;Zhongwei Shen

Frequent Co-Authors

Wenjun Liu
Wenjun Liu Beijing University of Posts and Telecommunications
Jun Liu
Jun Liu Pacific Northwest National Laboratory
Hui Wu
Hui Wu National Institute of Standards and Technology
Ruge Quhe
Ruge Quhe Beijing University of Posts and Telecommunications
Binghui Ge
Binghui Ge Anhui University
Jing Lu
Jing Lu Peking University
Zhongming Wei
Zhongming Wei Chinese Academy of Sciences
Ji Zhou
Ji Zhou Tsinghua University
Hui Wu
Hui Wu Tsinghua University
Weihua Tang
Weihua Tang Nanjing University of Posts and Telecommunications

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