World's Best Scientists 2026 revealed!
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Rising Stars
2025

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Rising Stars

D-Index
46
Citations
7155
World Ranking
422
National Ranking
145

Materials Science

D-Index
46
Citations
8538
World Ranking
11407
National Ranking
3154

Research.com Recognitions

  • 2025 - Research.com Rising Stars Award

Overview

Junye Cheng is affiliated with Shenzhen MSU-BIT University (SMBU) in China and has an extensive research profile focused on materials science and engineering. Their work spans various subfields, notably electronic, optical and magnetic materials, electrical and electronic engineering, aerospace engineering, materials chemistry, and sustainability-related topics.

The scientist's research primarily revolves around electromagnetic wave absorption materials, advanced antenna and metasurface technologies, and advancements in battery materials. Their contributions also include studies on metamaterials and metasurfaces applications, MXene and MAX phase materials, and advanced battery technologies research.

Frequent co-authors collaborating with Junye Cheng include Guangping Zheng, Deqing Zhang, Huibin Zhang, Hassan Raza, and Maosheng Cao, reflecting a broad network of research partnerships.

Junye Cheng has published multiple papers in well-known venues, with significant representation in journals such as SSRN Electronic Journal, Nano-Micro Letters, Advanced Functional Materials, Journal of Materiomics, and the Journal of Material Science and Technology.

Notable papers authored by Junye Cheng include:

  • Recent Advances in Design Strategies and Multifunctionality of Flexible Electromagnetic Interference Shielding Materials (2022, Nano-Micro Letters)
  • Emerging Materials and Designs for Low- and Multi-Band Electromagnetic Wave Absorbers: The Search for Dielectric and Magnetic Synergy? (2022, Advanced Functional Materials)
  • Tailoring Self-Polarization of Bimetallic Organic Frameworks with Multiple Polar Units Toward High-Performance Consecutive Multi-Band Electromagnetic Wave Absorption at Gigahertz (2022, Advanced Functional Materials)

The scientist's publication record also includes collaborations on related topics such as lithium-sulfur batteries and electromagnetic wave absorbers with other researchers.

Junye Cheng's research areas within materials science include:

  • Materials Science
  • Engineering

Their more specific subfields of study are:

  • Electronic, Optical and Magnetic Materials
  • Electrical and Electronic Engineering
  • Aerospace Engineering
  • Materials Chemistry
  • Renewable Energy, Sustainability and the Environment

Main research topics addressed include:

  • Electromagnetic wave absorption materials
  • Advanced Antenna and Metasurface Technologies
  • Advancements in Battery Materials
  • Metamaterials and Metasurfaces Applications
  • Advanced Battery Materials and Technologies
  • MXene and MAX Phase Materials
  • Advanced battery technologies research

Best Publications

  • Extremely safe, high-rate and ultralong-life zinc-ion hybrid supercapacitors

    Liubing Dong;Xinpei Ma;Yang Li;Ling Zhao

  • An Aqueous Zn-Ion Hybrid Supercapacitor with High Energy Density and Ultrastability up to 80 000 Cycles

    Shuilin Wu;Yatu Chen;Tianpeng Jiao;Jun Zhou

  • Multivalent ion storage towards high-performance aqueous zinc-ion hybrid supercapacitors

    Xinpei Ma;Junye Cheng;Liubing Dong;Wenbao Liu

  • Lithiophilic Cu-CuO-Ni Hybrid Structure: Advanced Current Collectors Toward Stable Lithium Metal Anodes.

    Shuilin Wu;Zhenyu Zhang;Minhuan Lan;Minhuan Lan;Shaoran Yang

  • Initiating VB-Group Laminated NbS2 Electromagnetic Wave Absorber toward Superior Absorption Bandwidth as Large as 6.48 GHz through Phase Engineering Modulation

    Huibin Zhang;Huibin Zhang;Junye Cheng;Junye Cheng;Honghan Wang;Zehao Huang

  • Lightweight and high-performance microwave absorber based on 2D WS 2 –RGO heterostructures

    Deqing Zhang;Tingting Liu;Junye Cheng;Qi Cao

  • Binder-free hierarchical VS2 electrodes for high-performance aqueous Zn ion batteries towards commercial level mass loading

    Tianpeng Jiao;Qi Yang;Shuilin Wu;Zifeng Wang

  • Unconventional Nickel Nitride Enriched with Nitrogen Vacancies as a High-Efficiency Electrocatalyst for Hydrogen Evolution.

    Bin Liu;Bin He;Hui-Qing Peng;Yufei Zhao

  • Construction of multiple interfaces and dielectric/magnetic heterostructures in electromagnetic wave absorbers with enhanced absorption performance: A review

    Junye Cheng;Junye Cheng;Huibin Zhang;Yingfei Xiong;Lingfeng Gao

  • Synergetic dielectric loss and magnetic loss towards superior microwave absorption through hybridization of few-layer WS2 nanosheets with NiO nanoparticles

    Deqing Zhang;Deqing Zhang;Yingfei Xiong;Junye Cheng;Jixing Chai

  • High-performance microwave absorption enabled by Co3O4 modified VB-group laminated VS2 with frequency modulation from S-band to Ku-band

    Zehao Huang;Junye Cheng;Huibin Zhang;Yingfei Xiong

  • Self-Assembly Construction of WS2-rGO Architecture with Green EMI Shielding.

    De-Qing Zhang;Ting-Ting Liu;Jin-Cheng Shu;Shuang Liang

  • Conductive WS2-NS/CNTs hybrids based 3D ultra-thin mesh electromagnetic wave absorbers with excellent absorption performance

    Deqing Zhang;Honghan Wang;Junye Cheng;Changyu Han

  • Engineering flexible and green electromagnetic interference shielding materials with high performance through modulating WS2 nanosheets on carbon fibers

    Huibin Zhang;Tingting Liu;Tingting Liu;Zehao Huang;Junye Cheng

  • Editable asymmetric all-solid-state supercapacitors based on high-strength, flexible, and programmable 2D-metal-organic framework/reduced graphene oxide self-assembled papers

    Junye Cheng;Shengmei Chen;Shengmei Chen;Da Chen;Liubing Dong

  • High‐Performance Supercapacitor Applications of NiO‐Nanoparticle‐Decorated Millimeter‐Long Vertically Aligned Carbon Nanotube Arrays via an Effective Supercritical CO2‐Assisted Method

    Junye Cheng;Bin Zhao;Wenkang Zhang;Feng Shi

  • Customizing coaxial stacking VS2 nanosheets for dual-band microwave absorption with superior performance in the C- and Ku-bands

    Deqing Zhang;Deqing Zhang;Huibin Zhang;Junye Cheng;Hassan Raza

  • Two-Dimensional Black Phosphorus Nanomaterials: Emerging Advances in Electrochemical Energy Storage Science

    Junye Cheng;Lingfeng Gao;Tian Li;Shan Mei

  • MoS2 nanobelts with (002) plane edges-enriched flat surfaces for high-rate sodium and lithium storage

    Zhenyu Zhang;Shuilin Wu;Junye Cheng;Wenjun Zhang

  • Light-weight and low-cost electromagnetic wave absorbers with high performances based on biomass-derived reduced graphene oxides

    Deqing Zhang;Tingting Liu;Junye Cheng;Jixing Chai

  • Enhancing electromagnetic wave absorption performance of Co3O4 nanoparticles functionalized MoS2 nanosheets

    Jixing Chai;Junye Cheng;Deqing Zhang;Deqing Zhang;Yingfei Xiong

  • Highly efficient microwave absorption properties and broadened absorption bandwidth of MoS2-iron oxide hybrids and MoS2-based reduced graphene oxide hybrids with Hetero-structures

    Deqing Zhang;Jixing Chai;Junye Cheng;Junye Cheng;Yixuan Jia

Frequent Co-Authors

Mao-Sheng Cao
Mao-Sheng Cao Beijing Institute of Technology
Wenjun Zhang
Wenjun Zhang City University of Hong Kong
Chun-Sing Lee
Chun-Sing Lee City University of Hong Kong
Junhe Yang
Junhe Yang University of Shanghai for Science and Technology
Shuilin Wu
Shuilin Wu Peking University
Liubing Dong
Liubing Dong Jinan University
Feiyu Kang
Feiyu Kang Tsinghua University
Kaili Zhang
Kaili Zhang City University of Hong Kong
Linjie Zhi
Linjie Zhi China University of Petroleum, Beijing
Chunyi Zhi
Chunyi Zhi University of Hong Kong

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