World's Best Scientists 2026 revealed!
Hualiang Lv

Hualiang Lv

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Rising Stars
2025

D-Index & Metrics

Rising Stars

D-Index
41
Citations
10741
World Ranking
601
National Ranking
211

Materials Science

D-Index
42
Citations
11767
World Ranking
12464
National Ranking
3392

Research.com Recognitions

  • 2025 - Research.com Rising Stars Award

Overview

Hualiang Lv is affiliated with Fudan University in China and has made contributions primarily in the field of Materials Science with a significant overlap in Engineering. Their research extensively covers subfields such as Electronic, Optical and Magnetic Materials, Aerospace Engineering, Materials Chemistry, Electrical and Electronic Engineering, and Biomedical Engineering.

The main topics of Hualiang Lv's research include:

  • Electromagnetic wave absorption materials
  • Advanced Antenna and Metasurface Technologies
  • Metamaterials and Metasurfaces Applications
  • Graphene research and applications
  • MXene and MAX Phase Materials
  • Head and Neck Cancer Studies
  • Advanced Sensor and Energy Harvesting Materials

Frequent publication venues for their work include:

  • Advanced Functional Materials
  • Journal of Material Science and Technology
  • Nature Communications
  • Nano-Micro Letters
  • Composites Part B Engineering

Significant papers authored by Hualiang Lv highlight their focus on electromagnetic materials and applications:

  • Electromagnetic absorption materials: Current progress and new frontiers, 2022, Progress in Materials Science
  • A flexible electromagnetic wave-electricity harvester, 2021, Nature Communications

Among frequent co-authors, those with whom Hualiang Lv has collaborated extensively include Renchao Che, Xiaodi Zhou, Jincang Zhang, Huibin Zhang, and Mingyue Yuan.

Hualiang Lv's research integrates material synthesis and characterization with applied engineering concepts. This interdisciplinary approach supports advancements in electromagnetic wave absorption technologies and their practical applications, including energy harvesting and antenna design.

Best Publications

  • A Voltage-Boosting Strategy Enabling a Low-Frequency, Flexible Electromagnetic Wave Absorption Device.

    Hualiang Lv;Hualiang Lv;Zhihong Yang;Paul Luyuan Wang;Guangbin Ji

  • Porous Three-Dimensional Flower-like Co/CoO and Its Excellent Electromagnetic Absorption Properties

    Hualiang Lv;Xiaohui Liang;Guangbin Ji;Haiqian Zhang

  • A novel hierarchically porous magnetic carbon derived from biomass for strong lightweight microwave absorption

    Huanqin Zhao;Yan Cheng;Hualiang Lv;Guangbin Ji

  • Achieving hierarchical hollow carbon@Fe@Fe3O4 nanospheres with superior microwave absorption properties and lightweight features

    Hualiang Lv;Guangbin Ji;Wei Liu;Haiqian Zhang

  • A novel rod-like MnO2@Fe loading on graphene giving excellent electromagnetic absorption properties

    Hualiang Lv;Guangbin Ji;XiaoHui Liang;Haiqian Zhang

  • Coin-like α-Fe2O3@CoFe2O4 Core–Shell Composites with Excellent Electromagnetic Absorption Performance

    Hualiang Lv;Xiaohui Liang;Yan Cheng;Haiqian Zhang

  • Facile Synthesis and Hierarchical Assembly of Flowerlike NiO Structures with Enhanced Dielectric and Microwave Absorption Properties

    Peijiang Liu;Peijiang Liu;Vincent Ming Hong Ng;Zhengjun Yao;Jintang Zhou

  • Design of carbon sphere/magnetic quantum dots with tunable phase compositions and boost dielectric loss behavior

    Guanglei Wu;Guanglei Wu;Yonghong Cheng;Zhihong Yang;Zirui Jia

  • A flexible electromagnetic wave-electricity harvester.

    Hualiang Lv;Zhihong Yang;Bo Liu;Guanglei Wu

  • Engineering morphology configurations of hierarchical flower-like MoSe2 spheres enable excellent low-frequency and selective microwave response properties

    Yan Cheng;Yue Zhao;Huanqin Zhao;Hualiang Lv

  • A Flexible Microwave Shield with Tunable Frequency-Transmission and Electromagnetic Compatibility

    Hualiang Lv;Hualiang Lv;Zhihong Yang;Samuel Jun Hoong Ong;Chao Wei

  • An Electrical Switch-Driven Flexible Electromagnetic Absorber

    Hualiang Lv;Zhihong Yang;Hongbin Xu;Liuying Wang

  • Interface Polarization Strategy to Solve Electromagnetic Wave Interference Issue.

    Hualiang Lv;Hualiang Lv;Yuhang Guo;Guanglei Wu;Guangbin Ji

  • A brief introduction to the fabrication and synthesis of graphene based composites for the realization of electromagnetic absorbing materials

    Hualiang Lv;Hualiang Lv;Yuhang Guo;Zhihong Yang;Yan Cheng

  • Rational construction of graphene oxide with MOF-derived porous NiFe@C nanocubes for high-performance microwave attenuation

    Zhihong Yang;Hualiang Lv;Renbing Wu

  • Achieving excellent bandwidth absorption by a mirror growth process of magnetic porous polyhedron structures

    Hualiang Lv;Hualiang Lv;Haiqian Zhang;Jun Zhao;Guangbin Ji

  • Interface Strategy To Achieve Tunable High Frequency Attenuation

    Hualiang Lv;Hualiang Lv;Haiqian Zhang;Guangbin Ji;Zhichuan J. Xu

  • Hierarchical composite of biomass derived magnetic carbon framework and phytic acid doped polyanilne with prominent electromagnetic wave absorption capacity

    Tianqi Hou;Zirui Jia;Ailing Feng;Zehua Zhou

  • Biomass-Derived Carbon Heterostructures Enable Environmentally Adaptive Wideband Electromagnetic Wave Absorbers.

    Zhichao Lou;Qiuyi Wang;Ufuoma I Kara;Rajdeep S Mamtani

  • Investigation and optimization of Fe/ZnFe2O4 as a Wide-band electromagnetic absorber.

    Guanglei Wu;Hongxia Zhang;Xixi Luo;Lieji Yang

Frequent Co-Authors

Guangbin Ji
Guangbin Ji Nanjing University of Aeronautics and Astronautics
Youwei Du
Youwei Du Nanjing University
Guanglei Wu
Guanglei Wu Qingdao University
Zirui Jia
Zirui Jia Qingdao University
Zhichuan J. Xu
Zhichuan J. Xu Nanyang Technological University
Renbing Wu
Renbing Wu Fudan University
Hongjing Wu
Hongjing Wu Northwestern Polytechnical University
Jizhong Song
Jizhong Song Nanjing University of Science and Technology
Biao Zhao
Biao Zhao Fudan University
Ling Bing Kong
Ling Bing Kong Nanyang Technological University

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