Lianghongsheng Lecturer

College of Science

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Degree: Doctor

Graduate School: Northwestern Polytechnic University

Email: hongshengliang@chd.edu.cn

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BirthDate: 1996-01-04

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The personal data

  • Department: College of Science
  • Gender: male
  • BirthDate: 1996-01-04
  • Career: Lecturer
  • Degree: Doctor
  • Academic Credentials:
  • Graduate School: Northwestern Polytechnic University
  • Tel:
  • Email: hongshengliang@chd.edu.cn
  • Address School:
  • PostCode School:
  • Fax School:
  • Office Location:
  • Education experience:

    2019.03–2025.03, Northwestern Polytechnical University, Ph.D. in Engineering, Materials Physics and Chemistry,Research Direction: Electromagnetic Wave Absorbing Materials

    2014.09–2018.06, Northwestern Polytechnical University, Bachelor of Science, Materials Physics


Resume

Hongsheng Liang, Lecturer at Chang’an University, received his Ph.D. from the School of Physical Science and Technology, Northwestern Polytechnical University. He has been working at the School of Science, Chang’an University since March 2025.

His research mainly focuses on the theoretical design, synthesis and fabrication, physicochemical characterization, and stealth applications of electromagnetic wave absorbing materials. He has published over 30 SCI-indexed papers, including 8 as first author in internationally renowned journals such as Advanced Functional Materials, Small, Small Methods, Composites Part B: Engineering, Composites Part A: Applied Science and Manufacturing, and Carbon. His publications include 10 ESI Highly Cited Papers and 5 ESI Hot Papers. His work has been cited more than 2,200 times by researchers from the United States, Germany, Japan, the United Kingdom, and South Korea, with an H-index of 22.

He has led 2 university-level research projects and participated in 5 research projects, including General Programs of the National Natural Science Foundation of China and industry-sponsored projects such as those funded by Huawei. He was awarded the First Prize of Outstanding Scientific Research Achievements of Higher Education Institutions in Shaanxi Province in 2024, received the 2022 Most Popular Chinese Paper Award in Materials Science from Cell Press, and was selected as one of the World’s Top 2% Scientists in 2024.


Social position

Research

Electromagnetic wave absorbing material

Open Course

  • Physics, Spring 2026

  • University Physics II (Part I), Spring 2026


Research project

1. Research Projects Led in the Past Five Years

[1] 2022–2023, Doctoral Dissertation Innovation Fund of Northwestern Polytechnical University, Study on the Electromagnetic Loss Mechanism of Ni/Cu Single-Atom Electromagnetic Wave Absorbing Materials, Principal Investigator, completed;

[2] 2020–2021, Graduate Creative Innovation Seed Fund of Northwestern Polytechnical University, Correlation Study of Ferrite Composite Absorbing Materials Based on Short Carbon Fiber Substrates, Principal Investigator, completed;


2. Other Research Projects Led or Mainly Participated In

[1] 2019–2022, General Program of the National Natural Science Foundation of China, Study on the Microscopic Electromagnetic Loss Mechanism of Multilayer Core–Shell Hollow Ferrite Spheres, Participant, completed;

[2] 2024–2026, Guangdong Provincial Natural Science Foundation – General Program, Study on the Coupling Mechanism and Matching Design of Wave Absorption, Thermal Conductivity, and Superhydrophobicity in Stealth–Anti-/De-icing Integrated Silicon-Based Aerogels, Participant, ongoing;

[3] 2020–2021, General Program of the Natural Science Basic Research Plan of Shaanxi Province, Study on the Direct Correlation Between the Synergistic Effects of Noble Metals/Oxides and High-Frequency Electromagnetic Properties, Participant, completed;

[4] 2022–2023, Horizontal Research Project of Huawei Technologies Co., Ltd., xxx, Participant, completed;

[5] 2023–2024, Open Fund Project of Unit X of the Chinese People’s Liberation Army, xxx, Participant, completed.


Thesis

2025-:

1.  H.S. Liang, Y. Guo, S. Hui, Z. Hou, Z. Wang, H. Shen, H. Wu,Tailoring dielectric-magnetic synergy in bimetallic MOF-derived Cu/C@Fe3O4 for high-efficiency electromagnetic wave absorption, Carbon, 2025, 243, 120605.

2. H.S. Liang, Tian Hou, Tiancheng Liu, Shengchong Hui, Zhaoyang Hou, Zhen Wang, Bin Shi, Limin Zhang, Hao Shen, Hongjing Wu, Rare-Earth Oxide–Induced interfacial Engineering for tailoring dielectric response in NiCo2O4/CeO2 composites toward high-performance Electromagnetic wave absorbers, Carbon, 2025, 246, 120922.


2019-2025:

[1] H.S. Liang, G. Chen, D. Liu, Z.J. Li, S.C. Hui, J.J. Yun, L.M. Zhang, H.J. Wu, Exploring the Ni 3d Orbital Unpaired Electrons Induced Polarization Loss Based on Ni Single-Atoms Model Absorber, Advanced Functional Materials, 2023, 33, 2212604. IF=19.00 (SCI 1区,期刊内封面文章,ESI高被引论文,ESI热点论文)

[2] H.S. Liang, L.M. Zhang, H.J. Wu, Exploration of Twin-Modified Grain Boundary Engineering in Metallic Copper Predominated Electromagnetic Wave Absorber, Small, 2022, 18, 2203620. IF=13.3 (SCI 1区,ESI高被引论文,ESI热点论文)

[3] H.S. Liang, S.C. Hui, L.M. Zhang, K. Tao, Q. Chen, W. Lu, H.J. Wu, High-Density Dual Atoms Pairs Coupling for Efficient Electromagnetic Wave Absorbers, Small, 2025, 21, 2408396, IF=13.3 (SCI 1区)

[4] H.S. Liang,H. Xing, Z.H. Ma, H.J. Wu, Tailoring high-electroconductivity carbon cloth coated by nickel cobaltate/nickel oxide: A case of transition from microwave shielding to absorption, Carbon, 2021, 183, 138-149. IF=10.9 (SCI 2区)

[5] H.S. Liang,J.L. Liu, Y. Zhang, L. Luo, H.J. Wu, Ultra-thin broccoli-like SCFs@TiO2 one-dimensional electromagnetic wave absorbing material, Composites Part B: Engineering, 2019, 178, 107507. IF=13.1 (SCI 1区,ESI热点论文)

[6] H.S. Liang,H. Xing, M. Qin, H.J. Wu, Bamboo-like short carbon fibers@Fe3O4@phenolic resin and honeycomb-like short carbon fibers@Fe3O4@FeO composites as high-performance electromagnetic wave absorbing materials, Composites Part A: Applied Science and Manufacturing, 2020, 135, 105959. IF=8.7 (SCI 1区)

[7] H.S. Liang, S.C. Hui, G. Chen, H. Shen, J. Yun, L. Zhang, W. Lu, H.J. Wu, Discovery of deactivation phenomenon in NiCo2S4/NiS2 electromagnetic wave absorbent and its reactivation mechanism, Small Methods, 2024, 8, 2301600. IF=12.4 (SCI 2区,ESI高被引论文)

[8] H.S. Liang, G. Chen, H. Xing, L.M. Zhang, H.J. Wu, Correct establishment of structure–activity relationship of flexible electromagnetic wave absorber, Journal of Materials Science: Materials in Electronics, 2022, 33, 12701-12712. IF=2.8 (SCI 4区)

[9] Q. Chang1, H.S. Liang1, B. Shi, X.L. Li, Y.T. Zhang, L.M. Zhang, H.J. Wu, Ethylenediamine-assisted hydrothermal synthesis of NiCo2O4 absorber with controlled morphology and excellent absorbing performance, Journal of Colloid and Interface Science, 2021, 588, 336-345. IF=9.9 (SCI 1区,ESI高被引论文,ESI热点论文,共一)

[10] G. Chen, H.S. Liang, J.J. Yun, L.M. Zhang, H.J. Wu, J.Y. Wang, Ultrasonic field induces better crystallinity and abundant defects at grain boundaries to develop CuS electromagnetic wave absorber, Advanced Materials, 2023, 35, 2305586. IF=29.4 (SCI 1区,二作,ESI高被引论文)

[11] Q. Chang, H.S. Liang, B. Shi, H.J. Wu, Microstructure induced dielectric loss in lightweight Fe3O4 foam for electromagnetic wave absorption, iScience, 2022, 25, 103925. IF=9.9 (SCI 2区,ESI高被引论文,荣获Cell Press物质科学领域2022年度最受欢迎中国论文,二作)

[12] J.L. Liu, H.S. Liang, Y. Zhang, G.L. Wu, H.L. Wu, Facile synthesis of ellipsoid-like MgCo2O4/Co3O4 composites for strong wideband microwave absorption application, Composites Part B: Engineering, 2019, 176, 107240. IF=13.1 (SCI 1区,ESI高被引论文,ESI热点论文,二作)

[13] J.L. Liu, H.S. Liang, H.J. Wu, Hierarchical flower-like Fe3O4/MoS2 composites for selective broadband electromagnetic wave absorption performance, Composites Part A: Applied Science and Manufacturing, 2020, 130, 105760. IF=8.7 (SCI 1区,ESI高被引论文,二作)

[14] M. Qin, H.S. Liang, X.R. Zhao, H.J. Wu, Filter paper templated one-dimensional NiO/NiCo2O4 microrod with wideband electromagnetic wave absorption capacity, Journal of Colloid and Interface Science, 2020, 566, 347-356. IF=9.9 (SCI 1区,二作)

[15] Q. Chang, H.S. Liang, B. Shi, X.L. H.J. Wu, Sodium oxalate-induced hydrothermal synthesis of wood-texture-column-like NiCo2O4 with broad bandwidth electromagnetic wave absorption performance, Journal of Colloid and Interface Science, 2021, 600, 49-57. IF=9.9 (SCI 1区,二作)

[16] M. Qin, H.S. Liang, X.R. Zhao, H.J. Wu, Glycine-assisted solution combustion synthesis of NiCo2O4 electromagnetic wave absorber with wide absorption bandwidth, Ceramics International, 2020, 46, 22313-22320. IF=5.2 (SCI 1区,二作)

[17] J.L. Liu, H.S. Liang, B. Wei, J.J. Yun, L.M. Zhang, H.J. Wu, “Matryoshka Doll” Heterostructures induce electromagnetic parameters fluctuation to tailor electromagnetic wave absorption, Small Structures, 2023, 4, 2200379. IF=15.9 (SCI 2区,二作)

[18] B. Shi, H.S. Liang, Z.J. Xie, Q. Chang, H.J. Wu, Dielectric loss enhancement induced by the microstructure of CoFe2O4 foam to realize broadband electromagnetic wave absorption, International Journal of Minerals, Metallurgy and Materials, 2023, 30, 1388. IF=4.8 (SCI 2区,二作)

[19] H.J. Wu, J.L. Liu, H.S. Liang, D.Y. Zang, Sandwich-like Fe3O4/Fe3S4 composites for electromagnetic wave absorption. Chemical Engineering Journal, 2020, 393, 124743. IF=15.1 (SCI 1区,ESI高被引论文)

[20] Y. Mu, Z.H. Ma, H.S. Liang, L.M. Zhang, H.J. Wu, Ferrite-based composites and morphology-controlled absorbers, Rare Metals, 2022, 41, 2943-2970. IF=8.8 (SCI 1区)

[21] X.M. Liu, H.Q. Liu, H.J. Wu, Q. Zhou, H.S. Liang, G.Q. Liu, W.Y. Duan, Y. Gu, C.Y. Xu, N. Travitzky, P. Colombo, R. Riedel, Structural Electromagnetic Absorber Based on MoS2/PyC‐Al2O3 Ceramic Metamaterials, Small, 2023, 19, 2300664. IF=13.3 (SCI 1区)

[22] L. Cai, H.J. Jiang, F. Pan, H.S. Liang, Y.Y. Shi, X. Wang, J. Cheng, Y. Yang, X. Zhang, Z. Shi, H.J. Wu, W. Lu, Linkage effect induced by hierarchical architecture in magnetic MXene‐based microwave absorber, Small, 2024, 20, 2306698. IF=13.3 (SCI 1区)

[23] M. Qin, D. Lan, J.L. Liu, H.S. Liang, L.M. Zhang, H. Xing, T.T. Xu, H.J. Wu, Synthesis of single-component metal oxides with controllable multi-shelled structure and their morphology-related applications, Chemical Record, 2020, 20, 102-119. IF=6.6 (SCI 2区,ESI高被引论文)

[24] Y. Yang, X. Zheng, F. Pan, H.L. Liang, H.J. Jiang, H.T. Guo, X. Wang, L.X. Li, B. Yuan, W. Lu, Tuning the Multilevel Hierarchical Microarchitecture of MXene/rGO-Based Aerogels Through a Magnetic Field-Guided Strategy Toward Stepwise Enhanced Electromagnetic Wave Dissipation, Advanced Functional Materials, 2024,doi: 10.1002/adfm.202406133.

[25]R.Z. Zhang, B. Yuan, F. Pan, H.L. Liang, H.J. Jiang, H.T. Guo, Y.C. Rao, S.H. Zheng, L.Y. Ruan, C.S. Wu, Y. Yang, W. Lu, Ultratransparent, stretchable, and durable electromagnetic wave absorbers, Matter, 2025, 8, 101956.

[26] K. Yao, F. Pan, H.L. Liang, X. Zhang, L.X. Li, L.X. Song, Y. Yang, B. Yuan, W. Lu, Shifting d-band Center: An Overlooked Factor in Broadening Electromagnetic Wave Absorption Bandwidth, Advanced Functional Materials, 2025, 35, 2413639.



[1] H.J. Wu, J. Luo, M.Y. Yang, Novel Electromagnetic Wave Absorbing Materials, Wiley-VCH, Weinheim, 2024, doi: 10.1002/9781119699316.ch4. (Chapter 4: H.S. Liang, H.J. Wu, Novel microscopic electromagnetic loss mechanisms.)

[2] H.J. Wu, J. Luo, M.Y. Yang, Novel Electromagnetic Wave Absorbing Materials, Wiley-VCH, Weinheim, 2024, doi: 10.1002/9781119699316.ch6. (Chapter 6: H.S. Liang, H.J. Wu, New dielectric physical models for electromagnetic wave absorption.)


Technological Achievements

Honor Reward

Honors and Awards

[1] 2024, Selected as one of the World’s Top 2% Scientists;

[2] 2024, First Prize of Outstanding Scientific Research Achievements in Higher Education Institutions of Shaanxi Province (Ranked 7/11);

[3] 2025, Outstanding Graduate, Northwestern Polytechnical University;

[4] 2022–2023, National Scholarship;

[5] 2022–2023, “Self-Improvement Star” of Northwestern Polytechnical University;

[6] 2022–2023, Outstanding Graduate Student, Northwestern Polytechnical University;

[7] 2022–2023, First-Class Academic Scholarship, Northwestern Polytechnical University;

[8] 2022–2023, First-Class Scholarship, Northwestern Polytechnical University;

[9] 2020–2021, National Scholarship.


Work experience

2025.03-present, lecturer, Chang'an University