World's Best Scientists 2026 revealed!

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Materials Science

D-Index
47
Citations
7344
World Ranking
11216
National Ranking
3105

Overview

Yu Feng is affiliated with Harbin University of Science and Technology in China and specializes in engineering and materials science. Their research portfolio comprises 193 publications in engineering and 147 in materials science, demonstrating a strong interdisciplinary approach to advanced materials and their applications.

Their scholarly work focuses extensively on subfields such as biomedical engineering, materials chemistry, electrical and electronic engineering, electronic, optical and magnetic materials, and polymers and plastics. This diverse expertise supports investigations into topics including dielectric materials and actuators, advanced sensor and energy harvesting materials, ferroelectric and piezoelectric materials, high voltage insulation and dielectric phenomena, electromagnetic wave absorption materials, thermal properties of materials, and advancements in battery materials.

Frequent coauthors collaborating with Yu Feng include:

  • Qingguo Chi
  • Tiandong Zhang
  • Changhai Zhang
  • Qingguo Chen
  • Yue Dong

Yu Feng has contributed regularly to several publication venues, notably:

  • Journal of Applied Polymer Science
  • Materials Horizons
  • Composites Part B Engineering
  • Ceramics International
  • Polymer Composites

Among the recent papers attributed to Yu Feng are:

  • Defects and Aliovalent Doping Engineering in Electroceramics, 2020, Chemical Reviews
  • Recent Advances in Multilayer-Structure Dielectrics for Energy Storage Application, 2021, Advanced Science (authored by Mengjia Feng)
  • Recent progress in polymer/two-dimensional nanosheets composites with novel performances, 2022, Progress in Polymer Science (authored by Jialong Li)
  • High energy density, temperature stable lead-free ceramics by introducing high entropy perovskite oxide, 2021, Chemical Engineering Journal (authored by Shiyu Zhou)
  • Sandwich-structured polymers with electrospun boron nitrides layers as high-temperature energy storage dielectrics, 2020, Chemical Engineering Journal (authored by Guang Liu)

The research topics covered in these publications include defect engineering in electroceramics, dielectric performance enhancement for energy storage, polymer composites with two-dimensional nanosheets, and high-temperature energy storage dielectrics.

Best Publications

  • Excellent energy storage performance and thermal property of polymer-based composite induced by multifunctional one-dimensional nanofibers oriented in-plane direction

    Yue Zhang;Changhai Zhang;Yu Feng;Tiandong Zhang

  • Enhanced dielectric properties of PVDF-HFP/BaTiO3-nanowire composites induced by interfacial polarization and wire-shape

    Y. Feng;W. L. Li;Y. F. Hou;Y. Yu

  • Defects and Aliovalent Doping Engineering in Electroceramics.

    Yu Feng;Yu Feng;Yu Feng;Jiagang Wu;Qingguo Chi;Weili Li

  • Recent Advances in Multilayer-Structure Dielectrics for Energy Storage Application.

    Mengjia Feng;Yu Feng;Tiandong Zhang;Jinglei Li

  • Ultrahigh discharge efficiency and excellent energy density in oriented core-shell nanofiber-polyetherimide composites

    Yu Feng;Yinhua Zhou;Tiandong Zhang;Changhai Zhang

  • High energy density, temperature stable lead-free ceramics by introducing high entropy perovskite oxide

    Shiyu Zhou;Shiyu Zhou;Yongping Pu;Xuqing Zhang;Yu Shi

  • Sandwich-structured polymers with electrospun boron nitrides layers as high-temperature energy storage dielectrics

    Guang Liu;Tiandong Zhang;Yu Feng;Yongquan Zhang

  • Defect dipole induced large recoverable strain and high energy-storage density in lead-free Na0.5Bi0.5TiO3-based systems

    Wenping Cao;Weili Li;Yu Feng;Terigele Bai

  • Polymer dielectric films exhibiting superior high-temperature capacitive performance by utilizing an inorganic insulation interlayer

    Unknown

  • Mn doping to enhance energy storage performance of lead-free 0.7NBT-0.3ST thin films with weak oxygen vacancies

    Yulei Zhang;Weili Li;Wenping Cao;Yu Feng

  • High-Energy Storage Density and Efficiency of (1−x)[0.94 NBT–0.06 BT]–xST Lead-Free Ceramics

    Wenping Cao;Weili Li;Tiandong Zhang;Jie Sheng

  • Low-cost MgFexMn2-xO4 cathode materials for high-performance aqueous rechargeable magnesium-ion batteries

    Yongquan Zhang;Yongquan Zhang;Guang Liu;Changhai Zhang;Qingguo Chi

  • Energy storage enhancement of P(VDF-TrFE-CFE)-based composites with double-shell structured BZCT nanofibers of parallel and orthogonal configurations

    Yue Zhang;Changhai Zhang;Yu Feng;Tiandong Zhang

  • Excellent energy storage density and efficiency in blend polymer-based composites by design of core-shell structured inorganic fibers and sandwich structured films

    Yang Cui;Tiandong Zhang;Yu Feng;Changhai Zhang

  • Defect Engineering of Lead-Free Piezoelectrics with High Piezoelectric Properties and Temperature-Stability

    Yu Feng;Yu Feng;Wei-Li Li;Dan Xu;Yu-Long Qiao

  • Core–shell structured BaTiO3@carbon hybrid particles for polymer composites with enhanced dielectric performance

    Y. Feng;Y. Feng;W. L. Li;J. P. Wang;J. H. Yin

  • Metal-organic Framework/Polyimide composite with enhanced breakdown strength for flexible capacitor

    Yanpeng Li;Jinghua Yin;Yu Feng;Jialong Li

  • High-temperature all-organic energy storage dielectric with the performance of self-adjusting electric field distribution

    Guang Liu;Yu Feng;Tiandong Zhang;Changhai Zhang

  • High dielectric constant and low loss of polymeric dielectric composites filled by carbon nanotubes adhering BaTiO3 hybrid particles

    Z. D. Liu;Y. Feng;W. L. Li

  • A blended binary composite of poly(vinylidene fluoride) and poly(methyl methacrylate) exhibiting excellent energy storage performances

    Qingguo Chi;Yinhua Zhou;Chao Yin;Yue Zhang

  • Orientation-Dependent Raman Spectroscopy of Single Wurtzite CdS Nanowires

    H. M. Fan;X. F. Fan;Z. H. Ni;Z. X. Shen

  • Microstructure evolution effect on high-temperature thermal conductivity of LDPE/BNNS investigated by in-situ SAXS

    Jia-long Li;Jing-hua Yin;Tianyi Ji;Yu Feng

Frequent Co-Authors

Weidong Fei
Weidong Fei Harbin Institute of Technology
Dianxue Cao
Dianxue Cao Harbin Engineering University
Jiagang Wu
Jiagang Wu Sichuan University
Zhenhua Ni
Zhenhua Ni Southeast University
Dawei Wang
Dawei Wang Chinese Academy of Sciences
Long Qing Chen
Long Qing Chen Pennsylvania State University
Yongping Pu
Yongping Pu Shaanxi University of Science and Technology
Xiaofeng Fan
Xiaofeng Fan Jilin University
Kai Zhu
Kai Zhu Harbin Engineering University
Zhi-Min Dang
Zhi-Min Dang Tsinghua University

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