World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
49
Citations
7152
World Ranking
4424
National Ranking
881

Overview

Chengyu Wang is affiliated with Northeast Forestry University in China and has contributed extensively to the fields of Materials Science and Engineering. Their research spans multiple subfields, including Materials Chemistry, Mechanical Engineering, Biomedical Engineering, Biomaterials, and Renewable Energy, Sustainability and the Environment.

Their work focuses on several core topics such as Advanced Sensor and Energy Harvesting Materials, Surface Modification and Superhydrophobicity, Solar-Powered Water Purification Methods, Advanced Cellulose Research Studies, Aerogels and Thermal Insulation, Advanced Photocatalysis Techniques, and Phase Change Materials Research.

Chengyu Wang's recent papers include:

  • Natural sponge-like wood-derived aerogel for solar-assisted adsorption and recovery of high-viscous crude oil, 2020, Chemical Engineering Journal
  • Wood-based composite phase change materials with self-cleaning superhydrophobic surface for thermal energy storage, 2020, Applied Energy
  • Enhanced wood-derived photothermal evaporation system by in-situ incorporated lignin carbon quantum dots, 2020, Chemical Engineering Journal
  • Application of biodegradable cellulose-based biomass materials in wastewater treatment, 2021, Environmental Pollution
  • Full-wood photoluminescent and photothermic materials for thermal energy storage, 2020, Chemical Engineering Journal

Frequent coauthors in their research collaborations include:

  • Haiyue Yang
  • Xiaohan Sun
  • Yudong Li
  • Shih-Hsin Ho
  • Zishuai Jiang

Chengyu Wang's publications appear regularly in several scientific journals. The most frequent venues for their work are:

  • SSRN Electronic Journal
  • Chemical Engineering Journal
  • Carbohydrate Polymers
  • ACS Applied Materials & Interfaces
  • International Journal of Biological Macromolecules

Best Publications

  • Fabrication of superhydrophobic/superoleophilic cotton for application in the field of water/oil separation.

    Feng Liu;Miaolian Ma;Deli Zang;Zhengxin Gao

  • Fabrication of superhydrophobic wood surface by a sol–gel process

    Shuliang Wang;Changyu Liu;Guochao Liu;Ming Zhang

  • Magnetic Nanoscale Zerovalent Iron Assisted Biochar: Interfacial Chemical Behaviors and Heavy Metals Remediation Performance

    Shishu Zhu;Shih-Hsin Ho;Xiaochen Huang;Dawei Wang

  • Composite phase change materials with good reversible thermochromic ability in delignified wood substrate for thermal energy storage

    Haiyue Yang;Haiyue Yang;Yazhou Wang;Yazhou Wang;Qianqian Yu;Qianqian Yu;Guoliang Cao;Guoliang Cao

  • Fabrication of coral-like superhydrophobic coating on filter paper for water–oil separation

    Ming Zhang;Chengyu Wang;Shuliang Wang;Yunling Shi

  • Natural sponge-like wood-derived aerogel for solar-assisted adsorption and recovery of high-viscous crude oil

    Weixiang Chao;Shaobin Wang;Yudong Li;Guoliang Cao

  • Fabrication of superhydrophobic cotton textiles for water–oil separation based on drop-coating route

    Ming Zhang;Chengyu Wang;Shuliang Wang;Jian Li

  • Low-cost, three-dimension, high thermal conductivity, carbonized wood-based composite phase change materials for thermal energy storage

    Haiyue Yang;Yazhou Wang;Qianqian Yu;Guoliang Cao

  • Wood-based composite phase change materials with self-cleaning superhydrophobic surface for thermal energy storage

    Haiyue Yang;Siyuan Wang;Xin Wang;Weixiang Chao

  • Multifunctional wood based composite phase change materials for magnetic-thermal and solar-thermal energy conversion and storage

    Haiyue Yang;Weixiang Chao;Xin Di;Zhaolin Yang

  • Superhydrophobic coating on fiberglass cloth for selective removal of oil from water

    Deli Zang;Feng Liu;Ming Zhang;Xiaogang Niu

  • Enhanced wood-derived photothermal evaporation system by in-situ incorporated lignin carbon quantum dots

    Weixiang Chao;Yudong Li;Xiaohan Sun;Guoliang Cao

  • Fabrication of superhydrophobic wood surfaces via a solution-immersion process

    Changyu Liu;Shuliang Wang;Junyou Shi;Chengyu Wang

  • A facile method to fabricate superhydrophobic cotton fabrics

    Ming Zhang;Shuliang Wang;Chengyu Wang;Jian Li

  • Improvement of mechanical robustness of the superhydrophobic wood surface by coating PVA/SiO2 composite polymer

    Feng Liu;Shuliang Wang;Ming Zhang;Miaolian Ma

  • Synthesis and characterization of superhydrophobic wood surfaces

    Chengyu Wang;Cheng Piao;Cran Lucas

  • A polyethylene glycol/hydroxyapatite composite phase change material for thermal energy storage

    Yazhou Wang;Yazhou Wang;Daxin Liang;Daxin Liang;Feng Liu;Feng Liu;Wenbo Zhang;Wenbo Zhang

  • Application of biodegradable cellulose-based biomass materials in wastewater treatment.

    Zishuai Jiang;Shih-Hsin Ho;Xin Wang;Yudong Li

  • Photocatalytic TiO2 films prepared by chemical vapor deposition at atmosphere pressure

    Unknown

  • Fabrication of a superhydrophobic surface on a wood substrate

    Shuliang Wang;Junyou Shi;Changyu Liu;Cheng Xie

  • Full-wood photoluminescent and photothermic materials for thermal energy storage

    Haiyue Yang;Yushan Liu;Jian Li;Chengyu Wang

  • Synthesis and characterization of hydrophobic calcium carbonate particles via a dodecanoic acid inducing process

    Chengyu Wang;Cheng Piao;Xianglin Zhai;F. Neal Hickman

  • Fabrication of cotton fabric with superhydrophobicity and flame retardancy

    Ming Zhang;Chengyu Wang

Frequent Co-Authors

Jian Li
Jian Li Northeast Forestry University
Ming Zhang
Ming Zhang China Jiliang University
Shih-Hsin Ho
Shih-Hsin Ho Harbin Institute of Technology
Jo Shu Chang
Jo Shu Chang National Cheng Kung University
Wei-Hsin Chen
Wei-Hsin Chen National Cheng Kung University
Xiaoguang Duan
Xiaoguang Duan University of Adelaide
Jingquan Han
Jingquan Han Nanjing Forestry University
Nanqi Ren
Nanqi Ren Harbin Institute of Technology
Shaobin Wang
Shaobin Wang University of Adelaide
Yiqiang Wu
Yiqiang Wu Central South University of Forestry and Technology

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