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Materials Science

D-Index
47
Citations
9431
World Ranking
11060
National Ranking
119

Overview

Jiefang Zhu is affiliated with Uppsala University in Sweden and specializes primarily in the fields of Engineering and Materials Science. Their research focuses on various subfields including Electrical and Electronic Engineering, Materials Chemistry, Renewable Energy, Sustainability and the Environment, Automotive Engineering, and Electronic, Optical and Magnetic Materials.

The scientist's main research topics encompass advancements in battery materials, advanced battery materials and technologies, and advanced photocatalysis techniques. Other notable areas include advanced battery technologies research, copper-based nanomaterials and their applications, supercapacitor materials and fabrication, and ZnO doping and its properties.

Jiefang Zhu has contributed to a number of recent papers across various scholarly journals. Selected works include:

  • Sulfur and potassium co-doped graphitic carbon nitride for highly enhanced photocatalytic hydrogen evolution, 2020, Applied Catalysis B: Environmental
  • Redox Dual-Cocatalyst-Modified CdS Double-Heterojunction Photocatalysts for Efficient Hydrogen Production, 2020, ACS Applied Materials & Interfaces
  • Multifunctional surfactants for synthesizing high-performance energy storage materials, 2021, Energy storage materials
  • Graphitic carbon nitride heterojunction photocatalysts for solar hydrogen production, 2021, International Journal of Hydrogen Energy
  • Construction of silica-oxygen-borate hybrid networks on Al2O3-coated polyethylene separators realizing multifunction for high-performance lithium ion batteries, 2020, Journal of Power Sources

The distribution of their publications shows significant contributions to specialized scholarly venues. Frequent publication outlets include:

  • Chemical Engineering Journal
  • Journal of Colloid and Interface Science
  • Energy Technology
  • SSRN Electronic Journal
  • Energy storage materials

Among frequent coauthors collaborating with Jiefang Zhu are Yuanhui Zheng, Zhuyi Wang, Shuai Yuan, Liyi Shi, and Wenhao Sun, reflecting ongoing collaborative research partnerships.

Best Publications

  • Characterization of Fe–TiO2 photocatalysts synthesized by hydrothermal method and their photocatalytic reactivity for photodegradation of XRG dye diluted in water

    Jiefang Zhu;Wei Zheng;Bin He;Jinlong Zhang

  • Luminescence and Photocatalytic Activity of ZnO Nanocrystals: Correlation between Structure and Property

    Yuanhui Zheng;Chongqi Chen;Yingying Zhan;Xingyi Lin

  • Fe3+-TiO2 photocatalysts prepared by combining sol-gel method with hydrothermal treatment and their characterization

    Jiefang Zhu;Feng Chen;Jinlong Zhang;Haijun Chen

  • Hydrothermal doping method for preparation of Cr3+-TiO2 photocatalysts with concentration gradient distribution of Cr3+

    Jiefang Zhu;Zhigang Deng;Feng Chen;Jinlong Zhang

  • Photocatalytic Activity of Ag/ZnO Heterostructure Nanocatalyst: Correlation between Structure and Property

    Yuanhui Zheng;Chongqi Chen;Yingying Zhan;Xingyi Lin

  • Nanostructured materials for photocatalytic hydrogen production

    Jiefang Zhu;Michael Zäch

  • Network structured SnO2/ZnO heterojunction nanocatalyst with high photocatalytic activity.

    Lirong Zheng;Yuanhui Zheng;Chongqi Chen;Yingying Zhan

  • Challenges and development of composite solid-state electrolytes for high-performance lithium ion batteries

    Fei Lv;Zhuyi Wang;Liyi Shi;Jiefang Zhu

  • Sulfur and potassium co-doped graphitic carbon nitride for highly enhanced photocatalytic hydrogen evolution

    Lu Chen;Dongyan Zhu;Jintao Li;Xuxu Wang

  • Microwave-assisted one-step synthesis of polyacrylamide-metal (M = Ag, Pt, Cu) nanocomposites in ethylene glycol.

    Jie-Fang Zhu;Ying-Jie Zhu

  • Self-Assembly of PEI/SiO2 on Polyethylene Separators for Li-Ion Batteries with Enhanced Rate Capability

    Zhuyi Wang;Fangling Guo;Cheng Chen;Liyi Shi

  • A Facile Hydrothermal Route to Flower-Like Cobalt Hydroxide and Oxide

    Li-Xia Yang;Ying-Jie Zhu;Liang Li;Ling Zhang

  • Excellent rate capability and cycle life of Li metal batteries with ZrO2/POSS multilayer-assembled PE separators

    Mingming Chi;Liyi Shi;Zhuyi Wang;Jiefang Zhu

  • Layer-by-Layer Deposition of Organic-Inorganic Hybrid Multilayer on Microporous Polyethylene Separator to Enhance the Electrochemical Performance of Lithium-Ion Battery.

    Wuxia Xu;Zhuyi Wang;Liyi Shi;Ying Ma

  • ZnO based heterojunctions and their application in environmental photocatalysis

    Xiuquan Gu;Cuiyan Li;Shuai Yuan;Mingguo Ma

  • A facile approach to ZnO/CdS nanoarrays and their photocatalytic and photoelectrochemical properties

    Chunmei Li;Taha Ahmed;Mingguo Ma;Tomas Edvinsson

  • Facile preparation of robust and superhydrophobic materials for self-cleaning and oil/water separation

    Wen-Tao Cao;Yan-Jun Liu;Ming-Guo Ma;Ming-Guo Ma;Jie-Fang Zhu

  • Polyethylene separator activated by hybrid coating improving Li+ ion transference number and ionic conductivity for Li-metal battery

    Xufeng Mao;Liyi Shi;Haijiao Zhang;Zhuyi Wang

  • Simultaneous and Rapid Microwave Synthesis of Polyacrylamide−Metal Sulfide (Ag2S, Cu2S, HgS) Nanocomposites

    Jie-Fang Zhu;Ying-Jie Zhu;Ming-Guo Ma;Li-Xia Yang

  • Microwave-solvothermal synthesis of Fe3O4 magnetic nanoparticles

    Cuiyan Li;Cuiyan Li;Yajun Wei;Anti Liivat;Yihua Zhu

  • Synthesis of cellulose-calcium silicate nanocomposites in ethanol/water mixed solvents and their characterization

    Shu-Ming Li;Ning Jia;Jie-Fang Zhu;Ming-Guo Ma;Ming-Guo Ma

Frequent Co-Authors

Ming-Guo Ma
Ming-Guo Ma Beijing Forestry University
Run-Cang Sun
Run-Cang Sun Dalian Polytechnic University
Shuai Yuan
Shuai Yuan Shanghai University
Liyi Shi
Liyi Shi Shanghai University
Kristina Edström
Kristina Edström Uppsala University
Reza Younesi
Reza Younesi Uppsala University
Ying-Jie Zhu
Ying-Jie Zhu Chinese Academy of Sciences
Lining Sun
Lining Sun Shanghai University
Masakazu Anpo
Masakazu Anpo Osaka Metropolitan University
Shaowen Cao
Shaowen Cao Wuhan University of Technology

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