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Materials Science

D-Index
49
Citations
10671
World Ranking
10432
National Ranking
2921

Overview

Hongda Du is affiliated with Tsinghua University in China and works primarily in the fields of Engineering and Materials Science. Their research spans various subfields including Materials Chemistry, Mechanical Engineering, Electrical and Electronic Engineering, Electronic, Optical and Magnetic Materials, and Polymers and Plastics.

The scientist has contributed to advancing understanding in several key research topics, notably:

  • Graphene research and applications
  • Thermal properties of materials
  • Advancements in Battery Materials
  • Supercapacitor Materials and Fabrication
  • Heat Transfer and Optimization
  • Fiber-reinforced polymer composites
  • Advanced battery technologies research

Hongda Du's publication record includes papers in numerous scientific journals. Frequent publication venues include:

  • SSRN Electronic Journal
  • Thermochimica Acta
  • Applied Surface Science
  • Advanced Science
  • Ceramics International

Some notable recent papers authored or co-authored by Hongda Du are:

  • Unveiling the Axial Hydroxyl Ligand on FeN4C Electrocatalysts and Its Impact on the pH-Dependent Oxygen Reduction Activities and Poisoning Kinetics, 2020, Advanced Science
  • Polymer composites with enhanced thermal conductivity via oriented boron nitride and alumina hybrid fillers assisted by 3-D printing, 2020, Ceramics International
  • Atomic Imaging of Subsurface Interstitial Hydrogen and Insights into Surface Reactivity of Palladium Hydrides, 2020, Angewandte Chemie International Edition
  • Enhanced thermal conductivity of alumina and carbon fibre filled composites by 3-D printing, 2020, Thermochimica Acta
  • Environment-friendly preparation of exfoliated graphite and functional graphite sheets, 2020, Journal of Materiomics

The scientist frequently collaborates with several co-authors, including:

  • Feiyu Kang
  • Lin Gan
  • Jia Li
  • Baohua Li
  • Yan-Bing He

The body of work by Hongda Du reflects a focus on materials science innovations and engineering applications, particularly in relation to thermal management, composite materials, and energy storage technologies. Their research outputs contribute to understanding material behaviors and enhancing performance in advanced material systems.

Best Publications

  • Energetic Zinc Ion Chemistry: The Rechargeable Zinc Ion Battery

    Chengjun Xu;Baohua Li;Hongda Du;Feiyu Kang

  • Facile synthesis of Li4Ti5O12/C composite with super rate performance

    Baohua Li;Cuiping Han;Yan-Bing He;Cheng Yang

  • Novel gel polymer electrolyte for high- performance lithium-sulfur batteries

    Ming Liu;Dong Zhou;Yanbing He;Yongzhu Fu

  • Gassing in Li(4)Ti(5)O(12)-based batteries and its remedy.

    Yan-Bing He;Yan-Bing He;Baohua Li;Ming Liu;Chen Zhang

  • In Situ Synthesis of a Hierarchical All-Solid-State Electrolyte Based on Nitrile Materials for High-Performance Lithium-Ion Batteries

    Dong Zhou;Yan-Bing He;Ruliang Liu;Ming Liu

  • Preparation and Characterization of MnO2/acid-treated CNT Nanocomposites for Energy Storage with Zinc Ions

    Dongwei Xu;Baohua Li;Chunguang Wei;Yan-Bing He

  • Recent progress on manganese dioxide based supercapacitors

    Chengjun Xu;Feiyu Kang;Baohua Li;Hongda Du

  • Preparation and characterization of manganese dioxides with nano-sized tunnel structures for zinc ion storage

    Chunguang Wei;Chengjun Xu;Baohua Li;Hongda Du

  • Electrochemical properties of nanosized hydrous manganese dioxide synthesized by a self-reacting microemulsion method

    Chengjun Xu;Baohua Li;Hongda Du;Feiyu Kang

  • A robust strategy for crafting monodisperse Li4Ti5O12 nanospheres as superior rate anode for lithium ion batteries

    Chao Wang;Shuan Wang;Linkai Tang;Yan-Bing He

  • Graphite blocks with preferred orientation and high thermal conductivity

    Guanming Yuan;Xuanke Li;Zhijun Dong;Aidan Westwood

  • Porous graphitic carbons prepared by combining chemical activation with catalytic graphitization

    Dengyun Zhai;Hongda Du;Baohua Li;Yuan Zhu

  • Multilayered silicon embedded porous carbon/graphene hybrid film as a high performance anode

    Junxiong Wu;Xianying Qin;Haoran Zhang;Yan-Bing He

  • Carbon coating to suppress the reduction decomposition of electrolyte on the Li4Ti5O12 electrode

    Yan-Bing He;Feng Ning;Baohua Li;Quan-Sheng Song

  • Unveiling the Axial Hydroxyl Ligand on Fe-N4-C Electrocatalysts and Its Impact on the pH-Dependent Oxygen Reduction Activities and Poisoning Kinetics.

    Xin Yang;Dongsheng Xia;Yongqiang Kang;Hongda Du

  • Asymmetric Activated Carbon-Manganese Dioxide Capacitors in Mild Aqueous Electrolytes Containing Alkaline-Earth Cations

    Chengjun Xu;Hongda Du;Baohua Li;Feiyu Kang

  • Reversible Insertion Properties of Zinc Ion into Manganese Dioxide and Its Application for Energy Storage

    Chengjun Xu;Hongda Du;Baohua Li;Feiyu Kang

  • Electrospun core–shell silicon/carbon fibers with an internal honeycomb-like conductive carbon framework as an anode for lithium ion batteries

    Haoran Zhang;Xianying Qin;Junxiong Wu;Yan-Bing He

  • Enhanced mid-temperature thermoelectric performance of textured SnSe polycrystals made of solvothermally synthesized powders

    Yiwen Li;Fu Li;Jinfeng Dong;Zhenhua Ge

  • Carbon aerogel supported Pt–Ru catalysts for using as the anode of direct methanol fuel cells

    Hongda Du;Baohua Li;Feiyu Kang;Ruowen Fu

  • Capacitive Behavior and Charge Storage Mechanism of Manganese Dioxide in Aqueous Solution Containing Bivalent Cations

    Chengjun Xu;Hongda Du;Baohua Li;Feiyu Kang

Frequent Co-Authors

Feiyu Kang
Feiyu Kang Tsinghua University
Baohua Li
Baohua Li Tsinghua University
Yan-Bing He
Yan-Bing He Tsinghua University
Quan-Hong Yang
Quan-Hong Yang Tianjin University
Xianying Qin
Xianying Qin Tsinghua University
Ming Liu
Ming Liu Hong Kong University of Science and Technology
Wei Lv
Wei Lv Tsinghua University
Dong Zhou
Dong Zhou Chinese Academy of Sciences
Wenhui Duan
Wenhui Duan Tsinghua University
Cuiping Han
Cuiping Han Shenzhen Institutes of Advanced Technology

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