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D-Index & Metrics

Materials Science

D-Index
60
Citations
10843
World Ranking
7175
National Ranking
2105

Overview

Gaojie Xu is affiliated with the Chinese Academy of Sciences in China and has contributed extensively to research in the field of engineering, with a strong focus on electrical and electronic engineering. Their work engages deeply with materials chemistry and mechanical engineering aspects related to battery technologies and automotive engineering.

Their research interests predominantly revolve around advancements in battery materials and technologies. Key topics include:

  • Advancements in Battery Materials
  • Advanced Battery Materials and Technologies
  • Advanced Battery Technologies Research
  • Electromagnetic wave absorption materials
  • Additive Manufacturing and 3D Printing Technologies
  • Advanced Antenna and Metasurface Technologies
  • Advanced battery technologies research

Gaojie Xu has frequently published in prominent academic venues. The main publication outlets include:

  • Advanced Energy Materials
  • SSRN Electronic Journal
  • Angewandte Chemie International Edition
  • Angewandte Chemie
  • Energy storage materials

Several co-authors frequently collaborate with Gaojie Xu, highlighting a network of research partnerships. These fellow researchers include:

  • Guanglei Cui
  • Xiaofan Du
  • Shanmu Dong
  • Jiedong Li
  • Zili Cui

Representative recent papers by Gaojie Xu include:

  • "LiDFOB Initiated In Situ Polymerization of Novel Eutectic Solution Enables Room-Temperature Solid Lithium Metal Batteries," 2020, Advanced Science
  • "Challenges of prelithiation strategies for next generation high energy lithium-ion batteries," 2022, Energy storage materials
  • "Revealing the multilevel thermal safety of lithium batteries," 2020, Energy storage materials
  • "In situ-polymerized lithium salt as a polymer electrolyte for high-safety lithium metal batteries," 2023, Energy & Environmental Science
  • "Nonaqueous Liquid Electrolytes for Sodium-Ion Batteries: Fundamentals, Progress and Perspectives," 2023, Advanced Energy Materials

The body of work by Gaojie Xu is concentrated in the engineering domain, with over 280 publications. Their subfields of study encompass segments such as electrical and electronic engineering, automotive engineering, electronic, optical and magnetic materials, mechanical engineering, and materials chemistry. The substantial number of works related to advanced battery technologies illustrates a focused engagement with energy storage and battery safety research.

Best Publications

  • Strategies for improving the cyclability and thermo-stability of LiMn2O4-based batteries at elevated temperatures

    Gaojie Xu;Zhihong Liu;Chuanjian Zhang;Guanglei Cui

  • A multifunctional polymer electrolyte enables ultra-long cycle-life in a high-voltage lithium metal battery

    Tiantian Dong;Jianjun Zhang;Gaojie Xu;Jingchao Chai

  • Properties of oriented carbon fiber/polyamide 12 composite parts fabricated by fused deposition modeling

    Guangxin Liao;Guangxin Liao;Zhixiang Li;Yuchuan Cheng;Dingding Xu

  • Thermoelectric properties of the Bi- and Na-substituted Ca3Co4O9 system

    Gaojie Xu;Ryoji Funahashi;Masahiro Shikano;Ichiro Matsubara

  • Lithium Ion Capacitors in Organic Electrolyte System: Scientific Problems, Material Development, and Key Technologies

    Pengxian Han;Gaojie Xu;Xiaoqi Han;Jingwen Zhao

  • Formulation of Blended-Lithium-Salt Electrolytes for Lithium Batteries.

    Gaojie Xu;Xuehui Shangguan;Shanmu Dong;Xinhong Zhou

  • Prescribing Functional Additives for Treating the Poor Performances of High-Voltage (5 V-class) LiNi0.5Mn1.5O4/MCMB Li-Ion Batteries

    Gaojie Xu;Chunguang Pang;Chunguang Pang;Bingbing Chen;Jun Ma

  • Challenges of Prelithiation Strategies for Next Generation High Energy Lithium-Ion Batteries

    Unknown

  • Additive-Assisted Novel Dual-Salt Electrolyte Addresses Wide Temperature Operation of Lithium-Metal Batteries.

    Xuehui Shangguan;Gaojie Xu;Zili Cui;Qinglei Wang

  • Mesoporous NiCo2O4 nanoflakes as electrocatalysts for rechargeable Li–O2 batteries

    Lixue Zhang;Shengliang Zhang;Kejun Zhang;Gaojie Xu

  • A Temperature‐Responsive Electrolyte Endowing Superior Safety Characteristic of Lithium Metal Batteries

    Qian Zhou;Shanmu Dong;Zhaolin Lv;Gaojie Xu

  • Thermal runaway routes of large-format lithium-sulfur pouch cell batteries

    Unknown

  • Few-layer graphene obtained by electrochemical exfoliation of graphite cathode

    Ming Zhou;Jie Tang;Qian Cheng;Gaojie Xu

  • Overcoming the Challenges of 5 V Spinel LiNi0.5Mn1.5O4 Cathodes with Solid Polymer Electrolytes

    Hantao Xu;Hantao Xu;Huanrui Zhang;Jun Ma;Gaojie Xu

  • Thermal and mechanical properties of polyamide 12/graphene nanoplatelets nanocomposites and parts fabricated by fused deposition modeling

    Dingchun Zhu;Yuanyuan Ren;Guangxin Liao;Shenglong Jiang

  • LiDFOB Initiated In Situ Polymerization of Novel Eutectic Solution Enables Room-Temperature Solid Lithium Metal Batteries.

    Han Wu;Han Wu;Ben Tang;Xiaofan Du;Jianjun Zhang

  • In-Situ Polymerized Lithium Salt as Polymer Electrolyte Enabling High Safety Lithium Metal Batteries

    Unknown

  • A biomass based free radical scavenger binder endowing a compatible cathode interface for 5 V lithium-ion batteries

    Yue Ma;Kai Chen;Jun Ma;Gaojie Xu

  • Polymer Electrolytes for High Energy Density Ternary Cathode Material-Based Lithium Batteries

    Huanrui Zhang;Jianjun Zhang;Jun Ma;Gaojie Xu

  • Revealing the multilevel thermal safety of lithium batteries

    Gaojie Xu;Lang Huang;Chenglong Lu;Xinhong Zhou

  • High-temperature transport properties of Nb and Ta substituted CaMnO3 system

    Gaojie Xu;Ryoji Funahashi;Qirong Pu;Biao Liu

  • A sustainable and rigid-flexible coupling cellulose-supported poly (propylene carbonate) polymer electrolyte towards 5 V high voltage lithium batteries

    Jianghui Zhao;Jianghui Zhao;Jianjun Zhang;Pu Hu;Jun Ma

  • Li4Ti5O12-based energy conversion and storage systems: Status and prospects

    Gaojie Xu;Pengxian Han;Shanmu Dong;Haisheng Liu

  • An In Situ Interface Reinforcement Strategy Achieving Long Cycle Performance of Dual‐Ion Batteries

    Xiaoqi Han;Gaojie Xu;Zhonghua Zhang;Xiaofan Du

Frequent Co-Authors

Guanglei Cui
Guanglei Cui Chinese Academy of Sciences
Xinhong Zhou
Xinhong Zhou Qingdao University of Science and Technology
Jun Jiang
Jun Jiang University of Science and Technology of China
Shanmu Dong
Shanmu Dong Chinese Academy of Sciences
Hongbin Cao
Hongbin Cao Chinese Academy of Sciences
Liquan Chen
Liquan Chen Chinese Academy of Sciences
Jun Ma
Jun Ma Harbin Institute of Technology
Jianjun Zhang
Jianjun Zhang Chinese Academy of Sciences
Ting Zhang
Ting Zhang Chinese Academy of Sciences
Jun Wang
Jun Wang University of Central Florida

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