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Xuezhang Xiao

Xuezhang Xiao

D-Index & Metrics

Materials Science

D-Index
50
Citations
9242
World Ranking
10223
National Ranking
2868

Overview

Xuezhang Xiao is a researcher based at Zhejiang University in China, with a primary focus on materials science and engineering. Their research output spans a wide range of topics within these fields, reflecting a broad and interdisciplinary approach to scientific inquiry.

Their recent publications include notable work such as "Ligand-channel-enabled ultrafast Li-ion conduction" (2024, Nature), "50C Fast-Charge Li-Ion Batteries using a Graphite Anode" (2022, Advanced Materials), "Multifunctional solvent molecule design enables high-voltage Li-ion batteries" (2023, Nature Communications), "Molecular-docking electrolytes enable high-voltage lithium battery chemistries" (2024, Nature Chemistry), and "Toward the fast and durable alkaline hydrogen oxidation reaction on ruthenium" (2022, Energy & Environmental Science).

Xuezhang Xiao collaborates frequently with a core group of coauthors, including Lixin Chen, Panpan Zhou, Xiulin Fan, Jiacheng Qi, and Ruhong Li. These collaborations contribute to a diverse range of research projects and publications.

Their work has been published extensively in several scientific venues, with recurring contributions to:

  • Chemical Engineering Journal
  • International Journal of Hydrogen Energy
  • Journal of Alloys and Compounds
  • Advanced Materials
  • Journal of Energy Chemistry

The main fields of study for Xiao are identified as materials science and engineering, with significant involvement in subfields that include materials chemistry, electrical and electronic engineering, energy engineering and power technology, catalysis, and mechanical engineering.

Core research topics explored by Xiao include:

  • Hydrogen Storage and Materials
  • Hybrid Renewable Energy Systems
  • Nuclear Materials and Properties
  • Ammonia Synthesis and Nitrogen Reduction
  • Advancements in Battery Materials
  • Advanced Battery Materials and Technologies
  • Fusion materials and technologies

This profile demonstrates Xiao's multidisciplinary approach to materials science challenges, emphasizing energy storage and conversion technologies, catalysts, and the development of advanced battery materials. Their body of work contributes to expanding knowledge in these areas through collaborations and publications in prominent scientific journals.

Best Publications

  • All-temperature batteries enabled by fluorinated electrolytes with non-polar solvents

    Xiulin Fan;Xiulin Fan;Xiao Ji;Long Chen;Ji Chen

  • Ligand-channel-enabled ultrafast Li-ion conduction.

    Unknown

  • 50C Fast‐Charge Li‐Ion Batteries using a Graphite Anode

    Unknown

  • Novel 1D carbon nanotubes uniformly wrapped nanoscale MgH2 for efficient hydrogen storage cycling performances with extreme high gravimetric and volumetric capacities

    Meijia Liu;Shuchun Zhao;Xuezhang Xiao;Xuezhang Xiao;Man Chen

  • Multifunctional solvent molecule design enables high-voltage Li-ion batteries

    Unknown

  • Molecular-docking electrolytes enable high-voltage lithium battery chemistries

    Unknown

  • Low-Temperature Combustion-Synthesized Nickel Oxide Thin Films as Hole-Transport Interlayers for Solution-Processed Optoelectronic Devices

    Sai Bai;Motao Cao;Yizheng Jin;Xinliang Dai

  • ZIF-67 derived Co@CNTs nanoparticles: Remarkably improved hydrogen storage properties of MgH2 and synergetic catalysis mechanism

    Meijia Liu;Xuezhang Xiao;Shuchun Zhao;Sina Saremi-Yarahmadi

  • Facile synthesis of Co/Pd supported by few-walled carbon nanotubes as an efficient bidirectional catalyst for improving the low temperature hydrogen storage properties of magnesium hydride

    Meijia Liu;Xuezhang Xiao;Xuezhang Xiao;Shuchun Zhao;Man Chen

  • Excellent catalysis of TiO2 nanosheets with high-surface-energy {001} facets on the hydrogen storage properties of MgH2.

    Meng Zhang;Xuezhang Xiao;Xuezhang Xiao;Xinwei Wang;Man Chen

  • Superior de/hydrogenation performances of MgH2 catalyzed by 3D flower-like TiO2@C nanostructures

    Meng Zhang;Xuezhang Xiao;Xuezhang Xiao;Bosang Luo;Meijia Liu

  • Enhanced hydrogen storage properties of MgH2 with numerous hydrogen diffusion channels provided by Na2Ti3O7 nanotubes

    Liuting Zhang;Liuting Zhang;Lixin Chen;Xiulin Fan;Xiulin Fan;Xuezhang Xiao

  • Toward Fast and Durable Alkaline Hydrogen Oxidation Reaction on Ruthenium

    Unknown

  • Transition metal (Co, Ni) nanoparticles wrapped with carbon and their superior catalytic activities for the reversible hydrogen storage of magnesium hydride

    Xu Huang;Xuezhang Xiao;Wei Zhang;Xiulin Fan

  • Diluent decomposition-assisted formation of LiF-rich solid–electrolyte interfaces enables high-energy Li-metal batteries

    Unknown

  • Enhanced hydriding–dehydriding performance of 2LiBH4–MgH2 composite by the catalytic effects of transition metal chlorides

    Jie Shao;Xuezhang Xiao;Lixin Chen;Xiulin Fan

  • In situ synthesis of SnO2 nanoparticles encapsulated in micro/mesoporous carbon foam as a high-performance anode material for lithium ion batteries

    Xiulin Fan;Xiulin Fan;Jie Shao;Xuezhang Xiao;Xinhua Wang

  • Carbon encapsulated 3D hierarchical Fe3O4 spheres as advanced anode materials with long cycle lifetimes for lithium-ion batteries

    Xiulin Fan;Jie Shao;Xuezhang Xiao;Lixin Chen

  • Remarkably Improved Hydrogen Storage Performance of MgH2 Catalyzed by Multivalence NbHx Nanoparticles

    Liuting Zhang;Xuezhang Xiao;Chenchen Xu;Jiaguang Zheng

  • Synergistic Catalytic Activity of Porous Rod-like TMTiO3 (TM = Ni and Co) for Reversible Hydrogen Storage of Magnesium Hydride

    Xu Huang;Xuezhang Xiao;Xuancheng Wang;Chuntao Wang

  • Novel AgPd hollow spheres anchored on graphene as an efficient catalyst for dehydrogenation of formic acid at room temperature

    Yiqun Jiang;Xiulin Fan;Xuezhang Xiao;Teng Qin

  • Remarkable hydrogen desorption properties and mechanisms of the Mg2FeH6@MgH2 core–shell nanostructure

    Xuezhang Xiao;Chenchen Xu;Jie Shao;Liuting Zhang

  • Excellent synergistic catalytic mechanism of in-situ formed nanosized Mg2Ni and multiple valence titanium for improved hydrogen desorption properties of magnesium hydride

    Man Chen;Xuezhang Xiao;Meng Zhang;Meijia Liu

  • Enhanced hydrogen storage capacity and reversibility of LiBH4 nanoconfined in the densified zeolite-templated carbon with high mechanical stability

    Jie Shao;Xuezhang Xiao;Xiulin Fan;Xu Huang

  • Effect of rare earth doping on the hydrogen storage performance of Ti 1.02 Cr 1.1 Mn 0.3 Fe 0.6 alloy for hybrid hydrogen storage application

    Zhendong Yao;Langxia Liu;Xuezhang Xiao;Chuntao Wang

  • Development of Ti–Cr–Mn–Fe based alloys with high hydrogen desorption pressures for hybrid hydrogen storage vessel application

    Zhiwen Chen;Xuezhang Xiao;Lixin Chen;Xiulin Fan

Frequent Co-Authors

Xiulin Fan
Xiulin Fan Zhejiang University
Qidong Wang
Qidong Wang Zhejiang University
Li Wang
Li Wang Zhejiang University
Yunhao Lu
Yunhao Lu Zhejiang University
Jianfeng Mao
Jianfeng Mao University of Adelaide
Liang Chen
Liang Chen Chinese Academy of Sciences
Chunsheng Wang
Chunsheng Wang University of Maryland, College Park
Xiao Ji
Xiao Ji Huazhong University of Science and Technology
Fudong Han
Fudong Han Rensselaer Polytechnic Institute
Chenghua Sun
Chenghua Sun Swinburne University of Technology

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