Ya‐Xia Yin

2011–2022 年に発表

72
論文数
34,225
被引用数
72
h 指数
72
i10 指数

被引用数

Ya‐Xia Yin の年別被引用数2012 年: 被引用 18 件2013 年: 被引用 80 件2014 年: 被引用 130 件2015 年: 被引用 173 件2016 年: 被引用 229 件2017 年: 被引用 473 件2018 年: 被引用 601 件2019 年: 被引用 492 件2020 年: 被引用 450 件2021 年: 被引用 295 件2022 年: 被引用 145 件2023 年: 被引用 115 件2024 年: 被引用 79 件2025 年: 被引用 12 件

引用元

国・地域

この著者を引用した国・地域の世界地図中国: 引用元論文 1,283 件、この内訳の 44.8%アメリカ合衆国: 引用元論文 553 件、この内訳の 19.3%オーストラリア: 引用元論文 182 件、この内訳の 6.4%韓国: 引用元論文 105 件、この内訳の 3.7%ドイツ: 引用元論文 93 件、この内訳の 3.2%シンガポール: 引用元論文 92 件、この内訳の 3.2%カナダ: 引用元論文 87 件、この内訳の 3%イギリス: 引用元論文 73 件、この内訳の 2.5%香港: 引用元論文 53 件、この内訳の 1.8%日本: 引用元論文 53 件、この内訳の 1.8%スペイン: 引用元論文 33 件、この内訳の 1.2%フランス: 引用元論文 28 件、この内訳の 1%
0%44.8%その他 8.1%

分野

  • Engineering88.9%
  • Materials Science7.6%
  • Energy1%
  • Chemistry0.6%
  • Biochemistry, Genetics and Molecular Biology0.4%
  • Chemical Engineering0.3%
  • その他1.2%

トピック

  • Advancements in Battery Materials28.9%
  • Advanced Battery Materials and Technologies28.1%
  • Advanced Battery Technologies Research12%
  • Advanced battery technologies research7.8%
  • Supercapacitor Materials and Fabrication7.7%
  • Extraction and Separation Processes1.5%
  • その他14%

共著者

全論文

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  1. Subzero‐Temperature Cathode for a Sodium‐Ion Battery

    著者: , , , , , , , , , - Advanced Materials 2016 被引用: 527

  2. Upgrading traditional liquid electrolyte via in situ gelation for future lithium metal batteries

    著者: , , , , , , , , , , - Science Advances 2018 被引用: 545

  3. High-quality Prussian blue crystals as superior cathode materials for room-temperature sodium-ion batteries

    著者: , , , - Energy & Environmental Science 2014 被引用: 1,085

  4. Lithium–Sulfur Batteries: Electrochemistry, Materials, and Prospects

    著者: , , , - Angewandte Chemie International Edition 2013 被引用: 2,685

  5. Boron-doped sodium layered oxide for reversible oxygen redox reaction in Na-ion battery cathodes

    著者: , , , , , , , , , , , , , - Nature Communications 2021 被引用: 389

  6. Accommodating lithium into 3D current collectors with a submicron skeleton towards long-life lithium metal anodes

    著者: , , , , - Nature Communications 2015 被引用: 1,581

  7. Layered Oxide Cathodes for Sodium‐Ion Batteries: Phase Transition, Air Stability, and Performance

    著者: , , , - Advanced Energy Materials 2017 被引用: 944

  8. Ti‐Substituted NaNi0.5Mn0.5‐xTixO2 Cathodes with Reversible O3−P3 Phase Transition for High‐Performance Sodium‐Ion Batteries

    著者: , , , , , , , - Advanced Materials 2017 被引用: 457

  9. Designing Air-Stable O3-Type Cathode Materials by Combined Structure Modulation for Na-Ion Batteries

    著者: , , , , , , , , , , , , - Journal of the American Chemical Society 2017 被引用: 448

  10. A Stable Layered Oxide Cathode Material for High‐Performance Sodium‐Ion Battery

    著者: , , , , , , , , , , , , , - Advanced Energy Materials 2019 被引用: 291

  11. An Artificial Solid Electrolyte Interphase Layer for Stable Lithium Metal Anodes

    著者: , , , - Advanced Materials 2015 被引用: 1,561

  12. A High‐Energy Room‐Temperature Sodium‐Sulfur Battery

    著者: , , , - Advanced Materials 2013 被引用: 627

  13. Graphitized Carbon Fibers as Multifunctional 3D Current Collectors for High Areal Capacity Li Anodes

    著者: , , , , , , - Advanced Materials 2017 被引用: 577

  14. Na + /vacancy disordering promises high-rate Na-ion batteries

    著者: , , , , , , , , - Science Advances 2018 被引用: 526

  15. Self‐Assembled Nanocomposite of Silicon Nanoparticles Encapsulated in Graphene through Electrostatic Attraction for Lithium‐Ion Batteries

    著者: , , , - Advanced Energy Materials 2012 被引用: 501

  16. Extended Electrochemical Window of Solid Electrolytes via Heterogeneous Multilayered Structure for High‐Voltage Lithium Metal Batteries

    著者: , , , , , , , , , - Advanced Materials 2019 被引用: 461

  17. Free-Standing Hollow Carbon Fibers as High-Capacity Containers for Stable Lithium Metal Anodes

    著者: , , , , , , , - Joule 2017 被引用: 391

  18. Sodium iron hexacyanoferrate with high Na content as a Na-rich cathode material for Na-ion batteries

    著者: , , , , - Nano Research 2014 被引用: 380

  19. Facile Synthesis of Blocky SiOx/C with Graphite‐Like Structure for High‐Performance Lithium‐Ion Battery Anodes

    著者: , , , - Advanced Functional Materials 2017 被引用: 340

  20. In Situ Electrochemical Regeneration of Degraded LiFePO4 Electrode with Functionalized Prelithiation Separator

    著者: , , , , , , , , - Advanced Energy Materials 2022 被引用: 281

  21. Mitigating the Large‐Volume Phase Transition of P2‐Type Cathodes by Synergetic Effect of Multiple Ions for Improved Sodium‐Ion Batteries

    著者: , , , , , , , , , , , , , - Advanced Energy Materials 2022 被引用: 279

  22. Elemental Selenium for Electrochemical Energy Storage

    著者: , , - The Journal of Physical Chemistry Letters 2014 被引用: 262

  23. Layered Oxide Cathodes Promoted by Structure Modulation Technology for Sodium‐Ion Batteries

    著者: , , , , , , , , , , , , - Advanced Functional Materials 2020 被引用: 252

  24. A P2/P3 composite layered cathode for high-performance Na-ion full batteries

    著者: , , , , , , , - Nano Energy 2018 被引用: 234