Standout Papers

The stability of P2-layered sodium transition metal oxides in ambient atmospheres 2020 2026 2022 2024355
  1. The stability of P2-layered sodium transition metal oxides in ambient atmospheres (2020)
    Wenhua Zuo, Jimin Qiu et al. Nature Communications
  2. Li-rich cathodes for rechargeable Li-based batteries: reaction mechanisms and advanced characterization techniques (2020)
    Wenhua Zuo, Mingzeng Luo et al. Energy & Environmental Science
  3. Enabling Fast Na+ Transfer Kinetics in the Whole‐Voltage‐Region of Hard‐Carbon Anodes for Ultrahigh‐Rate Sodium Storage (2022)
    Xiuping Yin, Zhixiu Lu et al. Advanced Materials
  4. Engineering Na+-layer spacings to stabilize Mn-based layered cathodes for sodium-ion batteries (2021)
    Wenhua Zuo, Xiangsi Liu et al. Nature Communications
  5. Sieving carbons promise practical anodes with extensible low-potential plateaus for sodium batteries (2022)
    Qi Li, Xiangsi Liu et al. National Science Review

Immediate Impact

1 by Nobel laureates 4 from Science/Nature 59 standout
Sub-graph 1 of 19

Citing Papers

Redefining closed pores in carbons by solvation structures for enhanced sodium storage
2025 Standout
Characterizing Electrode Materials and Interfaces in Solid-State Batteries
2025 Standout

Works of Xiangsi Liu being referenced

Understanding the failure process of sulfide-based all-solid-state lithium batteries via operando nuclear magnetic resonance spectroscopy
2023
Electrochemo‐Mechanical Effects on Structural Integrity of Ni‐Rich Cathodes with Different Microstructures in All Solid‐State Batteries
2021
and 5 more

Author Peers

Author Last Decade Papers Cites
Xiangsi Liu 3591 1259 982 53 3.7k
Yuxuan Xiang 3206 1325 689 63 3.3k
Ella Zinigrad 4216 2140 818 48 4.4k
Chao Xu 3328 1723 713 54 3.5k
Frédéric Aguesse 3309 1781 533 58 3.7k
Sunny Hy 4153 1605 1108 37 4.4k
Peng Lu 4413 2320 1007 39 4.7k
Yun Lu 3360 1281 1208 84 3.7k
Robert A. House 2878 699 847 39 3.0k
Enyue Zhao 2942 855 824 73 3.1k
Jeffrey Read 4064 1745 812 52 4.2k

All Works

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Rankless by CCL
2026