Yifan Li

2.2k total citations
64 papers, 1.7k citations indexed

About

Yifan Li is a scholar working on Electrical and Electronic Engineering, Renewable Energy, Sustainability and the Environment and Energy Engineering and Power Technology. According to data from OpenAlex, Yifan Li has authored 64 papers receiving a total of 1.7k indexed citations (citations by other indexed papers that have themselves been cited), including 44 papers in Electrical and Electronic Engineering, 27 papers in Renewable Energy, Sustainability and the Environment and 14 papers in Energy Engineering and Power Technology. Recurrent topics in Yifan Li's work include Advanced battery technologies research (29 papers), Electrocatalysts for Energy Conversion (22 papers) and Fuel Cells and Related Materials (22 papers). Yifan Li is often cited by papers focused on Advanced battery technologies research (29 papers), Electrocatalysts for Energy Conversion (22 papers) and Fuel Cells and Related Materials (22 papers). Yifan Li collaborates with scholars based in China, United States and United Kingdom. Yifan Li's co-authors include Feng‐Yuan Zhang, Gaoqiang Yang, Zhenye Kang, Jingke Mo, Shule Yu, Guido Bender, Johney B. Green, Derrick A. Talley, Bryan S. Pivovar and David A. Cullen and has published in prestigious journals such as Angewandte Chemie International Edition, Advanced Functional Materials and Advanced Energy Materials.

In The Last Decade

Yifan Li

60 papers receiving 1.7k citations

Peers — A (Enhanced Table)

Peers by citation overlap · career bar shows stage (early→late) cites · hero ref

Name h Career Trend Papers Cites
Yifan Li China 23 1.3k 734 674 342 318 64 1.7k
Shule Yu United States 24 1.4k 1.0× 898 1.2× 906 1.3× 350 1.0× 274 0.9× 39 1.8k
Maximilian Schalenbach Germany 18 1.5k 1.1× 710 1.0× 1.0k 1.5× 448 1.3× 339 1.1× 36 2.0k
D.S. Falcão Portugal 18 1.2k 0.9× 456 0.6× 901 1.3× 499 1.5× 278 0.9× 31 1.6k
Kohei Ito Japan 24 1.5k 1.2× 516 0.7× 748 1.1× 899 2.6× 459 1.4× 117 2.1k
Bryan S. Pivovar United States 24 2.0k 1.5× 588 0.8× 1.2k 1.8× 535 1.6× 343 1.1× 45 2.3k
Leonard J. Bonville United States 24 2.1k 1.6× 302 0.4× 1.5k 2.2× 591 1.7× 399 1.3× 107 2.4k
Sang-Kyung Kim South Korea 24 929 0.7× 242 0.3× 671 1.0× 427 1.2× 106 0.3× 74 1.3k
Rami Abouatallah Canada 19 2.1k 1.6× 563 0.8× 1.4k 2.1× 589 1.7× 419 1.3× 30 2.3k
S. Siracusano Italy 30 2.5k 1.8× 1.2k 1.6× 1.7k 2.6× 635 1.9× 518 1.6× 52 3.0k
Hyoung‐Juhn Kim South Korea 29 2.0k 1.5× 312 0.4× 1.5k 2.2× 497 1.5× 165 0.5× 53 2.3k

Countries citing papers authored by Yifan Li

Since Specialization
Citations

This map shows the geographic impact of Yifan Li's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by Yifan Li with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Yifan Li more than expected).

Fields of papers citing papers by Yifan Li

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Yifan Li. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by Yifan Li. The network helps show where Yifan Li may publish in the future.

Co-authorship network of co-authors of Yifan Li

This figure shows the co-authorship network connecting the top 25 collaborators of Yifan Li. A scholar is included among the top collaborators of Yifan Li based on the total number of citations received by their joint publications. Widths of edges represent the number of papers authors have co-authored together. Node borders signify the number of papers an author published with Yifan Li. Yifan Li is excluded from the visualization to improve readability, since they are connected to all nodes in the network.

All Works

20 of 20 papers shown
2.
Chen, Tingting, Yifan Li, Xin Ma, et al.. (2025). A combined process of reverse flotation and slurry electrolysis for step-by-step recovery of copper and gold from waste printed circuit boards. Waste Management. 198. 151–160. 2 indexed citations
3.
Li, Yifan, et al.. (2025). Surface modification of Bi2O3 and preparation of Bi2O3@Epoxy resin composites: structure, properties and application in γ-ray shielding. Journal of Materials Chemistry C. 13(17). 8650–8664. 1 indexed citations
4.
Li, Yifan, Jiahui Li, Wenhao Zhang, et al.. (2024). Rigid and crosslinkable polyimide curing epoxy resin with enhanced comprehensive performances. Polymer. 297. 126836–126836. 12 indexed citations
5.
Chen, Lingcheng, et al.. (2024). Rigid Photosensitive Polyimide Significantly Improves the Comprehensive Performance of UV-Curing Epoxy Acrylic Resins. ACS Applied Polymer Materials. 6(14). 8267–8276. 11 indexed citations
7.
Li, Yifan, et al.. (2024). Background radiation compensation calibration method for film cooling infrared temperature measurement based on BP neural network. International Communications in Heat and Mass Transfer. 159. 107998–107998. 3 indexed citations
8.
Peng, Qian, et al.. (2024). Surface- modified preparation of CuFe2O4/sodium alginate hydrogel catalysts for the long-lasting degradation of tetracycline. Separation and Purification Technology. 354. 129238–129238. 14 indexed citations
9.
Yuan, Jingjing, Yifan Qiao, Yan Zhou, et al.. (2024). Sulfur-doped enhanced ZnMn2O4 spinel for high-capacity zinc-ion batteries: Facilitating charge transfer. Journal of Electroanalytical Chemistry. 974. 118703–118703. 3 indexed citations
10.
Yang, Jingyu, Aoling Cai, Juan Liu, et al.. (2024). Repetitive Transcranial Magnetic Stimulation Reversing Abnormal Brain Function in Mood Disorders with Early Life Stress: from preclinical models to clinical applications. Asian Journal of Psychiatry. 97. 104092–104092. 1 indexed citations
11.
Yuan, Jingjing, et al.. (2023). Tetrahydrofuran intercalated layered vanadium(III) phosphate electrode for aqueous zinc-ion battery. Ionics. 29(11). 4743–4749. 2 indexed citations
13.
Yang, Huijuan, Yulin Zhang, Yifan Li, et al.. (2023). Optimized heterostructure of FeS/Ni3S2 enabling robust oxygen evolution reaction for Zn-Air batteries. Journal of Alloys and Compounds. 956. 170222–170222. 9 indexed citations
14.
Li, Yifan, Jingjing Yuan, Yifan Qiao, et al.. (2023). Recent progress in structural modification of polymer gel electrolytes for use in solid-state zinc-ion batteries. Dalton Transactions. 52(34). 11780–11796. 17 indexed citations
15.
Li, Yifan, Wenjie Ma, Huanhuan Yang, et al.. (2022). CO2-Assisted synthesis of a crystalline/amorphous NiFe-MOF heterostructure for high-efficiency electrocatalytic water oxidation. Chemical Communications. 58(48). 6833–6836. 23 indexed citations
16.
Yang, Shujiao, Xialiang Li, Yifan Li, et al.. (2022). Effect of Proton Transfer on Electrocatalytic Water Oxidation by Manganese Phosphates. Angewandte Chemie International Edition. 62(1). e202215594–e202215594. 40 indexed citations
17.
Wang, Tian, Qiao Xi, Yifan Li, et al.. (2022). Regulating Dendrite‐Free Zinc Deposition by Red Phosphorous‐Derived Artificial Protective Layer for Zinc Metal Batteries. Advanced Science. 9(18). e2200155–e2200155. 100 indexed citations
18.
Wu, Yan, Zhaohua Zhu, Yifan Li, et al.. (2021). Aqueous MnV2O6‐Zn Battery with High Operating Voltage and Energy Density. Small. 17(28). e2008182–e2008182. 37 indexed citations
19.
Li, Yifan, Shule Yu, Gaoqiang Yang, Derrick A. Talley, & Feng‐Yuan Zhang. (2019). Direct Visualization of Ultra-Fast and Micro-Scale Bubble Evolutions and Electrochemical Reactions in Proton Exchange Membrane Electrolyzer Cells. ECS Meeting Abstracts. MA2019-01(29). 1445–1445. 2 indexed citations
20.
Li, Yifan, Gaoqiang Yang, Shule Yu, et al.. (2019). Direct thermal visualization of micro-scale hydrogen evolution reactions in proton exchange membrane electrolyzer cells. Energy Conversion and Management. 199. 111935–111935. 24 indexed citations

Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.

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