Zhou Li

4.2k total citations · 3 hit papers
75 papers, 3.6k citations indexed

About

Zhou Li is a scholar working on Electrical and Electronic Engineering, Materials Chemistry and Biomedical Engineering. According to data from OpenAlex, Zhou Li has authored 75 papers receiving a total of 3.6k indexed citations (citations by other indexed papers that have themselves been cited), including 35 papers in Electrical and Electronic Engineering, 33 papers in Materials Chemistry and 21 papers in Biomedical Engineering. Recurrent topics in Zhou Li's work include Gas Sensing Nanomaterials and Sensors (23 papers), Advanced Photocatalysis Techniques (12 papers) and Advanced Chemical Sensor Technologies (11 papers). Zhou Li is often cited by papers focused on Gas Sensing Nanomaterials and Sensors (23 papers), Advanced Photocatalysis Techniques (12 papers) and Advanced Chemical Sensor Technologies (11 papers). Zhou Li collaborates with scholars based in China, United States and Australia. Zhou Li's co-authors include Hongqi Sun, Shaobin Wang, Xiaoguang Duan, Zhimin Ao, Jianxin Yi, Guoxiu Wang, Huayang Zhang, Moses O. Tadé, Jian Kang and Alexandra Suvorova and has published in prestigious journals such as Nature Communications, Journal of Hazardous Materials and Applied Catalysis B: Environmental.

In The Last Decade

Zhou Li

64 papers receiving 3.5k citations

Hit Papers

Occurrence of radical and nonradical pathways from carboc... 2016 2026 2019 2022 2016 2016 2025 200 400 600

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Zhou Li China 25 1.9k 1.4k 1.2k 1.1k 917 75 3.6k
Yanqing Cong China 35 2.4k 1.2× 1.8k 1.3× 670 0.6× 1.1k 1.0× 314 0.3× 118 3.5k
Xinfei Fan China 42 3.4k 1.7× 2.0k 1.4× 2.6k 2.2× 1.4k 1.3× 1.7k 1.8× 146 6.1k
Lu-Bin Zhong China 29 1.0k 0.5× 1.4k 1.0× 1.3k 1.1× 650 0.6× 1.2k 1.3× 52 3.8k
Xinxin Xu China 29 1.1k 0.6× 1.3k 0.9× 696 0.6× 816 0.8× 564 0.6× 129 3.0k
Felio Pérez United States 28 593 0.3× 685 0.5× 880 0.7× 711 0.7× 378 0.4× 89 2.6k
Jiali Peng China 33 1.7k 0.9× 1.8k 1.3× 1.9k 1.6× 1.5k 1.4× 936 1.0× 81 4.3k
Yongxing Zhang China 38 1.0k 0.5× 1.9k 1.3× 683 0.6× 1.5k 1.4× 651 0.7× 146 4.2k
Stéphanie Lambert Belgium 32 1.2k 0.6× 1.7k 1.2× 578 0.5× 403 0.4× 648 0.7× 149 3.3k
Hui Yu China 32 999 0.5× 1.6k 1.2× 523 0.4× 1.7k 1.5× 1.0k 1.1× 171 3.4k

Countries citing papers authored by Zhou Li

Since Specialization
Citations

This map shows the geographic impact of Zhou 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 Zhou Li with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Zhou Li more than expected).

Fields of papers citing papers by Zhou Li

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Zhou 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 Zhou Li. The network helps show where Zhou Li may publish in the future.

Co-authorship network of co-authors of Zhou Li

This figure shows the co-authorship network connecting the top 25 collaborators of Zhou Li. A scholar is included among the top collaborators of Zhou 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 Zhou Li. Zhou 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
1.
Li, Zhou, et al.. (2025). SCGs-based heterogeneous aerogels for low-cost and efficient solar-driven desalination. Desalination. 608. 118824–118824. 3 indexed citations
2.
Zheng, Xi, Zixiang Zhao, Xinyi Liu, et al.. (2025). Deep transfer learning for spatiotemporal mapping of PM2.5 nitrate across China: Addressing small data challenges in environmental machine learning. Journal of Hazardous Materials. 492. 138206–138206. 2 indexed citations
3.
Li, Zhou, Zheng Qi, Jiyun Hong, et al.. (2025). Exploring characteristics of palladium-loaded tin (IV) oxide nanohybrids towards chemiresistive gas sensing. Applied Surface Science. 690. 162530–162530. 2 indexed citations
4.
Jia, Xianshi, et al.. (2025). Continuous wave laser ablation of alumina ceramics under long focusing condition. Journal of Manufacturing Processes. 134. 530–546. 23 indexed citations breakdown →
5.
Zhang, Xu, Zhou Li, Yiyang Liu, et al.. (2024). Novel synthesis of sulfur-doped Ag3PO4 photocatalyst for efficient degradation of cylindrospermopsin. Chemical Engineering Journal. 504. 158462–158462. 3 indexed citations
6.
Liu, Chen, et al.. (2024). Thermal conductivity of macroporous graphene aerogel measured using high resolution comparative infrared thermal microscopy. Journal of Porous Materials. 32(1). 47–53. 1 indexed citations
7.
Liu, Chuyang, Aman Mohd Ihsan Mamat, Ping Xiang, et al.. (2024). Design, preparation and application of high-performance PVDF-based piezoelectric nanogenerators. Applied Materials Today. 41. 102509–102509. 7 indexed citations
8.
Li, Zhou, et al.. (2024). On-Orbit Processing and Hardware Performance of Microgravity Hydrothermal Synthesis for Graphene Aerogel. Journal of Manufacturing Science and Engineering. 146(12). 1 indexed citations
9.
Zhang, Hong, et al.. (2023). A chemiresistive-potentiometric multivariate sensor for discriminative gas detection. Nature Communications. 14(1). 3495–3495. 100 indexed citations
10.
Li, Zhou, David W. Gardner, Yong Xia, et al.. (2023). Ordered porous RGO/SnO2 thin films for ultrasensitive humidity detection. Journal of Materials Chemistry C. 11(28). 9586–9592. 11 indexed citations
11.
Luo, Xinjie, Zhou Li, Ruizhi Zheng, et al.. (2023). SCG-Based CNF Aerogels with Oriented and Aligned Porous Structure for Solar Interfacial Desalination. ACS Applied Materials & Interfaces. 15(51). 59973–59980. 13 indexed citations
12.
Li, Zhou, Han Jia, Wenjia Chen, & Jianxin Yi. (2021). Detection of vapors from overheated PVC cables with modified sea urchin-like ZnO for fire warning. Sensors and Actuators B Chemical. 350. 130841–130841. 10 indexed citations
13.
Li, Zhou, et al.. (2021). Selective detection of parts-per-billion H2S with Pt-decorated ZnO nanorods. Sensors and Actuators B Chemical. 333. 129545–129545. 51 indexed citations
14.
Li, Zhou, Yong Zhang, Hong Zhang, & Jianxin Yi. (2021). MOF-derived Au-loaded Co3O4 porous hollow nanocages for acetone detection. Sensors and Actuators B Chemical. 344. 130182–130182. 68 indexed citations
15.
Li, Zhou, Yong Zhang, Hong Zhang, Yong Jiang, & Jianxin Yi. (2020). Superior NO2 Sensing of MOF-Derived Indium-Doped ZnO Porous Hollow Cages. ACS Applied Materials & Interfaces. 12(33). 37489–37498. 103 indexed citations
16.
Li, Zhou & Jianxin Yi. (2020). Drastically Enhanced Ammonia Sensing of Pt/ZnO Ordered Porous Ultra-Thin Films. Sensors and Actuators B Chemical. 317. 128217–128217. 52 indexed citations
17.
Zhang, Hong, et al.. (2020). Potentiometric hydrogen sensing of ordered SnO2 thin films. Sensors and Actuators B Chemical. 321. 128505–128505. 26 indexed citations
18.
Tong, Yanbin, et al.. (2020). Novel Electrochemical Sensor Based on Integration of Nanoporous Gold with Molecularly Imprinted Polymer for Detection of Arsenic Ion(III). Journal of Electrochemistry. 26(6). 900. 1 indexed citations
19.
Li, Zhou & Jianxin Yi. (2018). Synthesis and enhanced NO2-sensing properties of ZnO-decorated SnO2 microspheres. Materials Letters. 236. 570–573. 28 indexed citations
20.
Li, Zhou. (2003). The Application of Quasi-stable Adjustment Based on Matlab Software to the Benchmark Stability Inspection in Subsidence Observation.

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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