Zhenjie Lu

1.1k total citations
44 papers, 911 citations indexed

About

Zhenjie Lu is a scholar working on Renewable Energy, Sustainability and the Environment, Electrical and Electronic Engineering and Electronic, Optical and Magnetic Materials. According to data from OpenAlex, Zhenjie Lu has authored 44 papers receiving a total of 911 indexed citations (citations by other indexed papers that have themselves been cited), including 27 papers in Renewable Energy, Sustainability and the Environment, 25 papers in Electrical and Electronic Engineering and 19 papers in Electronic, Optical and Magnetic Materials. Recurrent topics in Zhenjie Lu's work include Electrocatalysts for Energy Conversion (26 papers), Advanced battery technologies research (18 papers) and Supercapacitor Materials and Fabrication (17 papers). Zhenjie Lu is often cited by papers focused on Electrocatalysts for Energy Conversion (26 papers), Advanced battery technologies research (18 papers) and Supercapacitor Materials and Fabrication (17 papers). Zhenjie Lu collaborates with scholars based in China, Germany and United Kingdom. Zhenjie Lu's co-authors include Xingxing Chen, Xinning Huang, Haoran Pan, Dongling Wu, Xuefei Zhao, Tao Wang, Yuhong Liu, Xuanli Liu, Yaming Zhu and Chao Li and has published in prestigious journals such as Advanced Energy Materials, Journal of Power Sources and Journal of The Electrochemical Society.

In The Last Decade

Zhenjie Lu

42 papers receiving 899 citations

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Zhenjie Lu China 19 520 451 389 271 103 44 911
Katlego Makgopa South Africa 17 549 1.1× 491 1.1× 177 0.5× 252 0.9× 82 0.8× 38 842
Mariano M. Bruno Argentina 19 550 1.1× 243 0.5× 479 1.2× 294 1.1× 100 1.0× 47 890
Suchinda Sattayaporn Thailand 18 858 1.6× 295 0.7× 333 0.9× 439 1.6× 103 1.0× 33 1.2k
Dandan Zhang China 15 267 0.5× 261 0.6× 183 0.5× 239 0.9× 154 1.5× 32 681
Quanjing Zhu China 14 431 0.8× 349 0.8× 286 0.7× 247 0.9× 66 0.6× 22 763
Chunxiao Lü China 16 492 0.9× 217 0.5× 396 1.0× 460 1.7× 143 1.4× 45 876
Chanderpratap Singh India 15 459 0.9× 263 0.6× 437 1.1× 359 1.3× 128 1.2× 15 902
Bingping Liu China 16 546 1.1× 299 0.7× 675 1.7× 663 2.4× 134 1.3× 37 1.3k

Countries citing papers authored by Zhenjie Lu

Since Specialization
Citations

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

Fields of papers citing papers by Zhenjie Lu

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

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

Co-authorship network of co-authors of Zhenjie Lu

This figure shows the co-authorship network connecting the top 25 collaborators of Zhenjie Lu. A scholar is included among the top collaborators of Zhenjie Lu 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 Zhenjie Lu. Zhenjie Lu 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.
Wang, Jinjian, Zhenjie Lu, Zhen Shan, et al.. (2025). Pyrrole-Derived Covalent Organic Frameworks: A Promising Platform for Efficient Bifunctional Electrocatalytic Water Splitting. ACS Applied Engineering Materials. 3(6). 1561–1570. 1 indexed citations
3.
Wang, Jinjian, Zhenjie Lu, Congjie Chen, et al.. (2025). Synergistically modulating the active-site density and charge-transfer in covalent organic frameworks for boosting electrocatalytic water splitting. Journal of Materials Chemistry A. 13(46). 39759–39765.
4.
Xu, Xuefeng, Zhenjie Lu, Danil W. Boukhvalov, et al.. (2025). Grotthuss Mechanism for Stable Zinc Anodes: Time‐Resolved pH Buffering in Aqueous Batteries. Advanced Energy Materials. 15(36). 1 indexed citations
5.
Lu, Zhenjie, Xuanli Liu, Tao Wang, et al.. (2024). Lewis acid-etched MXene self-assembled with reduced graphene oxide for symmetrical supercapacitors with liquid/ solid electrolytes. Journal of Alloys and Compounds. 978. 173480–173480. 13 indexed citations
6.
Zhang, Teng, Zhenjie Lu, Haoran Pan, et al.. (2024). Coal-based carbon nanosheets contained carbon microfibers modified with grown carbon nanotubes as efficient air electrode material for rechargeable zinc-air batteries. Journal of Colloid and Interface Science. 671. 589–600. 8 indexed citations
8.
Chen, Jiaqi, Qianli Wang, Shugang Pan, Zhenjie Lu, & Yongsheng Fu. (2024). Stepwise construction of hollow double shell cobalt sulfide spheres for enhanced hybrid supercapacitors. Journal of Energy Storage. 104. 114417–114417. 7 indexed citations
10.
Yang, Xiaolong, Mingya Zhang, Junlong Xie, et al.. (2023). S, N co-doped rGO/fluorine-free Ti3C2Tx aerogels for high performance all-solid-state supercapacitors. Journal of Energy Storage. 71. 108140–108140. 21 indexed citations
11.
Zhou, Qianqian, et al.. (2023). Co-Ni Bimetallic Zeolitic Imidazolate Frameworks Supported on Carbon Cloth as Free-Standing Electrode for Highly Efficient Oxygen Evolution. Acta Physico-Chimica Sinica. 40(3). 2305041–2305041. 4 indexed citations
12.
Lu, Zhenjie, Xuanli Liu, Tao Wang, et al.. (2023). S/N-codoped carbon nanotubes and reduced graphene oxide aerogel based supercapacitors working in a wide temperature range. Journal of Colloid and Interface Science. 638. 709–718. 49 indexed citations
13.
Lu, Zhenjie, et al.. (2023). Dependence of the dielectric response of PVDF-based nanocomposites on the size of MoS2. Polymer. 278. 125982–125982. 8 indexed citations
14.
Pan, Haoran, et al.. (2022). Modulation of Photogenerated Carrier Transport by Integration of Sb2O3 with Fe2O3 for Improved Photoelectrochemical Water Oxidation. ACS Applied Energy Materials. 5(7). 8844–8851. 17 indexed citations
15.
Lu, Zhenjie, Wenzhi Luo, Xinning Huang, et al.. (2021). Highly-stable cobalt metal organic framework with sheet-like structure for ultra-efficient water oxidation at high current density. Journal of Colloid and Interface Science. 611. 599–608. 49 indexed citations
16.
Lu, Zhenjie, et al.. (2021). Green needle coke-derived porous carbon for high-performance symmetric supercapacitor. Journal of Power Sources. 494. 229770–229770. 127 indexed citations
17.
Li, Juan, Zhenjie Lu, Zhengxing Chen, et al.. (2020). Preparation and characterization of pH-responsive microgel using arabinoxylan from wheat bran for BSA delivery. Food Chemistry. 342. 128220–128220. 13 indexed citations
18.
Liu, Huimin, Xinning Huang, Zhenjie Lu, et al.. (2020). Trace metals dramatically boost oxygen electrocatalysis of N-doped coal-derived carbon for zinc–air batteries. Nanoscale. 12(17). 9628–9639. 30 indexed citations
19.
Liu, Guo‐Cheng, Yan Li, Zhenjie Lu, et al.. (2019). Versatile carboxylate-directed structures of ten 1D → 3D Ni(ii) coordination polymers: fluorescence behaviors and electrochemical activities. CrystEngComm. 21(35). 5344–5355. 20 indexed citations
20.
Lu, Zhenjie, Xingxing Chen, Penggao Liu, et al.. (2018). Co-Mn Hybrid Oxides Supported on N-Doped Graphene as Efficient Electrocatalysts for Reversible Oxygen Electrodes. Journal of The Electrochemical Society. 165(9). H580–H589. 21 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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