Junhan Zhang

705 total citations · 1 hit paper
41 papers, 462 citations indexed

About

Junhan Zhang is a scholar working on Electrical and Electronic Engineering, Polymers and Plastics and Molecular Biology. According to data from OpenAlex, Junhan Zhang has authored 41 papers receiving a total of 462 indexed citations (citations by other indexed papers that have themselves been cited), including 12 papers in Electrical and Electronic Engineering, 9 papers in Polymers and Plastics and 8 papers in Molecular Biology. Recurrent topics in Junhan Zhang's work include Perovskite Materials and Applications (10 papers), Conducting polymers and applications (8 papers) and Chalcogenide Semiconductor Thin Films (6 papers). Junhan Zhang is often cited by papers focused on Perovskite Materials and Applications (10 papers), Conducting polymers and applications (8 papers) and Chalcogenide Semiconductor Thin Films (6 papers). Junhan Zhang collaborates with scholars based in China, Germany and Spain. Junhan Zhang's co-authors include Xingyu Gao, Zhenhuang Su, Guixiang Li, Meng Li, Jorge Pascual, Antonio Abate, Zuhong Zhang, Rui Zhu, Feng Gu and Ming Yan and has published in prestigious journals such as Advanced Materials, Angewandte Chemie International Edition and Energy & Environmental Science.

In The Last Decade

Junhan Zhang

38 papers receiving 456 citations

Hit Papers

Anchoring Charge Selective Self‐Assembled Monolayers for ... 2024 2026 2025 2024 25 50 75

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Junhan Zhang China 12 242 138 123 94 38 41 462
Qianwen Chen China 11 123 0.5× 67 0.5× 37 0.3× 53 0.6× 14 0.4× 38 316
Lifeng Jin China 11 97 0.4× 34 0.2× 82 0.7× 179 1.9× 12 0.3× 18 411
Nina Dempsey‐Hibbert United Kingdom 14 134 0.6× 25 0.2× 59 0.5× 234 2.5× 8 0.2× 40 607
XC Li China 6 190 0.8× 187 1.4× 43 0.3× 78 0.8× 14 0.4× 18 458
Zongliang Yu China 10 60 0.2× 18 0.1× 19 0.2× 121 1.3× 27 0.7× 19 330
Zhu Zhuo United States 9 58 0.2× 13 0.1× 32 0.3× 139 1.5× 15 0.4× 12 406
John Marques dos Santos United Kingdom 10 132 0.5× 31 0.2× 131 1.1× 63 0.7× 8 0.2× 14 479
Asmaa M. Elsayed Egypt 15 259 1.1× 187 1.4× 153 1.2× 38 0.4× 5 0.1× 59 582
Junping Zhang China 11 118 0.5× 43 0.3× 77 0.6× 129 1.4× 6 0.2× 22 334
Yu‐Te Yeh United States 13 72 0.3× 11 0.1× 112 0.9× 110 1.2× 48 1.3× 20 474

Countries citing papers authored by Junhan Zhang

Since Specialization
Citations

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

Fields of papers citing papers by Junhan Zhang

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

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

Co-authorship network of co-authors of Junhan Zhang

This figure shows the co-authorship network connecting the top 25 collaborators of Junhan Zhang. A scholar is included among the top collaborators of Junhan Zhang 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 Junhan Zhang. Junhan Zhang 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.
Xu, Lijun, et al.. (2025). Dual targeting of ENPP3 and SIRPα with a bispecific antibody enhances macrophage-mediated immunity in renal cell carcinoma. Biochemical and Biophysical Research Communications. 769. 151955–151955.
2.
Xu, Lijun, et al.. (2025). Targeting ALPPL2 with a novel CD89 bispecific antibody reprograms macrophages to enhance anti-tumor immunity. Biochemical and Biophysical Research Communications. 762. 151761–151761. 3 indexed citations
3.
Chen, Hongtao, Rui Liu, Junhan Zhang, et al.. (2025). A combination of microwave treatment and covalent binding of gallic acid improves the solubility, emulsification and thermal stability of peanut protein isolate. Food Research International. 206. 116105–116105. 6 indexed citations
6.
Chen, Muyang, Tingting Niu, Lingfeng Chao, et al.. (2024). “Freezing” intermediate phases for efficient and stable FAPbI3 perovskite solar cells. Energy & Environmental Science. 17(10). 3375–3383. 26 indexed citations
7.
Huang, Xiao‐Long, Junhan Zhang, Ying Tang, et al.. (2024). Palmitic acid induces β-cell ferroptosis by activating ceramide signaling pathway. Experimental Cell Research. 440(2). 114134–114134. 4 indexed citations
8.
Zhang, Xianghua, Jorge Pascual, Zongjin Li, et al.. (2024). Buried hole-selective interface engineering for high-efficiency tin–lead perovskite solar cells with enhanced interfacial chemical stability. Science Bulletin. 70(4). 556–562. 6 indexed citations
9.
Fang, Qin, Junhan Zhang, Fengyi Wang, et al.. (2024). Causal relationship between gut microbiota and tuberculosis: a bidirectional two-sample Mendelian randomization analysis. Respiratory Research. 25(1). 16–16. 11 indexed citations
10.
Li, Zongjin, Rui Zhu, Guixiang Li, et al.. (2024). Multifunctional Modification of the Buried Interface in Mixed Tin‐Lead Perovskite Solar Cells. Angewandte Chemie International Edition. 63(48). e202409330–e202409330. 18 indexed citations
11.
Zhu, Rui, Guixiang Li, Zuhong Zhang, et al.. (2024). Inhibiting Interfacial Nonradiative Recombination in Inverted Perovskite Solar Cells with a Multifunctional Molecule. Advanced Materials. 36(35). e2407433–e2407433. 46 indexed citations
12.
Zhang, Junhan, Fengyi Wang, Qin Fang, et al.. (2023). The global burden of cardiovascular diseases and type 2 diabetes attributable to low physical activity, 1990–2019: an analysis from the global burden of disease study. Frontiers in Cardiovascular Medicine. 10. 1247705–1247705. 8 indexed citations
13.
Shi, Xiaojin, et al.. (2023). The Association between Sugar-Sweetened Beverages and Male Pattern Hair Loss in Young Men. Nutrients. 15(1). 214–214. 11 indexed citations
14.
Zhang, Junhan, Fengyi Wang, Xueqin Wei, et al.. (2023). Activation of the JNK/COX-2/HIF-1α axis promotes M1 macrophage via glycolytic shift in HIV-1 infection. Life Science Alliance. 6(12). e202302148–e202302148. 14 indexed citations
16.
Wang, Hao, Xiaofei An, Junhan Zhang, et al.. (2021). Baeckein E suppressed NLRP3 inflammasome activation through inhibiting both the priming and assembly procedure: Implications for gout therapy. Phytomedicine. 84. 153521–153521. 31 indexed citations
17.
Zhang, Junhan, Ji-Qin Hou, Hao Wang, et al.. (2021). Frutescone O from Baeckea frutescens Blocked TLR4-Mediated Myd88/NF-κB and MAPK Signaling Pathways in LPS Induced RAW264.7 Macrophages. Frontiers in Pharmacology. 12. 643188–643188. 10 indexed citations
18.
An, Xiaofei, et al.. (2020). Ainsliaea fragrans champ. Extract prevents cervicitis in BALB/c mice and regulates MyD88-NF-κB signaling pathway in MALP-2-stimulated RAW264.7 cells. Journal of Ethnopharmacology. 269. 113684–113684. 8 indexed citations
19.
Zhang, Junhan, et al.. (2019). Soft-measuring model for grinding particle size based on the improved GWO-BP network model. 44. 586–591. 1 indexed citations
20.
Gao, Tian, Clare O’Callaghan, Junhan Zhang, et al.. (2012). A music therapy educator and undergraduate students’ perceptions of their music project's relevance for Sichuan earthquake survivors. Nordic Journal of Music Therapy. 22(2). 107–130. 4 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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