Ke Zhao

1.4k total citations · 1 hit paper
55 papers, 1.1k citations indexed

About

Ke Zhao is a scholar working on Molecular Biology, Organic Chemistry and Plant Science. According to data from OpenAlex, Ke Zhao has authored 55 papers receiving a total of 1.1k indexed citations (citations by other indexed papers that have themselves been cited), including 13 papers in Molecular Biology, 12 papers in Organic Chemistry and 12 papers in Plant Science. Recurrent topics in Ke Zhao's work include Electrochemical Analysis and Applications (12 papers), Catalytic Alkyne Reactions (9 papers) and Electrochemical sensors and biosensors (7 papers). Ke Zhao is often cited by papers focused on Electrochemical Analysis and Applications (12 papers), Catalytic Alkyne Reactions (9 papers) and Electrochemical sensors and biosensors (7 papers). Ke Zhao collaborates with scholars based in China, Singapore and United States. Ke Zhao's co-authors include Liming Zhang, Xinpeng Cheng, Grzegorz Lisak, Tianyou Li, Zhitong Zheng, Xu Ma, Liya Ge, Fengxiang Li, Xiaodong Zhou and Ten It Wong and has published in prestigious journals such as Chemical Reviews, Journal of the American Chemical Society and Angewandte Chemie International Edition.

In The Last Decade

Ke Zhao

52 papers receiving 1.0k citations

Hit Papers

Homogeneous Gold-Catalyzed Oxidation Reactions 2021 2026 2022 2024 2021 50 100 150 200

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Ke Zhao China 17 413 159 152 139 120 55 1.1k
Isaac O. K’Owino Kenya 11 128 0.3× 88 0.6× 149 1.0× 170 1.2× 220 1.8× 26 667
Lin Zhu China 27 269 0.7× 122 0.8× 84 0.6× 253 1.8× 351 2.9× 94 1.8k
Zhiqiong Chen China 20 186 0.5× 41 0.3× 144 0.9× 96 0.7× 211 1.8× 53 1.0k
Na Wang China 23 105 0.3× 90 0.6× 110 0.7× 184 1.3× 291 2.4× 68 1.2k
Ying Ye China 16 212 0.5× 417 2.6× 97 0.6× 182 1.3× 46 0.4× 63 1.0k
Anna Syguda Poland 17 348 0.8× 182 1.1× 99 0.7× 75 0.5× 104 0.9× 40 1.1k
Yuanyuan Li China 21 242 0.6× 111 0.7× 94 0.6× 240 1.7× 423 3.5× 100 1.5k
Azeem Intisar Pakistan 18 131 0.3× 126 0.8× 75 0.5× 103 0.7× 127 1.1× 68 876
Munawar Ali Munawar Pakistan 23 885 2.1× 189 1.2× 137 0.9× 294 2.1× 100 0.8× 141 1.7k

Countries citing papers authored by Ke Zhao

Since Specialization
Citations

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

Fields of papers citing papers by Ke Zhao

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

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

Co-authorship network of co-authors of Ke Zhao

This figure shows the co-authorship network connecting the top 25 collaborators of Ke Zhao. A scholar is included among the top collaborators of Ke Zhao 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 Ke Zhao. Ke Zhao 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.
Chen, Yulan, Amjad Farooq, Xindong Wei, et al.. (2025). Transcriptomic and metabolomic analysis of recalcitrant phosphorus solubilization mechanisms in Trametes gibbosa. Frontiers in Microbiology. 16. 1520459–1520459. 2 indexed citations
2.
Lu, Teng, X. Shi, Ke Zhao, Pei‐Liang Liu, & Jian Hou. (2025). Enhancing hydrogen recovery and carbon sequestration efficiency in natural hydrogen reservoirs through CO2 injection: An experimental and simulation study. Renewable Energy. 245. 122884–122884. 1 indexed citations
3.
Zhao, Ke, et al.. (2025). One-step constant current electrolysis for selective lithium separation from spent lithium-ion batteries. Separation and Purification Technology. 362. 131499–131499. 1 indexed citations
6.
Wang, Yan, Yihao Liu, Xiang Liu, et al.. (2025). Thermophilic Bacillus licheniformis SCAU1602 inoculation reduced nitrogen loss and enhanced humification during industrial composting. Journal of environmental chemical engineering. 13(5). 118565–118565. 1 indexed citations
7.
Zhao, Ke, et al.. (2024). Chiral Bifunctional Phosphine Ligand Enables Asymmetric Trapping of Catalytic Vinyl Gold Carbene Species. Journal of the American Chemical Society. 146(4). 2308–2312. 6 indexed citations
8.
Bao, Xin, Ke Zhao, Zhen Tian, et al.. (2024). Blue Light-Excited Carbon Dot/C3N4 Nanocomposites with Long-Lived Thermally Activated Delay Fluorescence for Anti-Counterfeiting and Illumination. ACS Applied Nano Materials. 7(6). 6681–6690. 6 indexed citations
11.
Zhao, Ke, et al.. (2023). Desymmetrization and Parallel Kinetic Resolution of 1-Ethynylcyclobutanols via Asymmetric Cooperative Gold Catalysis. Journal of the American Chemical Society. 145(50). 27205–27210. 13 indexed citations
12.
Zhang, Yongliang, et al.. (2023). Asymmetric Dearomatization of Phenols via Ligand‐Enabled Cooperative Gold Catalysis. Angewandte Chemie International Edition. 62(38). e202309256–e202309256. 19 indexed citations
13.
Xiang, Quanju, Muhammad Arshad, Huijuan Zhang, et al.. (2023). Transcriptomic profiling revealed important roles of amino acid metabolism in fruiting body formation at different ripening times in Hypsizygus marmoreus. Frontiers in Microbiology. 14. 1169881–1169881. 5 indexed citations
14.
Chen, Yulan, Yong Wang, Lingzi Zhang, et al.. (2022). Culture dependent and independent characterization of endophytic bacteria in the seeds of highland barley. Frontiers in Microbiology. 13. 981158–981158. 5 indexed citations
15.
Liu, Xin, Xiaojian Deng, Chunyan Li, et al.. (2022). Mutation of Protoporphyrinogen IX Oxidase Gene Causes Spotted and Rolled Leaf and Its Overexpression Generates Herbicide Resistance in Rice. International Journal of Molecular Sciences. 23(10). 5781–5781. 13 indexed citations
16.
Zhao, Ke, Xin Zhang, Xingfeng Shao, et al.. (2022). Genomic analysis of intestinal flora and liver genes in mice with circadian rhythm disorders fed with flavonoids from Sedum aizoon L.. Food Bioscience. 50. 102067–102067. 6 indexed citations
17.
Ahamed, Ashiq, Liya Ge, Ke Zhao, et al.. (2021). Environmental footprint of voltammetric sensors based on screen-printed electrodes: An assessment towards “green” sensor manufacturing. Chemosphere. 278. 130462–130462. 54 indexed citations
18.
Wang, Jing, Ke Zhao, Hongfei Wang, et al.. (2020). A transcriptome analysis of the antibacterial mechanism of flavonoids from Sedum aizoon L. against Shewanella putrefaciens. World Journal of Microbiology and Biotechnology. 36(7). 94–94. 51 indexed citations
19.
Zhao, Ke, et al.. (2020). Gold-Catalyzed Synthesis of Chiral Cyclopentadienyl Esters via Chirality Transfer. Organic Letters. 22(16). 6500–6504. 20 indexed citations
20.
Li, Xiaohui, Yuan Wang, Bingyang Liu, et al.. (2016). Transcriptome analysis of resistant and susceptible tobacco ( Nicotiana tabacum ) in response to root-knot nematode Meloidogyne incognita infection. Biochemical and Biophysical Research Communications. 482(4). 1114–1121. 33 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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