Chunping Ma

4.0k total citations · 2 hit papers
63 papers, 3.6k citations indexed

About

Chunping Ma is a scholar working on Materials Chemistry, Biomedical Engineering and Spectroscopy. According to data from OpenAlex, Chunping Ma has authored 63 papers receiving a total of 3.6k indexed citations (citations by other indexed papers that have themselves been cited), including 38 papers in Materials Chemistry, 23 papers in Biomedical Engineering and 15 papers in Spectroscopy. Recurrent topics in Chunping Ma's work include Luminescence and Fluorescent Materials (28 papers), Molecular Sensors and Ion Detection (15 papers) and Advanced Sensor and Energy Harvesting Materials (10 papers). Chunping Ma is often cited by papers focused on Luminescence and Fluorescent Materials (28 papers), Molecular Sensors and Ion Detection (15 papers) and Advanced Sensor and Energy Harvesting Materials (10 papers). Chunping Ma collaborates with scholars based in China, United States and Japan. Chunping Ma's co-authors include Xiqi Zhang, Siwei Liu, Zhenguo Chi, Jiarui Xu, Yi Zhang, Xie Zhou, Bingjia Xu, Liutao Yang, Shuai Wu and Ruike Renee Zhao and has published in prestigious journals such as Chemical Society Reviews, Nature Communications and Journal of The Electrochemical Society.

In The Last Decade

Chunping Ma

62 papers receiving 3.5k citations

Hit Papers

Recent advances in organic mechanofluorochromic materials 2012 2026 2016 2021 2012 2019 500 1000 1.5k

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Chunping Ma China 26 2.4k 1.1k 821 779 659 63 3.6k
Yue Zhou China 33 1.4k 0.6× 453 0.4× 489 0.6× 569 0.7× 909 1.4× 129 3.7k
Nan Wang China 34 2.0k 0.8× 410 0.4× 1.1k 1.3× 1.3k 1.7× 292 0.4× 201 3.5k
Xi Liu China 37 1.9k 0.8× 139 0.1× 1.0k 1.2× 515 0.7× 857 1.3× 236 5.2k
Sung Jin Kim South Korea 39 2.3k 1.0× 549 0.5× 2.2k 2.6× 330 0.4× 858 1.3× 235 5.3k
Jie Xu China 32 1.8k 0.8× 213 0.2× 1.6k 1.9× 269 0.3× 616 0.9× 160 3.9k
Tian Tian China 33 1.8k 0.7× 214 0.2× 1.4k 1.7× 333 0.4× 975 1.5× 153 3.4k
Chen Huang China 45 1.8k 0.7× 179 0.2× 1.5k 1.9× 365 0.5× 2.0k 3.1× 206 6.1k
Lin Shi China 33 1.5k 0.6× 203 0.2× 1.1k 1.3× 738 0.9× 1.4k 2.2× 112 3.8k
Yuhui Jin China 30 2.1k 0.9× 334 0.3× 625 0.8× 322 0.4× 1.1k 1.6× 68 3.6k
Zhaoyu Wang China 32 1.7k 0.7× 253 0.2× 866 1.1× 257 0.3× 871 1.3× 96 3.6k

Countries citing papers authored by Chunping Ma

Since Specialization
Citations

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

Fields of papers citing papers by Chunping Ma

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

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

Co-authorship network of co-authors of Chunping Ma

This figure shows the co-authorship network connecting the top 25 collaborators of Chunping Ma. A scholar is included among the top collaborators of Chunping Ma 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 Chunping Ma. Chunping Ma 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.
Wen, Hui, Mingxin Zhang, Zhifeng Huang, et al.. (2025). Polylactic acid electrospun composite fibrous membrane with hydrophobic–hydrophilic dual-layer structure for oil–water separation application. Journal of Materials Science. 60(45). 23092–23108.
2.
Jiang, Zeyu, Yuan Cai, Yue Pan, et al.. (2025). Interfacial self-sewing enables fully integrated flexible zinc-ion batteries with superb mechanical durability. Chemical Engineering Journal. 507. 160407–160407. 1 indexed citations
3.
Wen, Hui, Xian Liu, Jingyi Chen, et al.. (2024). Silicone-modified poly(lactic acid) fibrous membranes for oil-water separation: Hydrolysis and wetting behavior analysis. Materials Chemistry and Physics. 333. 130271–130271. 3 indexed citations
4.
Ma, Chunping, Fengyuan Lin, Jiayi Chen, et al.. (2023). Monitoring and kinetic study of alkaline hydrolysis of polylactic acid fibrous membrane via aggregation-induced emission (AIE) technique. Surfaces and Interfaces. 42. 103433–103433. 4 indexed citations
5.
Wang, Jing-Rong, et al.. (2023). Polylactic acid/multi-wall carbon nanotubes composite fibrous membrane and their applications in oil-water separation. Surfaces and Interfaces. 39. 102908–102908. 30 indexed citations
6.
7.
Chen, Qian, Fuli Feng, Lijie Wen, Chunping Ma, & Pengjun Xie. (2021). Counterfactual Inference for Text Classification Debiasing. 5434–5445. 47 indexed citations
8.
Ma, Chunping, Zhiyi Li, Chenglin Zhang, et al.. (2021). Design and Synthesis of AIE-Based Small-Molecule and Nanofibrous Film for Fluorescent Sensing Application. Frontiers in Chemistry. 9. 727631–727631. 14 indexed citations
9.
Zhou, Jie, Chunping Ma, Dingkun Long, et al.. (2020). Hierarchy-Aware Global Model for Hierarchical Text Classification. 1106–1117. 92 indexed citations
10.
Zhao, Yinghao, et al.. (2019). Deterministic snap-through buckling and energy trapping in axially-loaded notched strips for compliant building blocks. Smart Materials and Structures. 29(2). 02LT03–02LT03. 41 indexed citations
11.
Ma, Chunping, et al.. (2019). Exploiting spatial heterogeneity and response characterization in non-uniform architected materials inspired by slime mould growth. Bioinspiration & Biomimetics. 14(6). 64001–64001. 1 indexed citations
12.
Ma, Chunping, et al.. (2019). DM_NLP at SemEval-2018 Task 12: A Pipeline System for Toponym Resolution. 917–923. 17 indexed citations
13.
Xie, Gaoyi, Chunping Ma, Xiqi Zhang, et al.. (2017). Biocompatible zwitterionic phosphorylcholine polymers with aggregation-induced emission feature. Colloids and Surfaces B Biointerfaces. 157. 166–173. 9 indexed citations
14.
Ma, Chunping, Xiqi Zhang, Liutao Yang, et al.. (2016). Preparation of fluorescent organic nanoparticles from polyethylenimine and sucrose for cell imaging. Materials Science and Engineering C. 68. 37–42. 27 indexed citations
15.
Yang, Liutao, Ying Liu, Chunping Ma, et al.. (2015). Naphthalene-fused BODIPY with large Stokes shift as saturated-red fluorescent dye for living cell imaging. Dyes and Pigments. 122. 1–5. 40 indexed citations
16.
Wang, Ke, Xiaoyong Zhang, Xiqi Zhang, et al.. (2015). Preparation of emissive glucose-containing polymer nanoparticles and their cell imaging applications. Polymer Chemistry. 6(24). 4455–4461. 23 indexed citations
17.
Ma, Chunping, Xiqi Zhang, Ke Wang, et al.. (2015). A biocompatible cross-linked fluorescent polymer prepared via ring-opening PEGylation of 4-arm PEG-amine, itaconic anhydride, and an AIE monomer. Polymer Chemistry. 6(19). 3634–3640. 31 indexed citations
18.
Yang, Liutao, Ying Liu, Wei Liu, et al.. (2015). Divinyl BODIPY derivative: Synthesis, photophysical properties, crystal structure, photostability and bioimaging. Bioorganic & Medicinal Chemistry Letters. 25(24). 5716–5719. 9 indexed citations
19.
Chi, Zhenguo, Xiqi Zhang, Bingjia Xu, et al.. (2012). Recent advances in organic mechanofluorochromic materials. Chemical Society Reviews. 41(10). 3878–3878. 1634 indexed citations breakdown →
20.
Wei, Zaishan, et al.. (2010). Microwave catalytic NOx and SO2 removal using FeCu/zeolite as catalyst. Fuel. 90(4). 1599–1603. 37 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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