Chengli Yao

2.5k total citations · 1 hit paper
59 papers, 2.1k citations indexed

About

Chengli Yao is a scholar working on Biomaterials, Materials Chemistry and Electrical and Electronic Engineering. According to data from OpenAlex, Chengli Yao has authored 59 papers receiving a total of 2.1k indexed citations (citations by other indexed papers that have themselves been cited), including 17 papers in Biomaterials, 17 papers in Materials Chemistry and 14 papers in Electrical and Electronic Engineering. Recurrent topics in Chengli Yao's work include Calcium Carbonate Crystallization and Inhibition (10 papers), Bone Tissue Engineering Materials (8 papers) and Electrocatalysts for Energy Conversion (6 papers). Chengli Yao is often cited by papers focused on Calcium Carbonate Crystallization and Inhibition (10 papers), Bone Tissue Engineering Materials (8 papers) and Electrocatalysts for Energy Conversion (6 papers). Chengli Yao collaborates with scholars based in China and United States. Chengli Yao's co-authors include Meirong Huo, Aifeng Zou, Shaofei Xie, Weize Li, Yong Zhang, Jianping Zhou, Yuhua Shen, Yunpeng Zhang, Guojun Zhang and Jun Shen and has published in prestigious journals such as Biomaterials, Environmental Pollution and Materials Science and Engineering A.

In The Last Decade

Chengli Yao

54 papers receiving 2.1k citations

Hit Papers

DDSolver: An Add-In Program for Modeling and Comparison o... 2010 2026 2015 2020 2010 400 800 1.2k

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Chengli Yao China 16 783 461 333 328 279 59 2.1k
Libo Wu China 21 491 0.6× 298 0.6× 460 1.4× 343 1.0× 189 0.7× 38 2.3k
Yuan Le China 26 575 0.7× 496 1.1× 644 1.9× 551 1.7× 350 1.3× 99 2.2k
Pradip Kumar Dutta India 28 233 0.3× 1.4k 3.0× 674 2.0× 543 1.7× 261 0.9× 90 3.1k
Anna Angela Barba Italy 31 714 0.9× 584 1.3× 183 0.5× 577 1.8× 419 1.5× 117 2.5k
Rizwan Ullah Khan China 24 173 0.2× 408 0.9× 311 0.9× 343 1.0× 220 0.8× 56 1.9k
Wei Shan China 33 1.4k 1.7× 756 1.6× 1.2k 3.6× 717 2.2× 1.1k 3.9× 89 4.2k
Gaetano Lamberti Italy 34 899 1.1× 996 2.2× 292 0.9× 824 2.5× 463 1.7× 147 3.6k
Alessandra Rossi Italy 28 936 1.2× 283 0.6× 341 1.0× 257 0.8× 283 1.0× 81 2.3k
Vikramjeet Singh China 24 239 0.3× 297 0.6× 495 1.5× 353 1.1× 221 0.8× 47 1.7k
Peng Quan China 36 1.4k 1.8× 305 0.7× 616 1.8× 449 1.4× 437 1.6× 113 3.6k

Countries citing papers authored by Chengli Yao

Since Specialization
Citations

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

Fields of papers citing papers by Chengli Yao

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

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

Co-authorship network of co-authors of Chengli Yao

This figure shows the co-authorship network connecting the top 25 collaborators of Chengli Yao. A scholar is included among the top collaborators of Chengli Yao 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 Chengli Yao. Chengli Yao 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.
Yao, Chengli, et al.. (2025). Preparation of Ag3PO4-based photo-catalyst and its application of photocatalytic degradation. Journal of the Indian Chemical Society. 102(6). 101746–101746. 3 indexed citations
3.
Tian, Qi, et al.. (2024). The self-boosting ultrafast removal of Cr(VI) and organic dye in textile wastewater through sulfite-induced redox processes. Environmental Pollution. 355. 124182–124182. 5 indexed citations
4.
Yao, Chengli, et al.. (2023). The Enhanced Photo‐Catalytic Properties of ZnO Under the Synergistic Effect of CaCO3. Crystal Research and Technology. 59(1). 2 indexed citations
5.
Li, Hongying, et al.. (2022). Biotemplated Fabrication of ZnO Microstructures with Enhanced Photocatalytic Properties from Rape Pollen. Crystallography Reports. 67(7). 1231–1238. 2 indexed citations
6.
Yao, Chengli, et al.. (2022). Fabrication of porous ZnO/Co3O4 nanohybrids for the application of surface enhanced Raman scattering. Spectrochimica Acta Part A Molecular and Biomolecular Spectroscopy. 285. 121921–121921. 6 indexed citations
7.
Li, Hongying, et al.. (2022). Effect of agar hydrogel and magnesium ions on the biomimetic mineralization of calcium carbonate. Journal of the Indian Chemical Society. 99(7). 100547–100547. 1 indexed citations
8.
Lei, Wei, et al.. (2022). Study on Crystallization Behavior of Hydroxyapatite Regulated by Surfactant and Different Phosphorus Sources. Russian Journal of Inorganic Chemistry. 67(14). 2193–2199. 1 indexed citations
9.
Yao, Chengli, et al.. (2020). In-situ preparation and excellent performance of Co9S8/C/NF with binder-free as anodes for lithium-ion batteries. Journal of Materials Research and Technology. 9(5). 10679–10685. 6 indexed citations
10.
Wang, Lei, et al.. (2020). Microstructural Stability of As-Cast and Directionally Solidified AlCoCrFeNi2.1 Eutectic High-Entropy Alloys at Elevated Temperatures. Metallurgical and Materials Transactions A. 51(11). 5781–5789. 33 indexed citations
11.
Yao, Chengli, et al.. (2016). Studies on the structural characterization of compounds in Sinopodophyllum emodi and their inhibitory effect on K562 cell proliferation.. Biomedical Research-tokyo. 27(3). 0. 1 indexed citations
12.
Yao, Chengli, Jiangning Wang, & Yu Wang. (2016). The anti-inflammatory and analgesic effects of Senecio scandens Buch-Ham . ethanol extracts (SSBHE).. Biomedical Research-tokyo. 27(4). 1033–1037. 2 indexed citations
13.
Yao, Chengli, Jinmiao Zhu, Anjian Xie, et al.. (2016). Graphene oxide and creatine phosphate disodium dual template-directed synthesis of GO/hydroxyapatite and its application in drug delivery. Materials Science and Engineering C. 73. 709–715. 35 indexed citations
14.
Yao, Chengli, Anjian Xie, Yuhua Shen, Jinmiao Zhu, & Hongying Li. (2015). Nacre-like calcium carbonate controlled by ionic liquid/graphene oxide composite template. Materials Science and Engineering C. 51. 274–278. 13 indexed citations
15.
Yao, Chengli, et al.. (2013). Saccharides with Different Molecular Weight Affects Crystallization of Calcium Carbonate. Asian Journal of Chemistry. 25(5). 2939–2940. 3 indexed citations
17.
Zou, Aifeng, Meirong Huo, Yong Zhang, et al.. (2011). Octreotide-Modified N-Octyl-O, N-Carboxymethyl Chitosan Micelles as Potential Carriers for Targeted Antitumor Drug Delivery. Journal of Pharmaceutical Sciences. 101(2). 627–640. 25 indexed citations
18.
Zhang, Yong, Meirong Huo, Jianping Zhou, et al.. (2010). DDSolver: An Add-In Program for Modeling and Comparison of Drug Dissolution Profiles. The AAPS Journal. 12(3). 263–271. 1328 indexed citations breakdown →
19.
Yao, Chengli, et al.. (2010). UNUSUAL MORPHOLOGY OF CALCIUM CARBONATE CONTROLLED BY AMINO ACIDS IN AGAROSE GEL. Journal of the Chilean Chemical Society. 55(2). 7 indexed citations
20.
Yao, Chengli, et al.. (2007). Conjugation of methotrexate to immunoglobulins kills macrophages by Fc receptor mediated uptake?. International Journal of Laboratory Hematology. 30(3). 185–190. 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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