Anh N. Phan

6.6k total citations · 2 hit papers
108 papers, 5.2k citations indexed

About

Anh N. Phan is a scholar working on Biomedical Engineering, Mechanical Engineering and Materials Chemistry. According to data from OpenAlex, Anh N. Phan has authored 108 papers receiving a total of 5.2k indexed citations (citations by other indexed papers that have themselves been cited), including 65 papers in Biomedical Engineering, 26 papers in Mechanical Engineering and 26 papers in Materials Chemistry. Recurrent topics in Anh N. Phan's work include Thermochemical Biomass Conversion Processes (25 papers), Innovative Microfluidic and Catalytic Techniques Innovation (12 papers) and Catalysis and Hydrodesulfurization Studies (11 papers). Anh N. Phan is often cited by papers focused on Thermochemical Biomass Conversion Processes (25 papers), Innovative Microfluidic and Catalytic Techniques Innovation (12 papers) and Catalysis and Hydrodesulfurization Studies (11 papers). Anh N. Phan collaborates with scholars based in United Kingdom, Vietnam and Iraq. Anh N. Phan's co-authors include Adam Harvey, Piergiorgio Gentile, Tuti Mariana Lim, Aumber Abbas, Jonathan S. Harris, Valentine C. Eze, Kui Zhang, S.J. Bull, J. Swithenbank and Vida N. Sharifi and has published in prestigious journals such as SHILAP Revista de lepidopterología, ACS Nano and Renewable and Sustainable Energy Reviews.

In The Last Decade

Anh N. Phan

101 papers receiving 5.0k citations

Hit Papers

Biodiesel production from waste cooking oils 2008 2026 2014 2020 2008 2021 250 500 750

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Anh N. Phan United Kingdom 38 2.9k 1.5k 1.1k 627 494 108 5.2k
Juan Félix González González Spain 42 4.4k 1.5× 1.1k 0.8× 2.0k 1.8× 585 0.9× 475 1.0× 137 7.2k
B. Deepanraj India 38 1.9k 0.6× 762 0.5× 909 0.8× 324 0.5× 788 1.6× 210 4.8k
J.M. Encinar Spain 39 4.2k 1.4× 930 0.6× 2.0k 1.7× 791 1.3× 252 0.5× 123 5.7k
Abrar Inayat United Arab Emirates 44 3.8k 1.3× 1.1k 0.8× 1.6k 1.4× 384 0.6× 1.2k 2.4× 183 7.0k
Tingzhou Lei China 48 4.6k 1.6× 1.4k 0.9× 1.9k 1.6× 257 0.4× 404 0.8× 237 8.0k
S. Kent Hoekman United States 31 4.9k 1.7× 759 0.5× 1.9k 1.6× 567 0.9× 916 1.9× 70 6.8k
Ching‐Yuan Chang Taiwan 42 2.2k 0.7× 1.3k 0.9× 1.1k 1.0× 210 0.3× 539 1.1× 189 5.4k
M.I. Jahirul Australia 30 2.4k 0.8× 692 0.5× 866 0.8× 191 0.3× 576 1.2× 96 4.5k
Jianjun Dai China 42 2.1k 0.7× 664 0.4× 996 0.9× 243 0.4× 298 0.6× 159 5.8k
Wiebren de Jong Netherlands 45 4.8k 1.6× 1.3k 0.9× 1.6k 1.4× 221 0.4× 864 1.7× 165 7.0k

Countries citing papers authored by Anh N. Phan

Since Specialization
Citations

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

Fields of papers citing papers by Anh N. Phan

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Anh N. Phan. 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 Anh N. Phan. The network helps show where Anh N. Phan may publish in the future.

Co-authorship network of co-authors of Anh N. Phan

This figure shows the co-authorship network connecting the top 25 collaborators of Anh N. Phan. A scholar is included among the top collaborators of Anh N. Phan 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 Anh N. Phan. Anh N. Phan 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.
Phan, Anh N., et al.. (2025). Climate policy uncertainty: A catalyst for stock price crash?. Journal of Environmental Management. 392. 126629–126629.
2.
Phan, Anh N., et al.. (2025). Flexible MIL-53(Al)/Biochar composite for enhanced norfloxacin Removal: Synergistic effects and adsorption mechanisms. Journal of Industrial and Engineering Chemistry. 153. 836–845.
4.
Phan, Anh N., et al.. (2024). Chemical recycling of plastic waste for sustainable polymer manufacturing – A critical review. Journal of environmental chemical engineering. 12(2). 112323–112323. 51 indexed citations
6.
Larimi, Afsanehsadat, et al.. (2024). Aspects of Reaction Engineering for Biodiesel Production. Catalysts. 14(10). 701–701. 6 indexed citations
7.
Barchiesi, Emilio, et al.. (2024). Layer-by-layer assembly of nanotheranostic particles for simultaneous delivery of docetaxel and doxorubicin to target osteosarcoma. APL Bioengineering. 8(1). 16113–16113. 6 indexed citations
8.
Bell, Jon G., et al.. (2024). Spectroelectrochemical study of carbon structural and functionality characteristics on vanadium redox reactions for flow batteries. Materials Advances. 5(18). 7170–7198. 2 indexed citations
9.
Okot, David Kilama, Paul Bilsborrow, Anh N. Phan, & David A.C. Manning. (2023). Kinetics of maize cob and bean straw pyrolysis and combustion. Heliyon. 9(6). e17236–e17236. 17 indexed citations
10.
Phan, Anh N., et al.. (2023). Intensification of two-stage biomass gasification for hydrogen production. International Journal of Hydrogen Energy. 49. 189–202. 8 indexed citations
11.
Nguyen, Thi Thuy Van, Anh N. Phan, Thanh Gia‐Thien Ho, et al.. (2023). Enhanced heterogeneous Fenton degradation of p -nitrophenol by Fe 3 O 4 nanoparticles decorated cellulose aerogel from banana stem. Environmental Technology & Innovation. 30. 103041–103041. 25 indexed citations
12.
Nguyễn, Văn Duy, et al.. (2023). Digital and circular technologies for climate-smart and sustainable agriculture: the case of Vietnamese coffee. IOP Conference Series Earth and Environmental Science. 1278(1). 12003–12003. 3 indexed citations
13.
Ahmed, Safaa M.R., et al.. (2023). Continuous Reactive Crystallization in a Mesoscale Oscillatory Baffled Reactor. Chemical Engineering & Technology. 46(11). 2345–2352. 1 indexed citations
14.
Zhang, Jie, et al.. (2022). Robust modelling development for optimisation of hydrogen production from biomass gasification process using bootstrap aggregated neural network. International Journal of Hydrogen Energy. 48(29). 10812–10828. 17 indexed citations
15.
Nguyen, Thi Thuy Van, Anh N. Phan, Tuan-Anh Nguyen, et al.. (2022). Valorization of agriculture waste biomass as biochar: As first-rate biosorbent for remediation of contaminated soil. Chemosphere. 307(Pt 3). 135834–135834. 56 indexed citations
16.
Phan, Anh N., et al.. (2021). MATHEMATICAL MODELING AND OPTIMIZATION OF LOWTEMPERATURE VACUUM DRYING FOR BANANA. Carpathian Journal of Food Science and Technology. 47–61. 3 indexed citations
17.
Ng, Kok Siew, Anh N. Phan, Eleni Iacovidou, & Wan Azlina Wan Ab Karim Ghani. (2021). Techno-economic assessment of a novel integrated system of mechanical-biological treatment and valorisation of residual municipal solid waste into hydrogen: A case study in the UK. Journal of Cleaner Production. 298. 126706–126706. 29 indexed citations
19.
Abbas, Aumber, Tanveer A. Tabish, S.J. Bull, Tuti Mariana Lim, & Anh N. Phan. (2020). High yield synthesis of graphene quantum dots from biomass waste as a highly selective probe for Fe3+ sensing. Scientific Reports. 10(1). 21262–21262. 162 indexed citations
20.
Eze, Valentine C., Anh N. Phan, & Adam Harvey. (2014). A more robust model of the biodiesel reaction, allowing identification of process conditions for significantly enhanced rate and water tolerance. Bioresource Technology. 156. 222–231. 51 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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