อ. ดร.ปัญญา ฐานวิสัย

สาขาฟิสิกส์ คณะวิทยาศาสตร์ มหาวิทยาลัยขอนแก่น

 



ประวัติการศึกษา

  • 2561 วท.บ. (ฟิสิกส์) (เกียรตินิยมอันดับสอง) มหาวิทยาลัยขอนแก่น
  • 2564 วท.ม. (ฟิสิกส์) มหาวิทยาลัยขอนแก่น
  • 2568 Ph.D. in Materials Science and Engineering, Worcester Polytechnic Institute, Worcester, MA, USA

ห้องทำงาน อาคารวิทยวิภาส ชั้น 5 คณะวิทยาศาสตร์ มหาวิทยาลัยขอนแก่น

E-mail: panyth@kku.ac.th

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  1. Resource recovery from metal wastes and end-of-life batteries/energy-related devices
  2. Advanced materials for energy storage applications: Li- and beyond-Li batteries and supercapacitors
  3. Carbon-based/composited materials from biomass for energy storage applications
  1. Thanwisai, P., Yang, S., Yao, Z., Meng, Z., Hou,. … & Wang, Y. (2025). Anionic-Based Layered Oxide Cathodes with High Electrochemical Performance through Dual-Site Substitutions for Sodium-Ion Batteries. Small, https://doi.org/10.1002/smll.202411928. (Tier1 and Q1, IF2025=12.1)
  2. Thanwisai, P., Yao, Z., Shahabuddin, M., Hou, J., Fu, J., Powell, A., & Wang, Y. (2024). Sustainable Iron Production via Highly Efficient Low-Temperature Electrolysis of 3D Conductive Colloidal Electrodes. Green Chemistry, 26, 9176-918. (Tier1 and Q1, IF2025=9.2)
  3. Thanwisai, P., Vanaphuti, P., Yao, Z., Hou, J., Meng, Z., Ma, X., … & Wang, Y. (2023). Regulating Anionic Redox via Mg Substitution in Mn‐Rich Layered Oxide Cathodes Enabling High Electrochemical Stability for Sodium-Ion Batteries. Small, 20(9), 2306465. (Tier1 and Q1, IF2025=12.1)
  4. Thanwisai, P., Chaiyapo, N., Phuenhinlad, P., Kanaphan, Y., Nash, J., Chotsuwan, C., … & Meethong, N. (2022). Mesoporous and defective activated carbon cathode for AlCl4− anion storage in non-aqueous aluminium-ion batteries. Carbon, 191, 195-204. (Tier1 and Q1, IF2025=11.6)
  5. Thanwisai, P., Phuenhinlad, P., Chaiyapo, N., Kanaphan, Y., Nash, J., Chotsuwan, C., … & Meethong, N. (2021). Activated carbon derived from coconut shell chars for use as a cathode material in aluminium-ion batteries. Journal of Physics: Conference Series(Vol. 1719, No. 1, p. 012059). IOP Publishing.
  6. Meng, Z., Hou, J., Wang, Z., Ma, X., Thanwisai, P., Fu, J., Yao, Z., Jin, W., Hao, Z., Yang, Z., & Wang, Y. (2025). Selectively extracting lithium from single and mixed cathode materials. Chemical Engineering Journal, https://doi.org/10.1016/j.cej.2025.167099. (Tier1 and Q1, IF2025 = 13.2)
  7. Chaiyapo, N., Jeong, Y., Plueksachard, S., Phuenhinlad, P., Thanwisai, P., Nash, J., Limphirat, W., Theerthagiri, J., Choi, M., & Meethong, N. (2025) Impact of Electrolyte Concentration on the Aluminum Anode Surfaces and Electrochemical Performance of Aluminum Anodes in Aluminum-Ion Batteries. Advanced Materials Interface, http://doi.org/10.1002/admi.202500289. (Tier 1 and Q1, IF2025=4.4)
  8. Hou, J., Meng, Z., Wang, Z., Ma, X., Fu, J., Yao, Z., Jin, W., Thanwisai, P., Yang, Z. & Wang, Y. (2025). Impacts of Lanthanum Impurities on Nickel-Rich Cathode Materials. Journal of Sustainable Metallurgy, 1-11. (Q1, IF2025=3.2)
  9. Yao, Z., Ma, Z., Wang, R., Hou, J., Fu, J., Thanwisai, P., Meng, Z,.Yang, Z., & Wang, Y. (2024). Recycled Graphite Enabled Superior Performance for Lithium Ion Batteries, Journal of Power Sources, 625, 235738. (Tier1 and Q1, IF2025=7.9)
  10. Yao, Z., Liu, Y., Thanwisai, P., Hou, J., Meng, Z., Mei, L., Zhu, X., Liu, S., & Wang, Y. (2024). Structure-Modified Anode Material for Regenerable Organic Potassium-Ion Batteries. ACS Sustainable Chemical and Engineering, 12(39), 14472-14481. (Tier1 and Q1, IF2025=7.3)
  11. Meng, Z., Hou, J., Thanwisai, P., Fu, J., Yao, Z., … & Wang, Y. (2024). Understanding the Effects of Bi2O3 Modification on the Properties of Ni‐Rich Cathodes. Batteries & Supercaps, e202400107. (Tier1 and Q1, IF2025=4.7)
  12. Hongtong, R., Thanwisai, P., Yensano, R., Nash, J., Srilomsak, S., & Meethong, N. (2019). Core-shell electrospun and doped LiFePO4/FeS/C composite fibers for Li-ion batteries. Journal of Alloys and Compounds, 804, 339-347. (Tier1 and Q1, IF2025=6.3)
  13.  
  1. Wang, Y., Thanwisai, P., Yao, Y. Low temperature, low emission iron production. US Patent App. 18/934,563, 2025
  1. 6 finalists in student PITCES competition at the 2025 ARPA-E Energy Innovation Summit Student Program by S. Department of Energy (DoE), Washington, D.C., USA (March 18th, 2025)
  2. 1st Place Winner Outstanding Oral Presentation Award, the 7th Meeting and Sharing for Science Graduate Students, Khon Kaen University, Khon Kaen, Thailand (2020)
  3. Best Student Poster Presentation Award, The Second Materials Research Society (MRS) of Thailand International Conference, Pattaya, Thailand (2019)
  4. Scholarship recipient subsidized by the Development and and Promotion of Science and Technology Talents Project (DPST), Thai Government (2015-2021)