ผู้ช่วยศาสตราจารย์ ดร.ภูมิเดช พู่ทองคำ
- Room 1228/4 Mahamakut Building, Department of Chemistry, Faculty of Science Chulalongkorn University Phayathai Road, Patumwan Bangkok 10330, THAILAND
- 0-2218-7704
การศึกษา
- [2020] Ph.D., Analytical Chemistry, University of Virginia, USA
- [2014] B.Sc., Chemistry (First Class Honors with Gold Medal), Chulalongkorn University, Bangkok, Thailand
ประสบการณ์การทำงาน
- [2023-present] Assistant Professor, Department of Chemistry, Faculty of Science, Chulalongkorn University
- [2024-present] Assistant to the Department Chair, Student Affairs
- [2024-present] Assistant to the President, The Science Society of Thailand
- [2024-present] Mentor and Observer of the Thailand Team in the International Chemistry Olympiad
- [2022-2025] Deputy Secretary General, Chemical Society of Thailand
- [2020-2023] Lecturer, Department of Chemistry, Faculty of Science, Chulalongkorn University
- [2015-2020] Teaching and Research Assistant, Department of Chemistry, University of Virginia
หัวข้องานวิจัยปัจจุบัน
- Electrochemistry at carbon electrodes, including laser-induced graphene (LIG)
- Advanced electrode materials for electrochemical sensors
- Machine learning and data analysis for analytical chemistry
- Teaching and learning electrochemistry and analytical chemistry
รางวัลและทุน
- [2025] Outstanding Young Investigator Award in Sciences and Technology, Chulalongkorn University
- [2025] Outstanding Young Investigator Award in Physical Sciences and Mathematics, Faculty of Science
- [2023] Outstanding Young Investigator Award, Department of Chemistry
- [2022] Outstanding Reviewer, Analyst
- [2022] Research Grant for New Scholar, Ministry of Higher Education, Science, and Innovation
- [2019] Sidney M. Hecht Graduate Fellowship for the most outstanding chemistry graduate student
- [2014] Anandamahidol Foundation Scholarship, Science Division
- [2011-2014] Undergraduate Honors Program Scholarship
- [2009] Gold Medal, The 5th Thailand Chemistry Olympiad
ผลงานตีพิมพ์
•Functionalized laser-induced graphene enabled ultrasensitive electroimmunoassay for rapid hepatitis B virus detection. Bioelectrochemistry.
2026. Cited 0
•Laser-Induced Graphene-Based microfluidic electrochemical biosensor for clinical analysis. Microchemical Journal. 2025. Cited 5
•Polyaniline/Cellulose Nanofiber/Polyvinyl Alcohol Porous Conductive Hydrogel-Modified Graphene Electrode for Simultaneous Detection of Cadmium and Nickel in Wastewater. Microchemical Journal. 2025. Cited 10
•Recent advances and trends in the applications of nanomaterials in optical sensing platforms. Trac Trends in Analytical Chemistry. 2024. Cited 19
•Size-dependent electrochemistry of laser-induced graphene electrodes. Electrochimica Acta. 2024. Cited 22
Full list
•Laser-Induced Graphene-Based microfluidic electrochemical biosensor for clinical analysis. Microchemical Journal. 2025. Cited 5
•Polyaniline/Cellulose Nanofiber/Polyvinyl Alcohol Porous Conductive Hydrogel-Modified Graphene Electrode for Simultaneous Detection of Cadmium and Nickel in Wastewater. Microchemical Journal. 2025. Cited 10
•Recent advances and trends in the applications of nanomaterials in optical sensing platforms. Trac Trends in Analytical Chemistry. 2024. Cited 19
•Size-dependent electrochemistry of laser-induced graphene electrodes. Electrochimica Acta. 2024. Cited 22
Full list
