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สาขาฟิสิกส์ คณะวิทยาศาสตร์ มหาวิทยาลัยขอนแก่น

 

ประวัติ

    • 2547 วท.บ. (ฟิสิกส์) มหาวิทยาลัยขอนแก่น
    • 2551   วท.ม  (ฟิสิกส์) จุฬาลงกรณ์มหาวิทยาลัย
    • 2555   ปร.ด  (ฟิสิกส์) จุฬาลงกรณ์มหาวิทยาลัย

ห้องทำงาน อาคารวิทยวิภาส ชั้น 4 คณะวิทยาศาสตร์ มหาวิทยาลัยขอนแก่น

E-mail: pawinee@kku.ac.th

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  1. MOVPE growth of dilute (III)-III-V-Nitride epitaxial films and quantum structures
  2. Characterization of epitaxial films and heterostructures by X-ray diffraction (XRD), Raman spectroscopy, photoluminescence (PL), and photoreflectance (PR), etc.
  3. Synthesis and characterization of electrode material for energy storage device
  4. Synthesis porous carbon from biowaste for energy storage device
  5. Synthesis nanostructure material for carbon capture
  1. Klangtakai, P.; Sanorpim, S.; Onabe, K. Optical Study of GaAsN/GaAs and InGaAsN/GaAs T-shaped Wuantum Wires Grown by MOVPE. Cryst. Growth., 2013, 370, 200–203. (Q2, IF = 1.83).
  2. Klangtakai, P.*; Sanorpim, S.; Karlsson, F.; Holtz, P. O.; Pimanpang, S.; Onabe, K. Anomalous Excitation-power Dependent Photoluminescence of InGaAsN/GaAs T-shaped Quantum Wire. Status Solidi A, 2014, 211 (8), 1740–1744. (Q2, IF= 2.170).
  3. Klangtakai, P.*; Sanorpim, S.; Wattanawareekul, A.; Suwanyangyaun, P.; Srepusharawoot, P.; Onabe, K. Effect of Gamma-ray Irradiation on Structural Properties of GaAsN Films Grown by Metal Organic Vapor Phase Epitaxy. Cryst. Growth., 2015, 418, 145–152. (Q2, IF = 1.83).
  4. Tagsin, P.; Klangtakai, P.; Harnchana, V.; Pimanpang, S.; Amornkitbamrung, V. Synthesis and Supercapacitor Characteristics of Hydrothermally-deposited MnO2 Films and Chemically Co-deposited MnO2-polyaniline Films on Stainless-steel Substrates. Korean. Phys. Soc., 2015, 66(12), 1901-1907. (Q4, IF = 0.63).
  5. Tagsin, P.; Klangtakai, P.*; Harnchana, V.; Amornkitbamrung, V.; Pimanpang S.; Kumnorkaew, P. Enhanced Specific Capacitance of an Electrophoretic Deposited MnO2-Carbon Nanotube Supercapacitor. Korean. Phys. Soc., 2017, 71(12), 997-1005. (Q4, IF = 0.63).
  6. Ardchongtong, P.; Kumlangwan, P.; Towannang, M.; Suksangrat, P.; Srepusharawoot, P.; Prachumrak, N.; Klangtakai, P.*; Pimanpang, S.; Promarak, V.; Amornkitbamrung, V. Room Temperature Preparation of δ-phase CsSn1−xPbxI3 Films for Hole–transport in Solid-state Dye-Sensitized Solar Cells. Mater. Sci.: Mater. Electron., 2018, 29, 7811–7819. (Q2, IF = 2.779).
  7. Phakkhawan, A.; Klangtakai, P.*; Chompoosor, A.; Pimanpang, S.; Amornkitbamrung, V. A Comparative Study of MnO2 and Composite MnO2–Ag Nanostructures Prepared by a Hydrothermal Technique on Supercapacitor Applications. Mater. Sci.: Mater. Electron., 2018, 29, 9406–9417. (Q2, IF = 2.779).
  8. Faibut, N.; Kamlangwan, P.; Jarernboon, W.; Klangtakai, P.; Harnchana, V.; Amornkitbamrung, V. CH3NH3PbI3 Thin Films Prepared by Hot-casting Technique in the Air: Growth Mechanism, Trap States and Relating Solar Cells. J. Appl. Phys., 2019, 58 (SI), SIID07. (Q1, IF = 1.491).
  9. Phumuen, P.; Kumnorkaew, P.; Srepusharawoot, P.; Klangtakai, P.*; Pimanpang, S.; Amornkitbamrung, V. Ball Milling Modification of Perovskite LaNiO3 Powders for Enhancing Electrochemical Pseudocapacitor. Interfaces., 2021, 25, 101282. (Q1, IF = 6.137).
  10. Tagsin, P.; Suksangrat, P.; Klangtakai, P.*; Srepusharawoot, P.; Ruttanapun, C.; Kumnorkaew, P.; Pimanpang, S.; Amornkitbamrung, V. Electrochemical mechanisms of activated carbon, α-MnO2 and composited activated carbon-α-MnO2 films in supercapacitor applications. Surf. Sci., 2021, 570, 151056. (Q1, IF = 7.392).
  11. Phakkhawan, A.; Horprathum, M.; Chanlek, N.; Nakajima, H.; Nijpanich, S.; Kumnorkaew, P.; Pimanpang, S.; Klangtakai, P.*; Amornkitbamrung, V. Activated Carbons Derived from Sugarcane Bagasse for High-capacitance Electrical Double Layer Capacitors. Mater. Sci.: Mater. Electron., 2022, 33, 663–674. (Q2, IF = 2.779).
  12. Prasan, P.; Aunping, N.; Chanlek, N.; Kumlangwan, P.; Towannang, M.; Klangtakai, P.*; Srepusharawoot, P.; Thongnum, A., Kumnorkaew, P.; Jarernboon, W.; Pimanpang, S.; Amornkitbamrung, V. Influence of SCN moiety on CH3NH3PbI3 perovskite film properties and the performance of carbon-based hole-transport-layer-free perovskite solar cells. Mater. Sci.: Mater. Electron., 2022, 33, 1589–1603. (Q2, IF = 2.779).
  13. Pleuksachat, S.; Krabao, P.; Pongha, S.; Harnchana, V.; Klangtakai, P.; Limphirat, W.; Soontaranon, S.; Nash, J.; Meethong, N. Dynamic phase transition behavior of a LiMn5Fe0.5PO4 olivine cathode material for lithium-ion batteries revealed through in-situ X-ray techniques. J. Energy Chem., 2022, 71, 452 – 459. (Q1, IF = 13.599).
  14. Phakkhawan, A.; Suksangrat, P.; Srepusharawoot, P.; Ruangchai, S.; Klangtakai, P.*; Pimanpang, S.; Amornkitbamrung, V. Reagent-and Solvent-mediated Fe2O3 Morphologies and Electrochemical Mechanism of Fe2O3 J. Alloys Compd., 2022, 919, 165702. (Q1, IF = 6.371).
  15. Phakkhawan, A.; Sakulkalavek, A.; Buranurak, S.; Klangtakai, P.*; Pangza, K.; Jangsawang, N.; Nasompag, S.; Horprathum, M.; Kijamnajsuk, S.; Sanorpim, S. Investigation of Radiation Effect on Structural and Optical Properties of GaAs under High-energy Electron Irradiation. Materials, 2022, 15(17) (Q1, IF = 3.748).
  16. Ponken, T; Phumuen, P.; Phosopa, N.; Tagsin, P.; Ponhan, W.; Phakkhawan, A.; Klangtakai, P. Activated Carbon Synthesized from Bamboo Shoots for Supercapacitor Application. Creative Science 15 (2023) 247051. (TCI-1).