āļ›āļ“āļīāļ—āļąāļ• āļŦāļēāļŠāļīāļ™
āļĢāļ­āļ‡āļĻāļēāļŠāļ•āļĢāļēāļˆāļēāļĢāļĒāđŒ
āļ āļēāļ„āļ§āļīāļŠāļēāđ€āļ„āļĄāļĩ āļ„āļ“āļ°āļ§āļīāļ—āļĒāļēāļĻāļēāļŠāļ•āļĢāđŒ āļšāļēāļ‡āđ€āļ‚āļ™
fscipths@ku.ac.th
0-2562-5444 ext 2186
EDUCATION
  • Ph.D. (Inorganic Chemistry), The Ohio State University, United States of America, 2555
  • M.S. (Chemistry), The Ohio State University, United States of America, 2552
  • āļ§āļ—.āļĄ. (āđ€āļ„āļĄāļĩ), āļĄāļŦāļēāļ§āļīāļ—āļĒāļēāļĨāļąāļĒāđ€āļāļĐāļ•āļĢāļĻāļēāļŠāļ•āļĢāđŒ, āđ„āļ—āļĒ, 2550
  • āļ§āļ—.āļš. (āđ€āļ„āļĄāļĩ), āļĄāļŦāļēāļ§āļīāļ—āļĒāļēāļĨāļąāļĒāļ˜āļĢāļĢāļĄāļĻāļēāļŠāļ•āļĢāđŒ, āđ„āļ—āļĒ, 2546



RESOURCE
āđāļŦāļĨāđˆāļ‡āļ—āļĩāđˆāļĄāļē
āļˆāļģāļ™āļ§āļ™āļŦāļ™āđˆāļ§āļĒāļ›āļāļīāļšāļąāļ•āļīāļāļēāļĢāļ—āļĩāđˆāđ€āļ‚āđ‰āļēāļĢāđˆāļ§āļĄ 0 āļŦāļ™āđˆāļ§āļĒ āļˆāļģāļ™āļ§āļ™āđ€āļ„āļĢāļ·āđˆāļ­āļ‡āļĄāļ·āļ­āļ§āļīāļˆāļąāļĒ 0 āļŠāļīāđ‰āļ™ āļŠāļ–āļēāļ™āļ—āļĩāđˆāļ›āļāļīāļšāļąāļ•āļīāļ‡āļēāļ™āļ§āļīāļˆāļąāļĒ āļŦāđ‰āļ­āļ‡ 109 103 āđāļĨāļ° 104 āļŠāļąāđ‰āļ™ 1 āļ­āļēāļ„āļēāļĢāļ•āļķāļ āļĻ āļ„āļļāļ“āļŠāļ§āļ™āļŠāļĄ āļˆāļąāļ™āļ—āļĢāļ°āđ€āļ›āļēāļĢāļĒāļ° āļ āļēāļ„āļ§āļīāļŠāļēāļ„āļŦāļāļĢāļĢāļĄāļĻāļēāļŠāļ•āļĢāđŒ
āđāļŠāļ”āļ‡āđ€āļžāļīāđˆāļĄāđ€āļ•āļīāļĄ


āļœāļĨāļ‡āļēāļ™
Works
PROJECT
āļ‡āļēāļ™āļ§āļīāļˆāļąāļĒāļ—āļĩāđˆāļ­āļĒāļđāđˆāļĢāļ°āļŦāļ§āđˆāļēāļ‡āļāļēāļĢāļ”āļģāđ€āļ™āļīāļ™āļāļēāļĢ: 10
āļ‡āļēāļ™āļ§āļīāļˆāļąāļĒāļ—āļĩāđˆāđ€āļŠāļĢāđ‡āļˆāļŠāļīāđ‰āļ™āđāļĨāđ‰āļ§: 21
OUTPUT
āļšāļ—āļ„āļ§āļēāļĄ: 35
OUTCOME
AWARD
āļ›āļĢāļ°āļāļēāļĻāđ€āļāļĩāļĒāļĢāļ•āļīāļ„āļļāļ“/āļĢāļēāļ‡āļ§āļąāļĨāļ™āļąāļāļ§āļīāļˆāļąāļĒ: 3
āļĢāļēāļ‡āļ§āļąāļĨāļœāļĨāļ‡āļēāļ™āļ§āļīāļˆāļąāļĒ/āļŠāļīāđˆāļ‡āļ›āļĢāļ°āļ”āļīāļĐāļāđŒ: 0
āļĢāļēāļ‡āļ§āļąāļĨāļœāļĨāļ‡āļēāļ™āļ™āļģāđ€āļŠāļ™āļ­āđƒāļ™āļāļēāļĢāļ›āļĢāļ°āļŠāļļāļĄāļ§āļīāļŠāļēāļāļēāļĢ: 0


INTEREST
āļ„āļ§āļēāļĄāļŠāļ™āđƒāļˆ
Synthetic Inorganic Nanomaterials, Dye-sensitized Solar Cells, Flavor Sensing, Nanomaterial synthesisi, Electrochemistry


Expertise Cloud
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Person Relationship
āļ™āļąāļāļ§āļīāļˆāļąāļĒ
āļ—āļĩāđˆāļĄāļĩāļœāļĨāļ‡āļēāļ™āļĄāļēāļāļ—āļĩāđˆāļŠāļļāļ” 10 āļ„āļ™āđāļĢāļ
Scopus h-index
h-index: 14
# Document title Authors Year Source Cited by
1 NixCo3-XO4 nanowire arrays for electrocatalytic oxygen evolution Li Y., Hasin P., Wu Y. 2010
Advanced Materials,
22(17), pp. 1926-1929
855
2 Valence band-edge engineering of nickel oxide nanoparticles via cobalt doping for application in p-type dye-sensitized solar cells Natu G., Hasin P., Huang Z., Ji Z., He M., Wu Y. 2012
ACS Applied Materials and Interfaces,
4(11), pp. 5922-5929
124
3 P-Type dye-sensitized NiO solar cells: A study by electrochemical impedance spectroscopy Huang Z., Natu G., Ji Z., Hasin P., Wu Y. 2011
Journal of Physical Chemistry C,
115(50), pp. 25109-25114
105
4 Electrocatalytic activity of graphene multilayers toward I -/I3-: Effect of preparation conditions and polyelectrolyte modification Hasin P., Alpuche-Aviles M., Alpuche-Aviles M., Wu Y. 2010
Journal of Physical Chemistry C,
114(37), pp. 15857-15861
66
5 Mesoporous Nb-doped TiO 2 as Pt support for counter electrode in dye-sensitized solar cells Hasin P., Alpuche-Aviles M.A., Li Y., Wu Y. 2009
Journal of Physical Chemistry C,
113(17), pp. 7456-7460
58
6 Sponge-like CuInS2 microspheres on reduced graphene oxide as an electrocatalyst to construct an immobilized acetylcholinesterase electrochemical biosensor for chlorpyrifos detection in vegetables Itsoponpan T., Thanachayanont C., Hasin P. 2021
Sensors and Actuators, B: Chemical,
337, 129775
58
7 Preparation, characterization, and electrocatalytic performance of graphene-methylene blue thin films Wang D., Wang D., Li Y., Li Y., Hasin P., Wu Y. 2011
Nano Research,
4(1), pp. 124-130
36
8 Sonochemical synthesis of copper hydride (CuH) Hasin P., Wu Y. 2012
Chemical Communications,
48(9), pp. 1302-1304
32
9 Free-standing 3D core-shell architecture of Ni3S2@NiCoP as an efficient cathode material for hybrid supercapacitors Shanmugam Anuratha K., Su Y.Z., Wang P.J., Hasin P., Wu J., Hsieh C.K., Chang J.K., Lin J.Y. 2022
Journal of Colloid and Interface Science,
625, pp. 565-575
26
10 Potential-reversal electrodeposited MoS2 thin film as an efficient electrocatalytic material for bifacial dye-sensitized solar cells Chang C.Y., Anuratha K.S., Lin Y.H., Xiao Y., Hasin P., Lin J.Y. 2020
Solar Energy,
206, pp. 163-170
20
11 Economical nanocomposites of cobalt or nickel species and polyaniline-derived N-doped mesoporous carbons for dye-sensitized solar cells as counter electrodes Hasin P., Amornkitbamrung V., Chanlek N. 2017
Journal of Catalysis,
351, pp. 19-32
20
12 Electrochemical milling process to synthesize amorphous CoS as efficient electrocatalyst for the counter electrode of an efficient dye-sensitized solar cell Hasin P. 2016
Solar Energy,
135, pp. 398-407
17
13 Spray-drying synthesis of fluorine-doped LiNi0.5Mn1.5O4 as high-voltage cathodes for lithium-ion batteries Shih C.P., Krajewski M., Hasin P., Chen C.H., Lee C.Y., Lin J.Y. 2023
Journal of Alloys and Compounds,
932, 167641
16
14 Modification of reduced graphene oxide layers by electron-withdrawing/donating units on molecular dopants: Facile metal-free counter electrode electrocatalysts for dye-sensitized solar cells Rakspun J., Chiang Y.J., Chen J.Y., Yeh C.Y., Amornkitbamrung V., Chanlek N., Vailikhit V., Hasin P. 2020
Solar Energy,
203, pp. 175-186
14
15 Highly efficient tungsten-doped hierarchical structural N-Enriched porous carbon counter electrode material for dye-sensitized solar cells Srathongluan P., Lin J.Y., Chanlek N., Vailikhit V., Hasin P. 2020
Electrochimica Acta,
351, 136455
14
16 Electrodeposited Co0.85Se thin films as free-standing cathode materials for high-performance hybrid supercapacitors Mondal A., Lee C.Y., Chang H., Hasin P., Yang C.R., Lin J.Y. 2021
Journal of the Taiwan Institute of Chemical Engineers,
121, pp. 205-216
13
17 Low-temperature synthesis of mesoporous cobalt(II) carbide using graphene oxide as a carbon source Hasin P. 2014
Journal of Physical Chemistry C,
118(9), pp. 4726-4732
13
18 Well-Dispersive Polypyrrole and MoSe2Embedded in Multiwalled Carbon Nanotube@Reduced Graphene Oxide Nanoribbon Electrocatalysts as the Efficient Counter Electrodes in Rigid and Plastic Dye-Sensitized Solar Cells Kladkaew M., Lin J.Y., Chanlek N., Vailikhit V., Hasin P. 2022
ACS Applied Energy Materials
13
19 In situ formation of nitrogen doped mesoporous carbon via directly carbonizing polyaniline as an efficient electrocatalyst for determination of capsaicin Temcheon P., Chienthavorn O., Siriwatcharapiboon W., Hasin P. 2019
Microporous and Mesoporous Materials,
278, pp. 327-339
10
20 High-performance asymmetric supercapacitor achieved by CoS2 nanoparticles decorated polyaniline functionalized SBA-15-derived mesoporous nitrogen-doped carbon with rod-like architectures Ponghiransmith C., Lin J.Y., Kobsiriphat W., Limthongkul P., Hasin P. 2021
Journal of Alloys and Compounds,
162773
9
21 Dispersed MnO2 nanoparticles/sugarcane bagasse-derived carbon composite as an anode material for lithium-ion batteries Pongpanyanate K., Roddecha S., Piyanirund C., Phraewphiphat T., Hasin P. 2024
RSC Advances,
14(4), pp. 2354-2368
9
22 Spinel LiNi0.5Mn1.5O4 with ultra-thin Al2O3 coating for Li-ion batteries: investigation of improved cycling performance at elevated temperature Lee B.Y., Krajewski M., Huang M.K., Hasin P., Lin J.Y. 2021
Journal of Solid State Electrochemistry
8
23 Pulsed laser deposition as an efficient tool to enhance the performance of electrocatalysis design, strategies and current perspectives Mathankumar M., Balasubramanian S., Hasin P., Lin J.Y. 2024
International Journal of Hydrogen Energy,
60, pp. 668-687
6
24 Germanium-iron alloy particle/multiwalled carbon nanotube composite anode by milling-assisted covalent-bonding for high-performance and stable-cycling lithium-ion batteries Kaewraung W., Hasin P. 2024
Journal of Energy Storage,
82, 110517
5
25 Effects of Butadiene Sulfone as an Electrolyte Additive on the Formation of Solid Electrolyte Interphase in Lithium-Ion Batteries Based on Li4Ti5O12 Anode Materials Kung Y.R., Li C.Y., Hasin P., Su C.H., Lin J.Y., Lin J.Y. 2023
Polymers,
15(8), 1965
5
26 Controllable synthesis of metallo-alkoxide precursor-derived nickel aluminate spinels using TEA-gel process and morphology-dependent reducibility Koonsaeng N., Laobuthee A., Hasin P. 2016
Materials Chemistry and Physics,
182, pp. 287-297
5
27 Efficient electrocatalytic nanocomposites of carbon nanotubes decorated with nickel selenides for urea oxidation reaction Mathankumar M., Tu S.L., Hasin P., Hsieh C.K., Lin J.Y. 2024
International Journal of Hydrogen Energy,
77, pp. 373-382
4
28 Phase-controllable synthesis of nickel selenide nanostructures decorated on carbon nanotubes as efficient binder-free cathodes for hybrid supercapacitors Su Y.Z., Mathankumar M., Lee W.Y., Hasin P., Subramanian B., Hsieh C.K., Lin J.Y. 2024
Journal of Energy Storage,
89, 111728
1
29 A Ternary Nanocomposite Based on Nano-Bimetallic Platinum/Nickel Decorated on Multi-Walled Carbon Nanotubes for Flow Injection Amperometric Detection of Promethazine Saraban A., Promsuwan K., Saichanapan J., Soleh A., Saisahas K., Samoson K., Wangchuk S., Sanjailuk T., Hasin P., Limbut W. 2023
Journal of the Electrochemical Society,
170(6), 067504
1
30 The Synthesis, Crystal Structure, DFT Calculations and Optical Properties of Orcinolic Derivatives as OH? Indicators Wannalerse B., Kwanmuang P., Jansukra P., Pinchaipat B., Duangthongyou T., Hasin P., Songsasen A., Chainok K., Suramitr S. 2022
Crystals,
12(9), 1252
0
31 Electrodeposited Co0.85Se/Ni3Se2 heterostructure as an efficient binder-free cathode for fast electrochemical energy storage devices Mathankumar M., Chang H., Hasin P., Lu M.N., Hsieh C.K., Lin J.Y. 2024
Journal of Energy Storage,
101, 113726
0
32 Cobalt-modified exfoliated zirconium phosphate/histidine-functionalized graphene quantum dots-based electrochemical biosensor for promoting sensitive detection of methyl parathion in agricultural foods and water bodies samples Pengsook W., Thanachayanont C., Wahyuni W.T., Hasin P. 2026
Talanta,
296, 128403
0
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