ชนาภา คงมาก
รองศาสตราจารย์
ภาควิชาวัสดุศาสตร์ คณะวิทยาศาสตร์ บางเขน
fscicpko@ku.ac.th
02-562-5555 ext.1551
EDUCATION
  • D.E.U.G. (Sciences de la Matiere), Universite Lille I, ฝรั่งเศส, 2546
  • M.S.T. (Physico-Chimie et Economie de l'Energetique), Universite Lille I, ฝรั่งเศส, 2548
  • Master (Matiere Condensee), Ecole Nationale Superieure de Chimie de Lille, ฝรั่งเศส, 2549
  • Doctorat (Molecules et Matiere Condensee), Universite des Sciences et Technologies de Lille, ฝรั่งเศส, 2553



RESOURCE
แหล่งที่มา
จำนวนหน่วยปฏิบัติการที่เข้าร่วม 0 หน่วย จำนวนเครื่องมือวิจัย 0 ชิ้น สถานที่ปฏิบัติงานวิจัย ห้อง 109 103 และ 104 ชั้น 1 อาคารตึก ศ คุณชวนชม จันทระเปารยะ ภาควิชาคหกรรมศาสตร์
แสดงเพิ่มเติม


ผลงาน
Works
PROJECT
งานวิจัยที่อยู่ระหว่างการดำเนินการ: 2
งานวิจัยที่เสร็จสิ้นแล้ว: 20
OUTPUT
บทความ: 36
ทรัพย์สินทางปัญญา: 1
OUTCOME
AWARD
ประกาศเกียรติคุณ/รางวัลนักวิจัย: 0
รางวัลผลงานวิจัย/สิ่งประดิษฐ์: 0
รางวัลผลงานนำเสนอในการประชุมวิชาการ: 1


INTEREST
ความสนใจ
Synthesis and characterizations of new materials, ceramics and catalysts, Understanding the relationship between electrical/catalytic properties and structure of materials, Study of chemical-reaction mechanism by using in-situ techniques


Expertise Cloud
ความเชี่ยวชาญ
Person Relationship
นักวิจัย
ที่มีผลงานมากที่สุด 10 คนแรก
Scopus h-index
h-index: 14
# Document title Authors Year Source Cited by
1 Effect of calcination temperature on structural and optical properties of MAl2O4 (M = Ni, Cu, Zn) aluminate spinel nanoparticles Tangcharoen T., T-Thienprasert J., Kongmark C. 2019
Journal of Advanced Ceramics,
8(3), pp. 352-366
126
2 Performance and status of beamline BL8 at SLRI for X-ray absorption spectroscopy Klysubun W., Sombunchoo P., Deenan W., Kongmark C. 2012
Journal of Synchrotron Radiation,
19(6), pp. 930-936
114
3 A comprehensive scenario of the crystal growth of ?-Bi 2MoO6 catalyst during hydrothermal synthesis Kongmark C., Kongmark C., Coulter R., Cristol S., Rubbens A., Pirovano C., L?fberg A., Sankar G., Van Beek W., Van Beek W., Bordes-Richard E., Vannier R.N. 2012
Crystal Growth and Design,
12(12), pp. 5994-6003
81
4 Optical properties and versatile photocatalytic degradation ability of MAl2O4 (M = Ni, Cu, Zn) aluminate spinel nanoparticles Tangcharoen T., T-Thienprasert J., Kongmark C. 2018
Journal of Materials Science: Materials in Electronics,
29(11), pp. 8995-9006
63
5 Elucidating the genesis of Bi2MoO6 catalyst by combination of synchrotron radiation experiments and Raman scattering Kongmark C., Martis V., Rubbens A., Pirovano C., L?fberg A., Sankar G., Bordes-Richard E., Vannier R.N., Van Beek W., Van Beek W. 2009
Chemical Communications,
(32), pp. 4850-4852
54
6 Synthesis of nanocrystalline NiO/ZnO heterostructured composite powders by sol-gel auto combustion method and their characterizations Tangcharoen T., Klysubun W., Kongmark C. 2018
Journal of Molecular Structure,
1156, pp. 524-533
53
7 Effects of Potassium and Manganese Promoters on Nitrogen-Doped Carbon Nanotube-Supported Iron Catalysts for CO2 Hydrogenation Kangvansura P., Chew L.M., Kongmark C., Santawaja P., Ruland H., Xia W., Schulz H., Worayingyong A., Muhler M. 2017
Engineering,
3(3), pp. 385-392
46
8 SUT-NANOTEC-SLRI beamline for X-ray absorption spectroscopy Klysubun W., Kidkhunthod P., Tarawarakarn P., Sombunchoo P., Kongmark C., Limpijumnong S., Rujirawat S., Yimnirun R., Tumcharern G., Faungnawakij K. 2017
Journal of Synchrotron Radiation,
24(3), pp. 707-716
41
9 Synthesis of ?-Bi2MoO6 catalyst studied by combined high-resolution powder diffraction, XANES and Raman spectroscopy Kongmark C., Martis V., Pirovano C., L?fberg A., Van Beek W., Van Beek W., Sankar G., Rubbens A., Cristol S., Vannier R.N., Bordes-Richard E. 2010
Catalysis Today,
157(1-4), pp. 257-262
39
10 Synchrotron X-ray absorption spectroscopy and cation distribution studies of NiAl 2 O 4 , CuAl 2 O 4 , and ZnAl 2 O 4 nanoparticles synthesized by sol-gel auto combustion method Tangcharoen T., Klysubun W., Kongmark C. 2019
Journal of Molecular Structure,
1182, pp. 219-229
31
11 Synchrotron X-ray absorption spectroscopy and magnetic characteristics studies of metal ferrites (metal = Ni, Mn, Cu) synthesized by sol-gel auto-combustion method Tangcharoen T., Tangcharoen T., Klysubun W., Kongmark C., Pecharapa W., Pecharapa W. 2014
Physica Status Solidi (A) Applications and Materials Science,
211(8), pp. 1903-1911
20
12 Catalytic remediation of phenol contaminated wastewater using Cu-Zn hydroxide nitrate Srikhaow A., Smith S., Uraisin K., Suttiponparnit K., Kongmark C., Kongmark C., Chuaicham C. 2016
RSC Advances,
6(43), pp. 36766-36774
19
13 Synchrotron X-ray absorption spectroscopy study of the local atomic structures and cation ordering in perovskite- and spinel-type zinc stannate synthesized by co-precipitation method Tangcharoen T., Kongmark C., Pecharapa W. 2015
Journal of Molecular Structure,
1102, pp. 95-100
18
14 Catalytic behaviors of supported cu, ni, and co phosphide catalysts for deoxygenation of oleic acid Kochaputi N., Kongmark C., Khemthong P., Khemthong P., Butburee T., Butburee T., Kuboon S., Kuboon S., Worayingyong A., Faungnawakij K., Faungnawakij K. 2019
Catalysts,
9(9), 715
15
15 Synthesis and characterization of nanocrystalline CuO/ZnO composite powders with enhanced photodegradation performance under sunlight irradiation Tangcharoen T., Klysubun W., Kongmark C. 2020
Journal of Materials Science: Materials in Electronics,
31(15), pp. 12807-12822
10
16 Towards understanding mesopore formation in zeolite Y crystals using alkaline additives via in situ small-angle X-ray scattering Gu J., Lin J., Smith A.J., Soontaranon S., Rugmai S., Kongmark C., Coppens M.O., Sankar G. 2022
Microporous and Mesoporous Materials,
338, 111867
10
17 The Effects of Metal Ions in Euphorbia cf. lactea Latex on the Fibrinogenolytic Activity of a Plant Protease Siritapetawee J., Limphirat W., Kantachot C., Kongmark C., Kongmark C. 2015
Applied Biochemistry and Biotechnology,
175(1), pp. 232-242
10
18 In Situ X-ray Absorption Fine Structure Probing-Phase Evolution of CuFe2O4 in Nanospace Confinement Khemthong P., Khemthong P., Kongmark C., Kochaputi N., Mahakot S., Rodporn S., Faungnawakij K., Faungnawakij K., Faungnawakij K. 2019
Inorganic Chemistry,
58(10), pp. 6584-6587
9
19 Photocatalytic performance of Fe-substituted ZnAl2O4 powders under sunlight irradiation on degradation of industrial dyes Tangcharoen T., T-Thienprasert J., Kongmark C. 2021
International Journal of Applied Ceramic Technology
9
20 Roles of supports on reducibility and activities of Cu3P catalysts for deoxygenation of oleic acid: In situ XRD and XAS studies Kochaputi N., Khemthong P., Khemthong P., Kasamechonchung P., Butburee T., Butburee T., Limphirat W., Poo-arporn Y., Kuboon S., Kuboon S., Faungnawakij K., Faungnawakij K., Kongmark C., Kongmark C. 2021
Molecular Catalysis,
111425
9
21 Cation exchange in Ni–Cu–Zn aluminate spinels revealed by EXAFS Tangcharoen T., Klysubun W., T-Thienprasert J., Kongmark C. 2020
Journal of Solid State Chemistry,
292, 121695
7
22 Correlating the effect of preparation methods on the structural and magnetic properties, and reducibility of CuFe2O4 catalysts Khunphonoi R., Khemthong P., Khemthong P., Khemthong P., Luadthong C., Kuboon S., Kongmark C., Viriya-Empikul N., Kidkhunthod P., Kidkhunthod P., Pinitsoontorn S., Faungnawakij K. 2022
RSC Advances,
12(24), pp. 15526-15533
5
23 Local environment in Ba2In2-xWxO5+3x/2 oxide ion conductors Daviero-Minaud S., Rolle A., Kongmark C., Vannier R.N. 2009
Journal of Solid State Chemistry,
182(2), pp. 289-294
5
24 Pressure study of superconductivity and magnetism in pure and Rh-doped RuSr2GdCu2O8 materials Steiger M., Kongmark C., Kongmark C., Rueckert F., Harding L., Torikachvili M.S. 2007
Physica C: Superconductivity and its Applications,
453(1-2), pp. 24-30
4
25 Flexible Ni-Based Bimetallic Spinel Oxide (NiM2O4, M = Mn, Fe, Co) Electrodes for Supercapacitor Applications Maneesard P., Somsongkul V., Chirawatkul P., Saiyasombat C., Vannier R.N., Vannier R.N., Kongmark C. 2024
Physica Status Solidi (A) Applications and Materials Science,
2400003
4
26 Enhanced visible light response of TiO2 nanoparticles by natural dyes Somsongkul V., Chirawatkul P., Kongmark C. 2021
ScienceAsia,
47, pp. 69-75
3
27 Composition Dependence of Structural, Optical, Magnetic and Photodegradation Properties of Nanocrystalline NiO/CuO Heterostructured Powders Tangcharoen T., Klysubun W., Kongmark C. 2022
Physica Status Solidi (A) Applications and Materials Science,
2200072
3
28 Development of magnetic recyclable spinel photocatalysts with enhanced sunlight-driven degradation of industrial dyes Tangcharoen T., T-Thienprasert J., Kongmark C. 2021
Journal of the American Ceramic Society
2
29 A morphological investigation of ag/graphite oxide/tio2 composites for photocatalysis Junin C., Worayingyong A., Kongmark C., Yordsri V., Chayasombat B., Thanachayanont C., Klysubun W. 2020
Solid State Phenomena,
302 SSP, pp. 9-17
0
30 Single-Step One-Pot Synthesis of NiCo2O4/Molybdate Nanocomposites for Flexible Supercapacitor Electrodes Somsongkul V., Chirawatkul P., Duffort V., Mountadir S., Capoen E., Vannier R.N., Vannier R.N., Kongmark C. 2024
Physica Status Solidi (A) Applications and Materials Science,
2400002
0
31 Oxygen diffusion mechanisms in two series of oxide ion conductors: BIMEVOX and Brownmillerite materials Rolle A., Roussel P., Kongmark C., Pirovano C., Vannier R. 2008
Ceramic Engineering and Science Proceedings,
28(4), pp. 227-236
0
32 X-ray absorption spectroscopy studies of Cu (2-x)Zn xP2O7 binary pyrophosphates Baitahe R., Kongmark C., Muanghlua R., Seeharaj P., Vittayakorn N. 2013
Ferroelectrics,
453(1), pp. 100-105
0
33 The disordered cation distribution studies of nanosized zinc ferrite powders by synchrotron X-ray absorption spectroscopy Tangcharoen T., Tangcharoen T., Klysubun W., Kongmark C., Kongmark C., Pecharapa W., Pecharapa W. 2016
2014 IEEE International Nanoelectronics Conference, INEC 2014,
7460422
0
34 Synchrotron X-ray absorption spectroscopy study of disordered cation distribution of nanosized zinc ferrite powders Tangcharoen T., Tangcharoen T., Kongmark C., Klysubun W., Pecharapa W., Pecharapa W. 2016
International Journal of Nanotechnology,
13(7), pp. 545-560
0
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