著書論文等- 福島 潤 -
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件数:82件
[2018]
1.[] Kinetics of microwave synthesis of AlN by carbothermal-reduction–nitridation at low temperature.[Journal of the American Ceramic Society,(2018)]H. Chikami, J. Fukushima*, Y. Hayashi and H. Takizawa
2.[] Linear Magnetic Field Dependence of the Magnetodielectric Effect in Eutectic BaTiO3-CoFe2O4 Multiferroic Material Fabricated by Containerless Processing.[Applied Physics Letters,112,(2018),212903-]J. Fukushima, K. Ara, T. Nojima, S. Iguchi, Y. Hayashi, and H. Takizawa
10.1063/1.5025072
3.[] Containerless melting and synthesis of eutectic BaTiO3/CoFe2O4 by microwave irradiation.[Materials Letters,216,(2018),42-45]J. Fukushima, K. Ara, Y. Hayashi, H. Takizawa
10.1016/j.matlet.2017.12.133
4.[] Microwave synthesis of carbon-coated Ti4O7 nanorods by rapid carbothermal reduction processing.[Chemical Engineering & Processing: Process Intensification,125,(2018),27-33]J. Fukushima, T. Takeuchi, Y. Hayashi, H. Takizawa
10.1016/j.cep.2018.01.002
5.[] Microwave Synthesis of Ti4O7 or AlN Nanoparticles by Rapid Carbothermal Reduction Process.[Journal of the Japan Petroleum Institute,61(2),(2018),88-97]J. Fukushima and H. Takizawa
6.[] Synthesis and photoluminescence properties of a novel Sr2Al6O11:Mn4+ red phosphor prepared with a B2O3 flux.[Journal of Luminescence,194,(2018),446-451]Takuya Sasaki, Jun Fukushima, Yamato HAYASHI, Hirotsugu Takizawa
10.1016/j.jlumin.2017.10.076
7.[] Microwave Chemical and Materials Processing - A Tutorial.[(2018)]S. Horikoshi, R.F. Schiffmann, J. Fukushima and N. Serpone
ISBN978-981-10-6465-4
8.[] Effect of Aspect Ratio on Permittivity of Graphite Fiber in Microwave Heating Materials.[Materials,(2018)]J. Fukushima, S. Tsubaki, T. Matsuzawa, K. Kashimura*, T. Mitani, T. namioka, S. Fujii, N. Shinohara, H. Takizawa, Y. wada
9.[] In Situ Spectroscopic Analysis of the Carbothermal Reduction Process of Iron Oxides during Microwave Irradiation.[Metals,8,(2018),49-58]J. Fukushima, H. Takizawa
10.3390/met8010049
[2017]
10.[] Microwave irradiation effects on the spinodal decomposition of TiO2-VO2 system.[JEMEA Bulletin,1,(2017),9-16]S. Aoyagi, J. Fukushima*, Y. Hayashi, H. Takizawa 青柳 宗一郎、福島 潤*、林 大和、滝澤 博胤
11.[] マイクロ波非平衡反応の検証と材料創製への展開.[JEMEA機関誌,3(2), (2017)]福島潤
12.[] Synthesis and photoluminescence properties of a novel aluminosilicate Sr3Al10SiO20:Mn4+ red phosphor.[Journal of Luminescence,188,(2017),101-106]T. Sasaki, J. Fukushima, Y. Hayashi, H. Takizawa
10.1016/j.jlumin.2017.04.014
13.[] In situ Analysis of Reaction Kinetics of Reduction Promotion of NiMn2O4 under Microwave H-Field Irradiation.[Physical Chemistry Chemical Physics,19,(2017),17904-17908]J. Fukushima, S. Takayama, H. Goto, M. Sato, H. Takizawa
10.1039/C7CP02728A
14.[] Effects of Al- and Sn-substitution on photoluminescence properties of Mn4+-doped spinel-type Mg2TiO4 phosphor.[Journal of Luminescence,187,(2017),540-545]T. Sasaki, J. Fukushima, Y. Hayashi, H. Takizawa
10.1016/j.jlumin.2017.03.026
15.[] Synthesis and photoluminescence properties of Mn4+-doped magnetoplumbite-related aluminate X-type Ca2Mg2Al28O46 and W-type CaMg2Al16O27 red phosphors.[Ceramics International,43(9),(2017),7147-7152]T. Sasaki, J. Fukushima, Y. Hayashi, H. Takizawa
10.1016/j.ceramint.2017.02.149
16.[] Synthesis of Ti4O7 Nanoparticles by Carbothermal Reduction Using Microwave Rapid Heating.[Catalysts,7(2),(2017),65-73]T. Takeuchi, J. Fukushima *, Y. Hayashi and H. Takizawa
10.3390/catal7020065
[2016]
17.[] Oriented texture formation of crystallized Nd2Fe14B through a microwave heating process.[J Alloy. Compd.,(685),(2016),566-570]Y. Iwabuchi, J. Fukushima*, N. Sakuma, M. Ito, Y. Shimo, H. Kishimoto, H. Takizawa
10.1016/j.jallcom.2016.05.187
18.[] Basic Physics on Reduction Reaction of Ferromagnetic Oxides under Microwave Irradiation.[Annual report of national institute for fusion science,(2016),419]J. Fukushima, S. Takayama
19.[] Construction of the Synthesis of Reduced Transition Metal Oxides - CO2 Decomposition Cycle by Microwave Irradiation.[Annual report of national institute for fusion science,(2016),420]J. Fukushima, M. Tanaka
20.[] Low-temperature synthesis of aluminum nitride from transition alumina by microwave processing.[J. Am. Ceram. Soc.,99(11),(2016),3540-]H. chikami, J. Fukushima*, Y. Hayashi, H. Takizawa
10.1111/jace.14367
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