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J-GLOBAL ID:202002266181196041   Reference number:20A2811527

Powder Process Technology to Enrich the Daily Life: Gas Phase Synthesis of Cesium Tungsten Bronze Nanoparticles and Their Evaluation as Near-infrared (NIR) Absorbing Materials

日常生活を豊かにする粉体プロセス技術 セシウムタングステン酸化物ナノ粒子の気相合成と透明赤外線吸収材料としての評価
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Issue: 64  Page: 18-27  Publication year: Dec. 15, 2020 
JST Material Number: F0690A  ISSN: 0429-9051  CODEN: FUNSAA  Document type: Article
Article type: 解説  Country of issue: Japan (JPN)  Language: JAPANESE (JA)
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Powder technology  ,  Metallic composite materials in general 
Reference (28):
  • Adachi K., Ota Y., Tanaka H., Okada M., Oshimura N., Tohuku A., Chromatic instabilities in cesium-doped tungsten bronze nanoparticles, Journal of Applied Physics, 114 (2013) 194304. https://doi.org/10.1063/1.4831950
  • Arutanti O., Ogi T., Nandiyanto A.B.D., Iskandar F., Okuyama K., Controllable crystallite and particle sizes of WO3 particles prepared by a spray-pyrolysis method and their photocatalytic activity, AIChE Journal, 60 (2014) 41-49. https://doi.org/10.1002/aic.14233
  • Choi J., Moon K., Kang I., Kim S., Yoo P.J., Oh K.W., Park J., Preparation of quaternary tungsten bronze nanoparticles by a thermal decomposition of ammonium metatungstate with oleylamine, Chemical Engineering Journal, 281 (2015) 236-242. https://doi.org/10.1016/j.cej.2015.06.101
  • Guo C., Yin S., Zhang P., Yan M., Adachi K., Chonan T., Sato T., Novel synthesis of homogenous CsxWO3 nanorods with excellent NIR shielding properties by a water controlled-release solvothermal process, Journal of Materials Chemistry, 20 (2010) 8227-8229. https://doi.org/10.1039/C0JM01972K
  • Hirano T., Nakakura S., Rinaldi F.G., Tanabe E., Wang W.-N., Ogi T., Synthesis of highly crystalline hexagonal cesium tungsten bronze nanoparticles by flame-assisted spray pyrolysis, Advanced Powder Technology, 29 (2018) 2512-2520. https://doi.org/10.1016/j.apt.2018.07.001
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