ナノミストを晶析場とした新規ナノ結晶創製法の開発
Author:
Affiliation:
1. Graduate School of Engineering, Nagoya University
Publisher
Hosokawa Powder Technology Foundation
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/hptf/30/0/30_HPTF20110/_pdf
Reference8 articles.
1. Junghanns J.-U.A.H., Müller R.H., Nanocrystal technology, drug delivery and clinical applications, International Journal of Nanomedicine, 3 (2008) 295–309. https://doi.org/10.2147/ijn.s595
2. Kovalenko M.V., Manna L., Cabot A., Hens Z., Talapin D.V., Kagan C.R., Klimov V.I., Rogach A.L., Reiss P., Milliron D.J., Guyot-Sionnnest P., Konstantatos G., Parak W.J., Hyeon T., Korgel B.A., Murray C.B., Heiss W., Prospects of nanoscience with nanocrystals, ACS Nano, 9 (2015) 1012–1057. https://doi.org/10.1021/nn506223h
3. Mukai Y., Tsuchiya Y., Iritani E., Filtration properties of amino acid crystals produced by anti-solvent crystallization, Asian Pacific Confederation of Chemical Engineering congress program and abstracts, (2004) 3F-05(8pp). https://doi.org/10.11491/apcche.2004.0.228.0
4. Vera H.U.R., Baillon F., Espitalier F., Accart P., Louisnard O., Crystallization of α-glycine by anti-solvent assisted by ultrasound, Ultrasonics Sonochemistry 58 (2019) 104671. https://doi.org/10.1016/j.ultsonch.2019.104671
5. Wakisaka A., Synthesis of metal nanoparticles by femtoreactor, Journal of the Japan Society of Colour Material, 89 (2016) 264–267. https://doi.org/10.4011/shikizai.89.264
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