Synthesis of Size-Controlled Cerium Oxide Nanoparticles by Forced Thin-Film Type Reactor
Author:
Affiliation:
1. M Technique Co., Ltd.
2. Department of Materials Science, Osaka Prefecture University
3. Department of Materials Science, Osaka Metropolitan University
Publisher
Society of Materials Science, Japan
Link
https://www.jstage.jst.go.jp/article/jsms/73/6/73_480/_pdf
Reference26 articles.
1. 1) C. M. Netzband and K. Dunn, “Controlling the cerium oxidation state during silicon oxide CMP to improve material removal rate and roughness”, ECS Journal of Solid State Science and Technology, Vol.9, Article number 044001 (2020).
2. 2) Y. Sampurno, F. Sudargho, Y. Zhuang, T. Ashizawa, H. Morishima and A. Philipossian, “Effect of cerium oxide particle sizes in oxide chemical mechanical planarization”, Electrochemical Solid-State Letters, Vol.12, No.6, pp.H191-H194 (2009).
3. 3) K. Sakthiraj and B. Karthikeyan, “Synthesis and characterization of cerium oxide nanoparticles using different solvents for electrochemical applications”, Applied Physics A, Vol.126, Article number 52 (2020).
4. 4) M. Meiliefiana, T. Nakayashiki and K. Kobiro, “Nitrilethermal synthesis of CeO2-based composite nanoparticles as Ru and Pd catalyst supports for CO2 methanation and CH4 oxidation”, The Journal of Supercritical Fluids, Vol.201, Article number 106008 (2023).
5. 5) L. Li, B. Zhu, J. Zhang, C. Yan and Y. Wu, “Electrical properties of nanocube CeO2 in advanced solid oxide fuel cells”, International Journal of Hydrogen Energy, Vol.43, Issue 28, pp.12909-12916, (2018).
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