Integration Effect of O2-Plasma to an Excimer-Laser assisted Metal Organic Deposition Process for Functionalization of Photoelectrodes
Author:
Affiliation:
1. Nagaoka University of Technology
2. National Institute of Advanced Industrial Sceience and Technology
Publisher
Institute of Electrical Engineers of Japan (IEE Japan)
Subject
Electrical and Electronic Engineering
Link
https://www.jstage.jst.go.jp/article/ieejeiss/139/3/139_197/_pdf
Reference9 articles.
1. (1) M. Matsumura, Y. Saho, and H. Tsubomura: “Photocatalytic hydrogen production from solutions of sulfite using platinized cadmium sulfide powder”, J. Phys. Chem., Vol. 87, No. 20, pp. 3807-3808 (1983)
2. (2) A. Paracchino, V. Laporte, K. Sivula, M. Graetzel, and E. Thimsen: “Highly active oxide photocathode for photoelectrochemical water reduction”, Nature Materials, Vol. 10, No. 6, pp. 456-461 (2011)
3. (3) T. Tsuchiya, T. Yoshitake, Y. Shimakawa, I. Yamaguchi, T. Manabe, T. Kumagai, Y. Kubo, and S. Mizuta: “Low-temperature growth of La0.8Sr0.2MnO3 thin films on LaAlO3 and SrTiO3 substrates by an excimer laser metal organic deposition process”, J. Photochem. Photobiol. A, Chem., Vol. 166, pp. 123-128 (2004)
4. (4) T. Tsuchiya, A. Watanabe, Y. Imai, H. Niino, I. Yamaguchi, T. Manabe, T. Kumagai, and S. Mizuta: “Direct conversion of titanium alkoxide into crystallized TiO2 (rutile) using coating photolysis process with ArF excimer laser”, Jpn. J. Appl. Phys., Vol. 38, pp. L823-825 (1999)
5. (5) T. Nakajima, K. Shinoda, and T. Tsuchiya: “UV-assisted nucleation and growth of oxide films from chemical solutions”, Chem. Soc. Rev., Vol. 45, pp. 2027-2041 (2014)
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