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Research paper : Preparation of superconducting films by metal organic deposition (T. MANABE et al.)−248−Synthesiology - English edition Vol.7 No.4 (2015) (1996) (in Japanese).[10]H. Kinder, P. Berberich, W. Prusseit, S. Rieder-Zecha, R. Semerad and B. Utz: YBCO film deposition on very large areas up to 20 × 20 cm2, Physica C, 282-287 (1), 107-110 (1997).[11]C. Hoffmann, A. Lümkemann, U. Schmatz, M. Bauer, R. Metzger, P. Berberich and H. Kinder: YBa2Cu3O7-x deposition of large moving plates for continuous processing, IEEE Trans. Appl. Supercond., 13 (2), 2879-2881 (2003).[12]B. Schey, W. Biegel, M. Kuhn and B. Stritzker: Large area pulsed laser deposition of YBCO thin films, IEEE Trans. Appl. Supercond., 9 (2), 2359-2362 (1999).[13]J. Geerk, F. Ratzel, H. Rietschel, G. Linker, R. Heidinger and R. Schwab: Simultaneous double-sided deposition of HTS films on 3-inch wafers by ICM-sputtering, IEEE Trans. Appl. Supercond., 9 (2), 1543-1546 (1999).[14]T. Kumagai, H. Yokota, K. Kawaguchi, W. Kondo and S. Mizuta: Preparation of superconducting YBa2Cu3O7- (YBCO) thin films by the dipping-pyrolysis process using organic acid salts, Chem. Lett., 1987 (8), 1645-1646 (1987).[15]T. Manabe, H. Yokota, T. Kumagai, W. Kondo and S. Mizuta: Preparation of superconducting Ba2YCu3O7- films by the dipping-pyrolysis process using metal laurates, JCS- Japan, 98 (2), 220-224 (1990) (in Japanese).[16]T. Kumagai, W. Kondo, H. Yokota, H. Minamiue and S. Mizuta: Preparation of superconducting YBa2Cu3O7- films by the dipping-pyrolysis process using metal acetylacetonates, Chem. Lett., 1988 (3), 551-552 (1988).[17]K. Kishio, J. Shimoyama, T. Hasegawa, K. Kitazawa and K. Fueki: Determination of oxygen nonstoichiometry in a high- Tc superconductor Ba2YCu3O7-, Jpn. J. Appl. Phys., 26 (7), L1228-L1230 (1987).[18]T. Kumagai, T. Manabe, W. Kondo, H. Minamiue and S. Mizuta: Effects of heat treatment conditions on the critical current densities of Ba2YCu3O7-y films prepared by the dipping-pyrolysis process, Jpn. J. Appl. Phys., 29, L940-L942 (1990).[19]T. Manabe, W. Kondo, S. Mizuta and T. Kumagai: Preparation of high- Jc Ba2YCu3O7-y films on SrTiO3(100) substrates by the dipping-pyrolysis process at 750 ºC, Jpn. J. Appl. Phys., 30 (9B), L1641-L1643 (1991).[20]T. Manabe, K. Arai, W. Kondo, S. Mizuta and T. Kumagai: Preparation of YBa2Cu3O7-y films on SrTiO3 and MgO by the dipping-pyrolysis process under low-p(O2) heat treatment, J. Mater. Res., 7 (9), 2337-2342 (1992). [21]T. Kumagai, T. Manabe, W. Kondo, S. Mizuta and K. Arai: Preparation of high Jc Ba2YCu3O7-y-Ag composite films on SrTiO3(100) substrates by the dipping-pyrolysis process, Appl. Phys. Lett., 61 (8), 988-990 (1992).[22]T. Kumagai, H. Yamasaki, K. Endo, T. Manabe, H. Niino, T. Tsunoda, W. Kondo and S. Mizuta: Critical current densities at 77K in Ba2YCu3O7-y-Ag films prepared by dipping-pyrolysis process, Jpn. J. Appl. Phys., 32 (11A), L1602-L1605 (1993).[23]T. Manabe, W. Kondo, S. Mizuta and T. Kumagai: Crystallization of YBa2Cu3O7-y films on SrTiO3(100) by postannealing of precursors prepared by dipping-pyrolysis process, J. Mater. Res., 9 (4), 858-865 (1994).[24]T. Manabe, I. Yamaguchi, W. Kondo, S. Mizuta and T. Kumagai: Processing of superconducting films and tapes by dipping-pyrolysis process, in K. Yamafuji and T. Morishita (eds.), Advances in Superconductivity VII /2, Springer, 589- 594 (1994).[25]M. Mukaida and S. Miyazawa: Nature of preferred orientation of YBa2Cu3Ox thin films, Jpn. J. Appl. Phys., 32, 4521-4528 (1993).[26]T. Manabe, W. Kondo, I. Yamaguchi, M. Sohma, T. Tsuchiya, K. Tsukada, S. Mizuta and T. Kumagai: Critical current density and microwave surface resistance of 5-cm-diameter YBCO films on LaAlO3 substrates prepared by MOD using an infrared image furnace, Physica C, 417, 98-102 (2005).[27]T. Manabe, M. Sohma, I. Yamaguchi, K. Tsukada, W. Kondo, K. Kamiya, T. Tsuchiya, S. Mizuta and T. Kumagai: Surface resistances of 5-cm-diameter YBCO films prepared by MOD for microwave applications, Physica C, 445-448, 823-827 (2006).[28]M. Sohma, I. Yamaguchi, K. Tsukada, W. Kondo, S. Mizuta, T. Manabe and T. Kumagai: Cerium oxide (CeO2) buffer layers for preparation of high- Jc YBCO films on large-area sapphire substrates (30 cm × 10 cm) by coating pyrolysis, Physica C, 412-414, 1326-1330 (2004).[29]M. Sohma, I. Yamaguchi, K. Tsukada, W. Kondo, K. Kamiya, S. Mizuta, T. Manabe and T. Kumagai: Preparation of CeO2 buffer layers for large-area MOD-YBCO films (10 × 30 cm2) with high- Jc, IEEE Trans. Appl. Supercond., 15 (2), 2699-2702 (2005).[30]T. Manabe, M. Sohma, I. Yamaguchi, W. Kondo, K. Tsukada, S. Mizuta and T. Kumagai: 2-D large-size YBCO films on sapphire for FCL prepared by coating-pyrolysis process, Physica C, 392-396, 937-940 (2003).[31]T. Manabe, M. Sohma, I. Yamaguchi, W. Kondo, K. Tsukada, K. Kamiya, S. Mizuta and T. Kumagai: Distribution of inductive Jc in two-dimensional large-size YBCO films prepared by fluorine-free MOD on CeO2- buffered sapphire, IEEE Trans. Appl. Supercond., 15 (2), 2923-2926 (2005).[32]T. Manabe, M. Sohma, I. Yamaguchi, W. Kondo, K. Tsukada, S. Mizuta and T. Kumagai: Preparation of high- Jc large-size YBCO films (30 × 10 cm2) by coating-pyrolysis process on CeO2-buffered sapphire, Physica C, 412-414, 896-899 (2004).[33]K. Osamura and K. Matsumoto: Development of practical high-temperature superconducting conductors and their future trends, Oyo Buturi, 73 (1), 3-13 (2004) (in Japanese).[34]H. Yamasaki, M. Furuse and Y. Nakagawa: High-power-density fault-current limiting devices using superconducting YBa2Cu3O7 films and high-resistivity alloy shunt layers, Appl. Phys. Lett., 85, 4427-4429 (2004).[35]T. Nitta, T. Matsumura, J. Baba, M. D. Ainslie, S. Torii, H. Kado, T. Kumagai and M. Shibuya: Tests for conceptual design of 6.6 kV class superconducting fault current limiter with YBCO thin film elements, IEEE Trans. Appl. Supercond., 19 (3), 1964-1967 (2009).[36]H. Yamasaki, K. Arai, K. Kaiho, Y. Nakagawa, M. Sohma, W. Kondo, I. Yamaguchi, H. Matsui, T. Kumagai, N. Natori and N. Higuchi: 500 V/200 A fault current limiter modules made of large-area MOD-YBa2Cu3O7 thin films with high-resistivity Au-Ag alloy shunt layers, Supercond. Sci. Tech., 22 (12), 125007 (2009).[37]H. Yamasaki, K. Arai, M. Furuse, Y. Nakagawa, K. Kaiho, T. Kumagai, M. Shibuya and T. Nitta: Comparison of estimated conductor costs between a superconducting thin-film fault-current limiter (FCL) and a coated-conductor-based superconducting FCL, J. Cryo. Jpn., 41 (9), 397-404 (2006) (in Japanese).[38]K. Setsune and A. Enokihara: Application of high- Tc superconductors for mobile telecommunication systems: Microwave filters for base stations, Oyo Buturi, 66 (4), 351-355 (1997) (in Japanese).

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