Last update on 2022/9/5 |
▪ Effect of Hydrogen Radical on Growth of µc-Si in Hetero-Structured SiCX Alloy Films, T. Itoh, K. Fukunaga, T. Fujiwara and S. Nonomura, Thin Solid Films, 430 (2003) 33. ▪ Hydrogen-Radical Durability of TiO2 Thin Films for Protecting Transparent Conducting Oxide for Si Thin Film Solar Cells, H. Natsuhara, T. Ohashi, S. Ogawa, N. Yoshida, T. Itoh and S. Nonomura, Thin Solid Films, 430 (2003) 253. ▪ Preparation of B-doped a-SiXC1-X:H Films and Heterojinction p-i-n Solar Cells by Cat-CVD Method, K. Chikusa, K. Takemoto, T. Itoh, N. Yoshida and S. Nonomura, Thin Solid Films, 430 (2003) 245. ▪ Optical Properties of TiO2 Thin Films Estimated by Photothermal Deflection Spectroscopy, S. Ogawa, K. Mori, H. Natsuhara, T. Ohashi, R. Sakakiyama, T. Itoh, N. Yoshida and S. Nonomura, Review of Scientific Instruments, 74 (2003) 863. |
敪昞榑暥儕僗僩 |
2006擭 |
▪ Preparation and Electron Field Emission of Carbon Nanowall by Cat-CVD, T. Itoh, S. Shimabukuro, S. Kawamura and S. Nonomura, Thin Solid Films, 501 (2006) 314. ▪ The Formation of Hetero-junction using Carbon Alloys by Hot-Wire CVD Method, S. Nonomura, N. Yoshida and T. Itoh, Thin Solid Films, 501 (2006) 164. ▪ Relation between pin a-Si:H Solar-Cell Performances and Intrinsic-Layer Properties prepared by Cat-CVD, T. Kitamura, K. Honda, M. Nishimura, K. Sugita, K. Takemoto, Y. Yamaguchi, Y. Toyama, T. Yamamoto, S. Miyazaki, M. Eguchi, T. Harano, T. Sugano, N. Yoshida, A. Masuda, T. Itoh, T. Toyama, S. Nonomura, H. Okamoto and H. Matsumura, Thin Solid Films, 501 (2006) 264. ▪ TiO2 Thin Films as Protective Material for Transparent-Conductive Oxides Used in Si Thin Film Solar Cells, H. Natsuhara, K. Matsumoto, N. Yoshida, T. Itoh, S. Nonomura, M. Fukawa and K. Sato, Solar Energy Materials and Solar Cells, 90 (2006) 2867. |
2004擭 |
▪ Preparation of Wide Gap and Low Resistive Hetero-Structured SiCX Films as Wide Gap Window of Solar Cells, T. Itoh, Y. Hasegawa, T. Fujiwara, A. Masuda and S. Nonomura) Journal of Non-Crystalline Solids, 338-340 (2004) 123. |
2003擭 |
▪ Doping of a-SiCX:H Films Including µc-Si:H by Hot-Wire CVD and Their Application as a Wide Gap Window for Heterojunction Solar Cells, T. Itoh, K. Fukunaga, Y. Katoh, T. Fujiwara and S. Nonomura, Solar Energy Materials and Solar Cells, 74 (2002) 379. ▪ Influence of Different Carbon Source Gases on Preparation and Properties of a-SiXC1-X:H Alloy Films Including µc-Si:H by Hot-Wire CVD, T. Itoh, T. Fujiwara, Y. Katoh, K. Fukunaga and S. Nonomura, Journal of Non-Crystalline Solids, 299-302 (2002) 880. ▪ Liner Thermal Expansion Coefficients of Amorphous and Microcrystalline Silicon Films, K. Takimoto, A. Fukuta, Y. Yamamoto, N. Yoshida, T. Itoh and S. Nonomura, Journal of Non-Crystalline Solids, 299-302 (2002) 314. |
2002擭 |
2007擭 |
▪ Study of nano-scale electrical properties of hydrogenated microcrystalline silicon solar cells by conductive atomic force microscope, Z. Shen, T. Gotoh, M. Eguchi, N. Yoshida, T. Itoh and S. Nonomura, Jpn. J. Appl. Phys., 46, (2007) 2858. ▪ Heterojunction amorphous silicon solar cells with n-type microcrystalline cubic silicon carbide as a window layer, S. Ogawa, N. Yoshida, T. Itoh and S. Nonomura, Jpn J. Appl. Phys., 46 (2007) 518. ▪ Grain boundary scattering of free electrons in Ga-doped microcrystalline zinc oxide films, K. Shimakawa and T. Itoh, Jpn. J. Appl. Phys., 46 (2007) L577. |
2008擭 |
▪ Preparation of carbon nanowall by hot-wire chemical vapor deposition and effects of substrate heating temperature and filament temperature, S. Shimabukuro, Y. Hatakeyama, M. Takeuchi, T. Itoh and S. Nonomura, Jpn. J. Appl. Phys., 47 (2008) 8635. ▪ Photo-carrier transport in microcrystalline silicon films prepared by hot-wire CVD, K. Murata, K. Shimakawa, Y. Takai and T. Itoh, Thin Solid Films, 516 (2008) 572. ▪ Localized oxidation influence from conductive atomic force microscope measurement on nano-scale I-V characterization of silicon thin film solar cells, Z. Shen, M. Eguchi, T. Gotoh, N. Yoshida, T. Itoh and S. Nonomura, Thin Solid Films, 516 (2008) 588. ▪ Properties of hetero-structured SiCX films deposited by hot-wire CVD using SiH3CH3 as carbon source, T. Itoh, T. Kawasaki, Y. Takai, N. Yoshida and S. Nonomura, Thin Solid Films, 516 (2008) 641. ▪ Effect of hydrogen dilution in preparation of carbon nanowall by hot-wire CVD, S. Shimabukuro, Y. Hatakeyama, M. Takeuchi, T. Itoh and S. Nonomura, Thin Solid Films, 516 (2008) 710. ▪ Applications of microcrystalline hydrogenated cubic silicon carbide for amorphous silicon thin film solar cells, S. Ogawa, M. Okabe, Y. Ikeda, T. Itoh, N. Yoshida and S. Nonomura, Thin Solid Films, 516 (2008) 740. ▪ Amorphous Si1−xCx:H films prepared by hot-wire CVD using SiH3CH3 and SiH4 mixture gas and its application to window layer for silicon thin film solar cells, S. Ogawa, M. Okabe, T. Itoh, N. Yoshida and S. Nonomura, Thin Solid Films, 516 (2008) 758. ▪ TiO2 thin films using organic liquid materials prepared by hot-wire CVD method, T. Iida, Y. Takamido, T. Kunii, S. Ogawa, K. Mizuno, T. Narita, N. Yoshida, T. Itoh and S. Nonomura, Thin Solid Films, 516 (2008) 807. ▪ Ion beam modification of TiO2 films prepared by Cat-CVD for solar cell, T. Narita, T. Iida, S. Ogawa, K. Mizuno, J. So, A. Kondo, N. Yoshida, T. Itoh, S. Nonomura and Y. Tanaka, Thin Solid Films, 516 (2008) 810. ▪ Deposition of microcrystalline Ge films using hot-wire technique without toxic gases, T. Narita, K. Naruse, I. Suzuki, S. Ogawa, T. Iida, N. Yoshida, T. Itoh and S. Nonomura, J. Non-Cryst. Solids, 354 (2008) 2214. |
2009擭 |
▪ Nanoscale characterization of microcrystalline silicon solar cells by scanning near-field optical microscopy, T. Gotoh, Y. Yamamoto, Z. Shen, S. Ogawa, N. Yoshida, T. Itoh and S. Nonomura, Jpn. J. Appl. Phys., 48 (2009) 091202. ▪ The origin of stretched exponential function in dynamic response of photodarkening in amorphous chalcogenides, K. Shimakawa, N. Nakagawa and T. Itoh, Appl. Phys. Lett., 95 (2009) 051908. ▪ Optical properties of conductive ZnO films near infrared frequency, T. Itoh, K. Matsuyama, K. Shimakawa, J. Orava, T. Wagner and M. Frumar, Phys. Status Solidi C, 6 (2009) S110. |
2010擭 |
▪ Nano-scale current voltage characteristics of thin film solar cell with light irradiations, M. Kawai, T. Kawakami, T. Inaba, F. Ohashi, H. Natsuhara, T. Itoh and S. Nonomura, Curr. Appl. Phys., 10 (2010) S392. ▪ Dynamics of principal photoinduced effects in amorphous chalcogenides: In-situ simultaneous measurements of photodarkening, volume changes, and defect creation, N. Nakagawa, K. Shimakawa, T. Itoh and Y. Ikeda, Phys. Status Solidi C, 7 (2010) 857. |
2011擭 |
▪ Synthesis of carbon nanowalls by hot-wire chemical vapor deposition, T. Itoh, Thin Solid Films, 519 (2011) 4589. ▪ Photogenerated carriers in Si-related random composites, T. Itoh, Phys. Status Solidi C, 8 (2011) 193. |
2012擭 |
▪ InXGa1-XN films deposited by reactive RF-sputtering, T. Itoh, S. Hibino, T. Sahashi, Y. Kato, S. Koiso, F. Ohashi and S. Nonomura, J. Non-Cryst. Solids, 358 (2012) 2362. ▪ Mg-doped InXGa1-XN films deposited by reactive rf-magnetron sputtering, T. Itoh, Y. Kato, S. Hibino, R. Katayama, F. Ohashi and S. Nonomura, Phys. Status Solidi C, 9 (2012) 2411. ▪ Anomalous optical conductivity in disordered condensed matter, K. Shimakawa, T. Itoh, H. Naito, S.O. Kasap, J. Non-Cryst. Solids, 358 (2012) 2373. ▪ Conductive atomic force microscopy on carbon nanowalls, A. Vetushka, T. Itoh, Y. Nakanishi, A. Fejfar, S. Nonomura, M. Ledinský and J. Kočka, J. Non-Cryst. Solids, 358 (2012) 2545. ▪ Electrical properties of carbon nanowall films, T. Itoh, Y. Nakanishi, T. Ito, A. Vetushka, M. Ledinský, A. Fejfar, J. Kočka and S. Nonomura, J. Non-Cryst. Solids, 358 (2012) 2548. ▪ Local photovoltaic characterization for silicon thin film solar cells using a scanning probe microscope, T. Itoh, H. Natsuhara and S. Nonomura, J. Phys.: Conference Series, 379 (2012) 012003. ▪ The origin of non-Drude terahertz conductivity in nanomaterials, K. Shimakawa, T. Itoh, H. Naito and S.O. Kasap, Appl. Phys. Lett., 100 (2012) 132102. |
2013擭 |
▪ Effects of substrate temperature on properties of amorphous InxGa1-xN films deposited by reactive radio frequency sputtering, T. Suzuki, S. Hibino, R. Katayama, Y. Kato, F. Ohashi, T. Itoh and S. Nonomura, Jpn. J. Appl. Phys., 52 (2013) 11NG05. |
2014擭 |
▪ Effect of thermal annealing in a-InxGa1–xN films prepared by reactive RF-sputtering, T. Suzuki, R. Katayama, S. Hibino, Y. Kato, F. Ohashi, T. Itoh and S. Nonomura, Can. J. Phys., 92 (2014) 943. ▪ One-year 60 kWp photovoltaic system energy performance at CINVESTAV, Mexico city, J.A. Urbano, Y. Matsumoto, O.I. Gómez, R. Asomoza, E. Galván, R. Dorantes, T. Itoh, S. Nonomura, C. López, G. López and R. Peña, Energy Procedia, 57 (2014) 217. |
2015擭 |
▪ Correlative microscopy of radial junction nanowire solar cells using nanoindent position markers, A. Fejfar, M. Hývl, A. Vetushka, P. Pikna, Z. Hájková, M. Ledinský, J. Kočka, P. Klapetek, A. Marek, A. Mašková, J. Vyskočil, J. Merkel, C. Becker, T. Itoh, S. Misra, M. Foldyna, L. Yu, P.R. i Cabarrocas, Sol. Energy Mater. Sol. Cells, 135 (2015) 106. ▪ Post-nitriding on 兪c-InXGa1−XN films using hot-wire chemical vapor deposition technique, F. Ohashi, S. Koiso, S. Hibino, T. Sahashi, T. Itoh and S. Nonomura, Thin Solid Films, 575 (2015) 96. ▪ Investigating inhomogeneous electronic properties of radial junction solar cells using correlative microscopy, M. Müller, M. Hývl, M. Kratzer, C. Teichert, S. Misra, M. Foldyna, L. Yu, P.R. i Cabarrocas, T. Itoh, Z. Hájková, A. Vetushka, M. Ledinský, J. Kočka and A. Fejfar, Jpn. J. Appl. Phys., 54 (2015) 08KA08. ▪ Electrical characterization of hydrogenated amorphous silicon oxide films, T. Itoh, R. Katayama, K. Yamakawa, K. Matsui, M. Saito, S. Sugiyama, P. Sichanugrist, S. Nonomura and M. Konagai, Jpn. J. Appl. Phys., 54 (2015) 08KB11. |
2016擭 |
▪ Estimation of local built-in potential of amorphous silicon thin-film solar cells by Kelvin force microscopy, T. Itoh, T. Ito, H. Kuriyama and S. Nonomura, Jpn. J. Appl. Phys., 55 (2016) 04ES13. ▪ Local surface potential on hydrogenated microcrystalline silicon films, T. Itoh, T. Sakai, T. Ito, H. Kuriyama and S. Nonomura, Jpn. J. Appl. Phys., 55 (2016) 01AH10. |
2018擭 |
▪ Optical absorption spectra of Cu2ZnSn(S,Se)4 thin-film solar cells by Fourier transform photocurrent spectroscopy, A.R.N. Syazwana, K. Tanabe, S. Yamada, T. Itoh, S. Nonomura, K. Sugimoto and A. Yamada, Jpn. J. Appl. Phys., 57 (2018) 08RC16. |
2020擭 |
▪ Changes in wettability of carbon nanowalls by oxygen plasma treatment, S. Yamada, K. Tanabe, Y. Ieda, T. Suzuki, H. Sobue, T. Itoh and S. Nonomura, Jpn. J. Appl. Phys., 59 (2020) .SAAB05 |
2021擭 |
▪ Evaluation of Hydrogenated Amorphous Silicon Oxide Photo-Absorber from Quantum Efficiency in Thin-Film Solar Cell by Fourier Transform Photocurrent Spectroscopy, Nur Syazwana A.R., K. Matsui, S. Yamada, T. Itoh, Materials Transactions, 62 (2021) 1263. |
埳摗 丒嶳揷 尋媶幒 Itoh Yamada Lab. |