Faculty Information, Institute for Chemical Research, Kyoto University   [ English | Japanese ]


ICHIKAWA, Noriya

Research Center for Elements Science - Advanced Solid State Chemistry -
Technical Staff
Doctor of Engineering
URL:
E-mail: nori@scl.kyoto-u.ac.jp
Tel: 0774-38-3117
Fax: 0774-38-3118
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Academic career
    1999.4: Postdoctoral researcher (JST, Kyoto Univ., JSPS, JST)
    2003.4: Research assistant (Sophia Univ.)
    2007.4: Assistant Professor (Sophia Univ.)
    2008.4: Assitant Professor (Kyoto Univ.)
    2016.4: Technical Staff (Kyoto Univ., ICR)
Research field
    Experimental research on materials science in oxides
Current research
  1. Synthesis of transition metal oxides (thin films / bulk) and physical property measurement (magnetism, electricity, electrical conductivity and superconductivity)
Selected publications
  1. Y. Hosaka, N. Ichikawa, T. Saito, J.P. Attfield, and Y. Shimakawa,, Charge and spin order in the perovskite CaFe0.5Mn0.5O3: Charge disproportionation behavior of randomly arranged Fe4+ Phys. Rev. B 94, 104429 (2016)
  2. K. Hirai, D. Kan, N. Ichikawa, K. Mibu, Y. Yoda, M. Andreeva, and Y. Shimakawa, Strain-induced significant increase in metal-insulator transition temperature in oxygen-deficient Fe oxide epitaxial thin films Scientific Reports 5, 7894 (2015)
  3. Y. Hosaka, N. Ichikawa, T. Saito, P. Manuel, D. Khalyavin, J.P. Attfield, and Y. Shimakawa, Two-Dimensional Charge Disproportionation of the Unusual High Valence State Fe4+ in a Layered Double Perovskite J. Am. Chem. Soc. 137, 7468–7473 (2015)
  4. S. Corallini, M. Ceretti, G. Silly, A. Piovano, S. Singh, J. Stern, C. Ritter, J. Ren, H. Eckert, K. Conder, W. Chen, F.-C. Chou, N. Ichikawa, Y. Shimakawa, and W. Paulus, One-Dimensional Oxygen Diffusion Mechanism in Sr2ScGaO5 Electrolyte Explored by Neutron and Synchrotron Diffraction, 17O NMR, and Density Functional Theory Calculations J. Phys. Chem. C 119, 11447–11458 (2015)
  5. Y. Hosaka, N. Ichikawa, T. Saito, M. Haruta, K. Kimoto, H. Kurata, and Y. Shimakawa, Ca2FeMnO6: A Layered Double Perovskite with Unusual High-Valence Fe4+ in a Layered Arrangement Bull. Chem. Soc. Jpn. 88, 657–661 (2015)
  6. N. Murakami, D. Kan, N. Ichikawa, and Y. Shimakawa, Low-temperature reduction of brownmillerite CaFeO2.5 in LaAlO3/ CaFeO2.5 heterostructures made on SrTiO3 Dalton Trans. 43, 14596-14599 (2014)
  7. K. Hirai, D. Kan, R. Aso, N. Ichikawa, H. Kurata, and Y. Shimakawa, Anisotropic in-plane lattice strain relaxation in brownmillerite SrFeO2.5 epitaxial thin films J. Appl. Phys. 114, 053514–6 (2013)
  8. K. Matsumoto, D. Kan, N. Ichikawa, S. Hosokawa, H. Kageyama, and Y. Shimakawa, Oxygen Incorporation into Infinite-layer Structure AFeO2 (A = Sr or Ca) Chem. Lett. 42, 732–734 (2013)
  9. Y. Kobayashi, Z. Li, K. Hirai, C. Tassel, F. Loyer, N. Ichikawa, N. Abe, T. Yamamoto, Y. Shimakawa, K. Yoshimura, M. Takano, O.J. Hernandez, and H. Kageyama, Gas phase contributions to topochemical hydride reduction reactions J. Solid State Chem. 207, 190–193 (2013)
  10. N. Ichikawa, M. Iwanowska, M. Kawai, C. Calers, W. Paulus, and Y. Shimakawa, Reduction and oxidation of SrCoO2.5 thin films at low temperatures Dalton Trans. 41, 10507-10510 (2012)
  11. S.B. Wilkins, M.P.M. Dean, J. Fink, M. Hücker, J. Geck, V. Soltwisch, E. Schierle, E. Weschke, G. Gu, S. Uchida, N. Ichikawa, J.M. Tranquada, and J.P. Hill, Comparison of stripe modulations in La1.875Ba0.125CuO4 and La1.48Nd0.4Sr0.12CuO4 Phys. Rev. B 84, 195101 (2011)
  12. K. Matsumoto, M. Haruta, M. Kawai, A. Sakaiguchi, N. Ichikawa, H. Kurata, and Y. Shimakawa, Selective reduction of layers at low temperature in artificial superlattice thin films Scientific Reports 1, 27 (2011)
  13. Y. Shimakawa, M. Azuma, and N. Ichikawa, Multiferroic Compounds with Double-Perovskite Structures Materials 4, 153-168 (2011)
  14. S.B. Wilkins, M.P.M. Dean, J. Fink, M. Hücker, J. Geck, V. Soltwisch, E. Schierle, E. Weschke, G. Gu, S. Uchida, N. Ichikawa, J.M. Tranquada, and J.P. Hill, Comparison of stripe modulations in La1.875Ba0.125CuO4 and La1.48Nd0.4Sr0.12CuO4 Phys. Rev. B 84, 195101 (2011)
  15. K. Matsumoto, M. Haruta, M. Kawai, A. Sakaiguchi, N. Ichikawa, H. Kurata, and Y. Shimakawa, Artificial Superlattice Thin Film of Infinite-Layer Structure [CaFeO2]/[SrFeO2] Appl. Phys. Express 3, 105601 (2010)
  16. S. Inoue, M. Kawai, N. Ichikawa, H. Kageyama, W. Paulus, and Y. Shimakawa, Anisotropic oxygen diffusion at low temperature in perovskite-structure iron oxides Nat. Chem. 2, 213-217 (2010)
  17. M. Kawai, K. Ito, N. Ichikawa, and Y. Shimakawa, Thermally formed conducting filaments in a single-crystalline NiO thin film Appl. Phys. Lett. 96, 072106-3 (2010)
  18. Y. Shimakawa, S. Inoue, M. Haruta, M. Kawai, K. Matsumoto, A. Sakaiguchi, N. Ichikawa, S. Isoda, and H. Kurata, Topotactic Changes in Thin Films of Brownmillerite SrFeO2.5 Grown on SrTiO3 Substrates to Infinite-Layer Structure SrFeO2 Crystal Growth & Design 10, 4713-4715 (2010)
  19. 島川祐一, 東正樹, 市川能也, ダブルペロブスカイト構造マルチフェロイック酸化物 マテリアルインテグレーション 22, 9 (2009)
  20. M. Kawai, S. Inoue, M. Mizumaki, N. Kawamura, N. Ichikawa, and Y. Shimakawa, Reversible changes of epitaxial thin films from perovskite LaNiO3 to infinite-layer structure LaNiO2 Appl. Phys. Lett. 94, 082102-3 (2009)
  21. Y. Shimakawa, S. Inoue, M. Kawai, N. Ichikawa, M. Mizumaki, and N. Kawamura, Single-crystal thin films of SrFeO2 and LaNiO2 with infinite-layer structures Mat. Res. Soc. Proc. 1148E, PP07-08 (2009)
  22. N. Ichikawa, M. Arai, Y. Imai, K. Hagiwara, H. Sakama, M. Azuma, Y. Shimakawa, M. Takano, Y. Kotaka, M. Yonetani, H. Fujisawa, M. Shimizu, K. Ishikawa, and Y. Cho, Ferromagnetism and ferroelectricity in BiFeO3/BiCrO3 artificial 1/1 superlattice Mat. Res. Soc. Proc. 1110E, C06-14 (2009)
  23. K. Iijima, M. Goto, S. Enomoto, H. Kunugita, K. Ema, M. Tsukamoto, N. Ichikawa, and H. Sakama, Influence of oxygen vacancies on optical properties of anatase TiO2 thin films J. Lumi. 128, 911–913 (2008)
  24. N. Ichikawa, M. Arai, Y. Imai, K. Hagiwara, H. Sakama, M. Azuma, Y. Shimakawa, M. Takano, Y. Kotaka, M. Yonetani, H. Fujisawa, M. Shimizu, K. Ishikawa, and Y. Cho, Multiferroism at room temperature in BiFeO3/BiCrO3 (111) artificial superlattice Appl. Phys. Express. 1, 101302 (2008)


Update: Sep 20,2019