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論文・記事Publication

1984

 1 T. Kunitake, Kimizuka, N. Higashi, N. Nakashima, “Bilayer Formation of Triple-chain Ammonium Amphiphiles”, J. Am. Chem. Soc., 106, 1978-1983 (1984).
 2 T. Kunitake, A. Tsuge, N. Nakashima,“ Immobilization of Ammonium Bilayer Membranes by Complexation with Anionic Polymers”, Chem. Lett., 13, 1783-1786 (1984).
 3 T. Kunitake, M. Nagai, H. Yanagi, K. Takarabe, N. Nakashima, Bilayer Formation by Aggregation of Polymeric Amphiphiles”, J. Macromol. Soc. Chem., A21, 1237-1252 (1984).
 4 N. Nakashima, S. Asakuma, T. Kunitake, H. Hotani, Dynamic Transformation of Morphology of Dialkylammonium Bilayer Aggregates”, Chem. Lett., 13, 227-230 (1984).
 5 N. Nakashima, K. Morimitsu, T. Kunitake, Enhanced Circular Dichroism and Phase Separation of Azobenzene-Containing Chiral Bilayer”, Bull. Chem. Soc. Jpn., 57, 3253-3257 (1984).
 6 N. Nakashima, S. Asakuma, T. Kunitake, “Helical Superstructures are Formed from Chiral Ammonium Bilayers”, Chem. Lett., 13, 1709-1713 (1984).

1983

 1 N. Nakashima, R. Ando, T. Kunitake, “Casting of Synthetic Bilayer Membranes on Glass and Spectral Variation of Membrane- Bound Cyanine and Merocyanine Dyes”, Chem. Lett., 12, 1577-1580 (1983).
 2 T. Kunitake, S. Twaki, N. Nakashima, “Excimer Formation and Phase Separation of Hydrocarbon and Fluorocarbon Bilayer Membranes”, Bull. Chem. Soc., Jpn., 56, 3235-3242 (1983).

1982

 1 N. Nakashima, T. Kunitake, “Drastic Fluorescence Enhancement of Cyanine Dyes Bound to Synthetic Bilayer Membranes. Its High Sensitivity to the Chemical Structure and the Physical State of the Membrane, J. Am. Chem. Soc., 104, 4261 (1982).
 2 N. Nakashima, H. Fukushima, R. Ando, T. Kunitake, Controlled Organization of Cyanine and Merocyanine Dyes at the Surface of Synthetic Bilayer Membranes”, J. Chem. Soc., Chem. Commun., 707 (1982).

1981

 1 N. Nakashima, H. Fukushima, T. Kunitake, “Spectral Control of Methyl Orange and Cyanine Dyes by Synthetic Bilayer Membranes”, Chem. Lett., 10, 1555 (1981).
 2 N. Nakashima, H. Fukushima, T. Kunitake, “Spectral Control of Methyl Orange and Cyanine Dyes by Synthetic Bilayer Membranes”, Chem. Lett., 10, 1555 (1981).
 3 S. Shinkai, N. Nakashima, T. Kunitake, “"Naked" Hydrogencarbonate Ion as a Bifunctional Catalyst Toward Amide Substrates. Nucleophilic Ion Pairs. 9”, Bull. Chem. Soc., Jpn., 54, 840 (1981).
 4  S. Shinkai, Y. Kusano, O. Manabe, N. Nakashima, T. Kunitake, “Influence of Membrane-Forming Surfactants on the Conformational Stability of Albumins and Polypeptides”, Polym. J., 13, 979 (1981).
 5  T. Kunitake, N. Nakashima, K. Takarabe, M. Naagi, A. Tsuge, H. Yanagi, “Vesicles of Polymeric Bilayer and Monolayer Membranes”, J. Am. Chem. Soc., 103, 5945 (1981).

1980

 1 T. Kunitake, N. Nakashima, K. Morimitsu, “Enhanced Circular Dichroism and Fluidity of Bilayer Aggregates of Chiral, Single-Chain Amphiphile”, Chem. Lett., 9, 1347 (1980).
 2 T. Kunitake, N.Nakashima, M. Shimomura, Y. Okahata, K. Kano, T. Ogawa, “Unique Properties of Chromophore-Containing Bilayer Aggregates; Enhanced Chirality and Photochemically Induced Morphological Change”, J. Am. Chem. Soc., 102, 6642-6644 (1980).

1979

 1 T. Kunitake, N. Nakashima, S. Hayashida, K. Yonemori, “Chiral Synthetic Bilayer Membranes”, Chem. Lett., 8, 1413 (1979).

1978

 1
  • S. Shinkai, N. Nakashima, T. Kunitake, “Nucleopholic Ion Pairs. 5. Facile Ceavage of Amide Substrates by a Hydroxamate Anion in Aprotic Solvents. Efficient Inhibition by Minute Amounts of Water”, J. Am. Chem. Soc., 100, 5887 (1978).
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