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1. Koichi Mayumi, and Kohzo Ito, "Structure and Dynamics of Polyrotaxane and Slide-Ring Materials", Polymer, 51(4), 959-967(2010). 2. Koichi Mayumi, Hitoshi Endo, Noboru Osaka, Hideaki Yokoyama, Michihiro Nagao, Mitsuhiro Shibayama, and Kohzo Ito, "Mechanically Interlocked Structure of Polyrotaxane Investigated by Contrast Variation Small-Angle Neutron Scattering", Macromolecules, 42(16), 6327-6329(2009). 3. Tetsuya Kume, Jun Araki, Yasuhiro Sakai, Koichi Mayumi, Masatoshi Kidowaki, Hideaki Yokoyama, and Kohzo Ito, "Static and Dynamic Light Scattering Studies on Dilute Polyrotaxane Solutions", Journal of Physics: Conference Series, 184, 012018(2009). 4. Koichi Mayumi, Michihiro Nagao, Hitoshi Endo, Noboru Osaka, Mitsuhiro Shibayama, Kohzo Ito, Dynamics of polyrotaxane investigated by neutron spin echo, Physica B, 404, 2600-2602 (2009). 5. Koichi Mayumi,Noboru Osaka,Hitoshi Endo,Hideaki Yokoyama,Yasuhiro Sakai,Mitsuhiro Shibayama,and Kohzo Ito, Concentration-induced conformational change in linear polymer threaded into cyclic molecules, Macromolecules, 41, 6480-6485 (2008). 6. Sadaki Samitsu, Jun Araki, Takeshi Shimomura, Kohzo Ito, "Synthesis of a molecular tube in an organic solvent and its inclusion complexation behavior with poly (ethylene oxide?ran?propylene oxide)", Macromolecules, 41, 5385-5392 (2008). 7. Jun Araki and Kohzo Ito, "Strongly thixotropic viscosity behavior of dimethylsulfoxide solution of polyrotaxane comprising a-cyclodextrin and low molecular weight poly(ethylene glycol)", Polymer, 48, 7139-7144 (2007). 8. Jun Araki, Toshiyuki Kataoka, Kohzo Ito, "New solvent for polyrotaxane. III. dissolution in calcium thiocyanate aqueous solution or N-Methylmorpholine-N-Oxide (NMMO) monohydrate and the spontaneous gelation of the former solution", J. Appl. Polym. Sci., 105, 2265-2270 (2007). 9. Aoi Inomata, Hitoshi Ishibashi, Takao Nakajima, Yasuhiro Sakai, Masatoshi Kidowaki, Takeshi Shimomura and Kohzo Ito, "Dielectric relaxation of liquid-crystalline polyrotaxane", Europhysics Letters, 79(6), 66004 (2007). 10. Toshiyuki Kataoka, Masatoshi Kidowaki, Changming Zhao, Jun Araki, Takayuki Ikehara, and Kohzo Ito, "Thermal properties and microstructures of methylated polyrotaxane solutions", Current Drug Discovery Technologies, 4(4), 275-281(2007). 11. Masatoshi Kidowaki, Takao Nakajima, Jun Araki, Aoi Inomata, Hitoshi Ishibashi, Kohzo Ito, "Novel liquid crystalline polyrotaxane with movable mesogenic side chains", Macromolecules, 40, 6859-6862 (2007). 12. Toshiyuki Kataoka, Yohei Nagao, Masatoshi Kidowaki, Jun Araki, Kohzo Ito; "Liquid?liquid equilibria of polyrotaxane and poly(vinyl alcohol)", Colloids and Surfaces B: Biointerfaces, 56, 270-276(2007). 13. Takeshi Karino, Yasushi Okumura, Changming Zhao, Masatoshi Kidowaki, Toshiyuki Kataoka, Kohzo Ito and Mitsuhiro Shibayama; "Sol-gel transition of hydrophobically modified polyrotaxane", Macromolecules, 39, 9435-9441(2006). 14. Jun Araki, Kohzo Ito; "Polyrotaxane derivatives. I. Preparation of modified polyrotaxanes with nonionic functional groups and their solubility in organic solvents", Journal of Polymer Science Part A: Polymer Chemistry, 44(21), 6312-6323(2006). 15. Toshiyuki Kataoka, Masatoshi Kidowak, Changming Zhao, Hiroyuki Minamikawa, Toshimi Shimizu and Kohzo Ito; "Local and network structure of thermoreversible polyrotaxane hydrogels based on poly(ethylene glycol) and methylated α-cyclodextrins", Journal of Physical Chemistry, B, 110(48), 24377-243823(2006). 16. Masatoshi Kidowaki, Changming Zhao, Toshiyuki Kataoka, and Kohzo Ito; "Thermoreversible sol?gel transition of an aqueous solution of polyrotaxane composed of highly methylated α-cyclodextrin and polyethylene glycol", Chemical Communications, 4102-4103(2006). 17. Sadaki Samitsu, Jun Araki, Toshiyuki Kataoka and Kohzo Ito, "New solvent for polyrotaxane. II. Dissolution behavior of polyrotaxane in ionic liquids and preparation of ionic-liquid-containing slide-ring gel", Journal of Polymer Science: Part B: Polymer Physics, 44, 1985-1994(2006). 18. Jun Araki and Kohzo Ito; "New solvent for polyrotaxane. I. Dimethylacetamide/lithium chloride (DMAc/LiCl) system for modification of polyrotaxane", Journal of Polymer Science: Part A: Polymer Chemistry., 44 , 532 ? 538(2006). 19. Jun Araki, Changming Zhao and Kohzo Ito; "Efficient Production of Polyrotaxanes from α-Cyclodextrin and Poly(ethylene glycol)", Macromolecules, 38(17) , 7524 ? 7527(2005). 20. Changming Zhao, Yusuke Domon, Yasushi Okumura1, Satoshi Okabe, Mitsuhiro Shibayama and Kohzo Ito; "Sliding mode of cyclodextrin in polyrotaxane and slide-ring gel", Journal of Physics: Condensed Matter, 17 , S2841?S2846(2005). 21. Kohzo Ito, Takeshi Shimomura and Yasushi Okumura; "Nanostructures formed by combination of nanotube and polymer chains", Macromolecular Symposia, 201, 103-110(2003). 22. Takeshi Shimomura, Tatsuya Funaki and Kohzo Ito; "Circular dichroism study of the inclusion-dissociation behavior of complexes between a molecular nanotube and azobenzene substituted linear polymers", Journal of Inclusion Phenomena and Macrocyclic Chemistry, 44, 275-278(2003). 23. Takuya Funaki, Takeshi Shimomura and Kohzo Ito; "Inclusion-dissociation behavior between non-ionic surfactants and molecular nanotube in aqueous solution", Koubunshi Ronbunshu, 58, 299-303(2001). 24. Makoto Saito, Takeshi Shimomura, Yasushi Okumura, Kohzo Ito and Reinosuke Hayakawa; "Temperature dependence of inclusion-dissociation behavior between molecular nanotubes and linear polymers", Journal of Chemical Physics, 114, 1-3(2001). 25. Yasushi Okumura, Kohzo Ito, Reinosuke Hayakawa and Toshio Nishi; "Self-assembling dendritic supramolecule of molecular nanotubes and starpolymers", Langmuir, 26, 10278-10280(2000). 26. Yasushi Okumura, Kohzo Ito and Reinosuke Hayakawa; "Theory on inclusion behavior between cyclodextrin molecules and linear polymer chains in solutions", Polymers for Advanced Technologies, 11, 815-819(2000). 27. Eiji Ikeda, Yasushi Okumura, Takeshi Shimomura, Kohzo Ito and Reinosuke Hayakawa; "Inclusion behavior between molecular nanotubes and linear polymer chains in aqueous solutions", Journal of Chemical Physics, 112, 4321-4325 (2000).

Source: http://www.asmi.jp/wp-content/themes/asm/pdf/asm_book1.pdf

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