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Rotaxanes, catenanes, polyrotaxanes, polycatenanes and related materialsGIBSON, H. W; BHEDA, M. C; ENGEN, P. T et al.Progress in polymer science. 1994, Vol 19, Num 5, pp 843-945, issn 0079-6700Article

Viscoelastic Properties of Slide-Ring Gels Reflecting Sliding Dynamics of Partial Chains and Entropy of Ring ComponentsKATO, Kazuaki; YASUDA, Takaaki; ITO, Kohzo et al.Macromolecules (Print). 2013, Vol 46, Num 1, pp 310-316, issn 0024-9297, 7 p.Article

Synthesis of polyester rotaxanes via the statistical threading methodWU, C; BHEDA, M. C; LIM, C et al.Polymer communications (Guildford). 1991, Vol 32, Num 7, pp 204-207, issn 0263-6476, 4 p.Article

Synthesis of topologically crosslinked polymers with rotaxane-crosslinking pointsKOYAMA, Yasuhito.Polymer journal. 2014, Vol 46, Num 6, pp 315-322, issn 0032-3896, 8 p.Article

Cyclodextrin-based supramolecular polymersHARADA, Akira; HASHIDZUME, Akihito; TAKASHIMA, Yoshinori et al.Advances in polymer science. 2006, Vol 201, pp 1-43, issn 0065-3195, 43 p.Article

Polypseudorotaxanes and polyrotaxanesFEIHE HUANG; GIBSON, Harry W.Progress in polymer science. 2005, Vol 30, Num 10, pp 982-1018, issn 0079-6700, 37 p.Article

α-Cyclodextrin/polyethylene glycol polyrotaxane : A study of the threading processCECCATO, M; LO NOSTRO, P; BAGLIONI, P et al.Langmuir. 1997, Vol 13, Num 9, pp 2436-2439, issn 0743-7463Article

Supramolecular polymers based on cyclodextrinsHARADA, Akira.Journal of polymer science. Part A. Polymer chemistry. 2006, Vol 44, Num 17, pp 5113-5119, issn 0887-624X, 7 p.Conference Paper

Synthesis of bis(p-phenylene)-32-crown-4 and bis(m-phenylen)-30-crown-4-macrocycles for the preparation of polyrotaxanesDELAVIZ, Y; YA XI SHEN; GIBSON, H. .W et al.Polymer (Guildford). 1992, Vol 33, Num 1, pp 212-213, issn 0032-3861Article

One-step synthesis of bis(meta-phenylene)-32-crown-10, a monomer suitable for the synthesis of polyrotaxanesDELAVIZ, Y; GIBSON, H. W.Polymer communications (Guildford). 1991, Vol 32, Num 4, pp 103-105, issn 0263-6476, 3 p.Article

Novel entropic elasticity of polymeric materials: why is slide-ring gel so soft?ITO, Kohzo.Polymer journal. 2012, Vol 44, Num 1, pp 38-41, issn 0032-3896, 4 p.Article

Crystallinity and Cooperative Motions of Cyclic Molecules in Partially Threaded Solid-State PolyrotaxanesINOMATA, Aoi; SAKAI, Yasuhiro; CHANGMING ZHAO et al.Macromolecules (Print). 2010, Vol 43, Num 10, pp 4660-4666, issn 0024-9297, 7 p.Article

Piston Rotaxane Monolayers: Shear Swelling and Nanovalve BehaviorBOESTEN, Ruud J. J; SEVICK, Edith M; WILLIAMS, David R. M et al.Macromolecules (Print). 2010, Vol 43, Num 17, pp 7244-7249, issn 0024-9297, 6 p.Article

Structure and dynamics of polyrotaxane and slide-ring materialsMAYUMI, Koichi; ITO, Kohzo.Polymer (Guildford). 2010, Vol 51, Num 4, pp 959-967, issn 0032-3861, 9 p.Article

Mechanically Interlocked Structure of Polyrotaxane Investigated by Contrast Variation Small-Angle Neutron ScatteringMAYUMI, Koichi; ENDO, Hitoshi; OSAKA, Noboru et al.Macromolecules (Print). 2009, Vol 42, Num 16, pp 6327-6329, issn 0024-9297, 3 p.Article

Polyrotaxane and polyrotaxane network : Supramolecular architectures based on the concept of dynamic covalent bond chemistryTAKATA, Toshikazu.Polymer journal. 2006, Vol 38, Num 1, pp 1-20, issn 0032-3896, 20 p.Article

SANS studies on deformation mechanism of slide-ring gelKARINO, Takeshi; OKUMURA, Yasushi; CHANGMING ZHAO et al.Macromolecules. 2005, Vol 38, Num 14, pp 6161-6167, issn 0024-9297, 7 p.Article

First poly[3]rotaxane synthesized through the noncovalent step-growth polymerization of a homoditopic dumbbell compound and a macrocycle with a reversible thiol-disulfide interchange reactionOKU, Tomoya; FURUSHO, Yoshio; TAKATA, Toshikazu et al.Journal of polymer science. Part A. Polymer chemistry. 2003, Vol 41, Num 1, pp 119-123, issn 0887-624X, 5 p.Article

Poly(polyrotaxane): Photoreactions of 9-anthracene-capped polyrotaxaneOKADA, Miyuko; HARADA, Akira.Macromolecules. 2003, Vol 36, Num 26, pp 9701-9703, issn 0024-9297, 3 p.Article

Solid-state NMR investigations of poly[(acrylonitrile)-rotaxa-(60-crown-20)]NAGAPUDI, K; LEISEN, J; BECKHAM, H. W et al.Macromolecules. 1999, Vol 32, Num 9, pp 3025-3033, issn 0024-9297Article

New polymer architectures : Recent results with polyrotaxanesGIBSON, H. W; CAIGUO GONG; SHU LIU et al.Die Makromolekulare Chemie. Macromolecular symposia. 1998, pp 89-98, issn 0258-0322, isbn 3-85739-325-4Conference Paper

Macromolecular recognition by cyclodextrinsHARADA, A.Yukagaku. 1994, Vol 43, Num 10, pp 839-844, issn 0513-398XArticle

Spontaneous Assembly into Pseudopolyrotaxane Between Cyclodextrins and Biodegradable Polyphosphoester IonomersTAMURA, Atsushi; TOKUNAGA, Masahiro; IWASAKI, Yasuhiko et al.Macromolecular chemistry and physics (Print). 2014, Vol 215, Num 7, pp 648-653, issn 1022-1352, 6 p.Article

Formation of a Polypseudorotaxane via Self-Assembly of γ-Cyclodextrin with Poly(N-isopropylacrylamide)JIN WANG; SHUO LI; LIN YE et al.Macromolecular rapid communications. 2012, Vol 33, Num 13, pp 1143-1148, issn 1022-1336, 6 p.Article

Providing natural water structure surrounding highly mobile maltose groups conjugated with polyrotaxanesHIROSE, Hiroaki; SAND, Haruyuki; MIZUTANI, Goro et al.Polymer journal. 2006, Vol 38, Num 10, pp 1093-1097, issn 0032-3896, 5 p.Article

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