追蹤
Kohzo Ito
Kohzo Ito
Professor, The University of Tokyo
在 k.u-tokyo.ac.jp 的電子郵件地址已通過驗證
標題
引用次數
引用次數
年份
The polyrotaxane gel: A topological gel by figure‐of‐eight cross‐links
Y Okumura, K Ito
Advanced materials 13 (7), 485-487, 2001
19502001
Self-assembled hexa-peri-hexabenzocoronene graphitic nanotube
JP Hill, W Jin, A Kosaka, T Fukushima, H Ichihara, T Shimomura, K Ito, ...
Science 304 (5676), 1481-1483, 2004
11382004
Extremely stretchable thermosensitive hydrogels by introducing slide-ring polyrotaxane cross-linkers and ionic groups into the polymer network
A Bin Imran, K Esaki, H Gotoh, T Seki, K Ito, Y Sakai, Y Takeoka
Nature communications 5 (1), 5124, 2014
4852014
Novel cross-linking concept of polymer network: synthesis, structure, and properties of slide-ring gels with freely movable junctions
K Ito
Polymer journal 39 (6), 489-499, 2007
3982007
Tough hydrogels with rapid self-reinforcement
C Liu, N Morimoto, L Jiang, S Kawahara, T Noritomi, H Yokoyama, ...
Science 372 (6546), 1078-1081, 2021
3592021
Recent advances in the preparation of cyclodextrin-based polyrotaxanes and their applications to soft materials
J Araki, K Ito
Soft Matter 3 (12), 1456-1473, 2007
3192007
Effective production of poly (3-alkylthiophene) nanofibers by means of whisker method using anisole solvent: Structural, optical, and electrical properties
S Samitsu, T Shimomura, S Heike, T Hashizume, K Ito
Macromolecules 41 (21), 8000-8010, 2008
2862008
Electroactive supramolecular self-assembled fibers comprised of doped tetrathiafulvalene-based gelators
T Kitamura, S Nakaso, N Mizoshita, Y Tochigi, T Shimomura, M Moriyama, ...
Journal of the American Chemical Society 127 (42), 14769-14775, 2005
2592005
Inclusion complex formation of cyclodextrin and polyaniline
K Yoshida, T Shimomura, K Ito, R Hayakawa
Langmuir 15 (4), 910-913, 1999
2291999
Efficient Production of Polyrotaxanes from-Cyclodextrin and Poly (ethylene glycol)
J Araki, C Zhao, K Ito
Macromolecules 38, 7524-7527, 2005
2022005
Slide-ring materials using topological supramolecular architecture
K Ito
Current Opinion in Solid State and Materials Science 14 (2), 28-34, 2010
1742010
From topological gels to slide‐ring materials
Y Noda, Y Hayashi, K Ito
Journal of Applied Polymer Science 131 (15), 2014
1722014
SANS studies on deformation mechanism of slide-ring gel
T Karino, Y Okumura, C Zhao, T Kataoka, K Ito, M Shibayama
Macromolecules 38 (14), 6161-6167, 2005
1512005
SANS studies on spatial inhomogeneities of slide-ring gels
T Karino, Y Okumura, K Ito, M Shibayama
Macromolecules 37 (16), 6177-6182, 2004
1382004
Highly Stretchable and Instantly Recoverable Slide-Ring Gels Consisting of Enzymatically Synthesized Polyrotaxane with Low Host Coverage
KI Lan Jiang, Chang Liu, Koichi Mayumi, Kazuaki Kato, Hideaki Yokoyama
Chemistry of Materials 30 (15), 5013-5019, 2018
1372018
Atomic force microscopy observation of insulated molecular wire formed by conducting polymer and molecular nanotube
T Shimomura, T Akai, T Abe, K Ito
The Journal of chemical physics 116 (5), 1753-1756, 2002
1362002
Preparation of a “sliding graft copolymer”, an organic solvent-soluble polyrotaxane containing mobile side chains, and its application for a crosslinked elastomeric …
J Araki, T Kataoka, K Ito
Soft Matter 4 (2), 245-249, 2008
1342008
Structure and dynamics of polyrotaxane and slide-ring materials
K Mayumi, K Ito
Polymer 51 (4), 959-967, 2010
1332010
Novel entropic elasticity of polymeric materials: why is slide-ring gel so soft?
K Ito
Polymer journal 44 (1), 38-41, 2012
1252012
Photoresponsive slide-ring gel
T Sakai, H Murayama, S Nagano, Y Takeoka, M Kidowaki, K Ito, T Seki
Advanced Materials 19 (15), 2023-2025, 2007
1222007
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