Theo dõi
Tasuku Nakajima
Tasuku Nakajima
Email được xác minh tại sci.hokudai.ac.jp
Tiêu đề
Trích dẫn bởi
Trích dẫn bởi
Năm
Physical hydrogels composed of polyampholytes demonstrate high toughness and viscoelasticity
TL Sun, T Kurokawa, S Kuroda, AB Ihsan, T Akasaki, K Sato, MA Haque, ...
Nature materials 12 (10), 932-937, 2013
19852013
Mechanoresponsive self-growing hydrogels inspired by muscle training
T Matsuda, R Kawakami, R Namba, T Nakajima, JP Gong
Science 363 (6426), 504-508, 2019
7102019
Oppositely charged polyelectrolytes form tough, self-healing, and rebuildable hydrogels.
F Luo, TL Sun, T Nakajima, T Kurokawa, Y Zhao, K Sato, AB Ihsan, X Li, ...
Advanced Materials (Deerfield Beach, Fla.) 27 (17), 2722-2727, 2015
6592015
Tough physical double‐network hydrogels based on amphiphilic triblock copolymers
HJ Zhang, TL Sun, AK Zhang, Y Ikura, T Nakajima, T Nonoyama, ...
Advanced Materials 28 (24), 4884-4890, 2016
5442016
A facile method to fabricate anisotropic hydrogels with perfectly aligned hierarchical fibrous structures
MTI Mredha, YZ Guo, T Nonoyama, T Nakajima, T Kurokawa, JP Gong
Advanced Materials 30 (9), 1704937, 2018
4062018
True chemical structure of double network hydrogels
T Nakajima, H Furukawa, Y Tanaka, T Kurokawa, Y Osada, JP Gong
Macromolecules 42 (6), 2184-2189, 2009
3522009
Double-network hydrogels strongly bondable to bones by spontaneous osteogenesis penetration
T Nonoyama, S Wada, R Kiyama, N Kitamura, MTI Mredha, X Zhang, ...
Adv. Mater 28 (31), 6740-6745, 2016
2812016
Mechano-actuated ultrafast full-colour switching in layered photonic hydrogels
Y Yue, T Kurokawa, MA Haque, T Nakajima, T Nonoyama, X Li, I Kajiwara, ...
Nature communications 5 (1), 4659, 2014
2492014
Characterization of internal fracture process of double network hydrogels under uniaxial elongation
T Nakajima, T Kurokawa, S Ahmed, W Wu, JP Gong
Soft Matter 9 (6), 1955-1966, 2013
2452013
Self-healing behaviors of tough polyampholyte hydrogels
AB Ihsan, TL Sun, T Kurokawa, SN Karobi, T Nakajima, T Nonoyama, ...
Macromolecules 49 (11), 4245-4252, 2016
2402016
A universal molecular stent method to toughen any hydrogels based on double network concept
T Nakajima, H Sato, Y Zhao, S Kawahara, T Kurokawa, K Sugahara, ...
Advanced functional materials 22 (21), 4426-4432, 2012
2262012
Self‐adjustable adhesion of polyampholyte hydrogels
CK Roy, HL Guo, TL Sun, AB Ihsan, T Kurokawa, M Takahata, ...
Advanced materials 27 (45), 7344-7348, 2015
2132015
Proteoglycans and glycosaminoglycans improve toughness of biocompatible double network hydrogels.
Y Zhao, T Nakajima, JJ Yang, T Kurokawa, J Liu, J Lu, S Mizumoto, ...
Advanced Materials (Deerfield Beach, Fla.) 26 (3), 436-442, 2013
1862013
Phase-Separation-Induced Anomalous Stiffening, Toughening, and Self-Healing of Polyacrylamide Gels.
K Sato, T Nakajima, T Hisamatsu, T Nonoyama, T Kurokawa, JP Gong
Advanced Materials (Deerfield Beach, Fla.) 27 (43), 6990-6998, 2015
1762015
Importance of entanglement between first and second components in high-strength double network gels
M Huang, H Furukawa, Y Tanaka, T Nakajima, Y Osada, JP Gong
Macromolecules 40 (18), 6658-6664, 2007
1742007
Energy‐dissipative matrices enable synergistic toughening in fiber reinforced soft composites
Y Huang, DR King, TL Sun, T Nonoyama, T Kurokawa, T Nakajima, ...
Advanced functional materials 27 (9), 1605350, 2017
1692017
Lamellar hydrogels with high toughness and ternary tunable photonic stop‐band
YF Yue, MA Haque, T Kurokawa, T Nakajima, JP Gong
Advanced materials 25 (22), 3106-3110, 2013
1652013
Yielding criteria of double network hydrogels
T Matsuda, T Nakajima, Y Fukuda, W Hong, T Sakai, T Kurokawa, ...
Macromolecules 49 (5), 1865-1872, 2016
1622016
Anisotropic tough double network hydrogel from fish collagen and its spontaneous in vivo bonding to bone
MTI Mredha, N Kitamura, T Nonoyama, S Wada, K Goto, X Zhang, ...
Biomaterials 132, 85-95, 2017
1602017
Crack blunting and advancing behaviors of tough and self-healing polyampholyte hydrogel
F Luo, TL Sun, T Nakajima, T Kurokawa, Y Zhao, AB Ihsan, HL Guo, XF Li, ...
Macromolecules 47 (17), 6037-6046, 2014
1592014
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