Riku Takahashi
Hokkaido University
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Publication
Featured researches published by Riku Takahashi.
Nature Communications | 2014
Riku Takahashi; Zi Liang Wu; Arifuzzaman; Takayuki Nonoyama; Tasuku Nakajima; Takayuki Kurokawa; Jian Ping Gong
Biomacromolecules usually form complex superstructures in natural biotissues, such as different alignments of collagen fibres in articular cartilages, for multifunctionalities. Inspired by nature, there are efforts towards developing multiscale ordered structures in hydrogels (recognized as one of the best candidates of soft biotissues). However, creating complex superstructures in gels are hardly realized because of the absence of effective approaches to control the localized molecular orientation. Here we introduce a method to create various superstructures of rigid polyanions in polycationic hydrogels. The control of localized orientation of rigid molecules, which are sensitive to the internal stress field of the gel, is achieved by tuning the swelling mismatch between masked and unmasked regions of the photolithographic patterned gel. Furthermore, we develop a double network structure to toughen the hydrogels with programmed superstructures, which deform reversibly under large strain. This work presents a promising pathway to develop superstructures in hydrogels and should shed light on designing biomimetic materials with intricate molecular alignments.
Advanced Materials | 2018
Ping Rao; Tao Lin Sun; Liang Chen; Riku Takahashi; Gento Shinohara; Hui Guo; Daniel R. King; Takayuki Kurokawa; Jian Ping Gong
Hydrogels have promising applications in diverse areas, especially wet environments including tissue engineering, wound dressing, biomedical devices, and underwater soft robotics. Despite strong demands in such applications and great progress in irreversible bonding of robust hydrogels to diverse synthetic and biological surfaces, tough hydrogels with fast, strong, and reversible underwater adhesion are still not available. Herein, a strategy to develop hydrogels demonstrating such characteristics by combining macroscale surface engineering and nanoscale dynamic bonds is proposed. Based on this strategy, excellent underwater adhesion performance of tough hydrogels with dynamic ionic and hydrogen bonds, on diverse substrates, including hard glasses, soft hydrogels, and biological tissues is obtained. The proposed strategy can be generalized to develop other soft materials with underwater adhesion.
Macromolecules | 2013
Md. Arifuzzaman; Zi Liang Wu; Riku Takahashi; Takayuki Kurokawa; Tasuku Nakajima; Jian Ping Gong
Macromolecules | 2014
Zi Liang Wu; Riku Takahashi; Daisuke Sawada; Md. Arifuzzaman; Tasuku Nakajima; Takayuki Kurokawa; Jian Hu; Jian Ping Gong
Macromolecules | 2015
Xufeng Li; Takayuki Kurokawa; Riku Takahashi; Md. Anamul Haque; Youfeng Yue; Tasuku Nakajima; Jian Ping Gong
Soft Matter | 2016
Riku Takahashi; Yumihiko Ikura; Daniel R. King; Takayuki Nonoyama; Tasuku Nakajima; Takayuki Kurokawa; Hirotoshi Kuroda; Yoshihiro Tonegawa; Jian Ping Gong
Advanced Materials | 2018
Riku Takahashi; Tao Lin Sun; Yoshiyuki Saruwatari; Takayuki Kurokawa; Daniel R. King; Jian Ping Gong
Advanced Functional Materials | 2018
Ya Nan Ye; Martin Frauenlob; Lei Wang; Masumi Tsuda; Tao Lin Sun; Kunpeng Cui; Riku Takahashi; Hui Jie Zhang; Tasuku Nakajima; Takayuki Nonoyama; Takayuki Kurokawa; Shinya Tanaka; Jian Ping Gong
Advanced Materials Interfaces | 2018
Riku Takahashi; Kouichi Shimano; Haruka Okazaki; Takayuki Kurokawa; Tasuku Nakajima; Takayuki Nonoyama; Daniel R. King; Jian Ping Gong
Advanced Functional Materials | 2018
Ya Nan Ye; Martin Frauenlob; Lei Wang; Masumi Tsuda; Tao Lin Sun; Kunpeng Cui; Riku Takahashi; Hui Jie Zhang; Tasuku Nakajima; Takayuki Nonoyama; Takayuki Kurokawa; Shinya Tanaka; Jian Ping Gong