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Journal of Colloid and Interface Science|June 26, 2012
Dual cross-linked networks hydrogels with unique swelling behavior and high mechanical strength: based on silica nanoparticle and hydrophobic associationJun Yang, Fu-Kuan Shi, Cheng Gong, et al.The Journal of Physical Chemistry. B|September 7, 2012
High strength of physical hydrogels based on poly(acrylic acid)-g-poly(ethylene glycol) methyl ether: role of chain architecture on hydrogel propertiesJun Yang, Cheng Gong, Fu-Kuan Shi, et al.Soft Matter|April 24, 2020
How can multi-bond network hydrogels dissipate energy more effectively: an investigation on the relationship between network structure and propertiesHao Xu, Fu-Kuan Shi, Xiao-Ying Liu, et al.Journal of Materials Chemistry. B|April 9, 2020
Highly stretchable and super tough nanocomposite physical hydrogels facilitated by the coupling of intermolecular hydrogen bonds and analogous chemical crosslinking of nanoparticlesFu-Kuan Shi, Xi-Ping Wang, Ruo-Hai Guo, et al.Journal of Materials Chemistry. B|April 9, 2020
Robust and self-healable nanocomposite physical hydrogel facilitated by the synergy of ternary crosslinking points in a single networkFu-Kuan Shi, Ming Zhong, Li-Qin Zhang, et al.Soft Matter|May 28, 2016
Dually cross-linked single network poly(acrylic acid) hydrogels with superior mechanical properties and water absorbencyMing Zhong, Yi-Tao Liu, Xiao-Ying Liu, et al.Soft Matter|April 21, 2015
Self-healable, tough and highly stretchable ionic nanocomposite physical hydrogelsMing Zhong, Xiao-Ying Liu, Fu-Kuan Shi, et al.Pageof 1