摘要: Vinyl-functionalized thermosensitive Pluronic
F127 micelles have been used as multifunctional cross-links for
the synthesis of super tough, highly resilient and thermores-
ponsive nanomicelle (NM) hydrogels. Pluronic F127
diacrylate (F127DA) with vinyl groups on both ends self-
assembled in aqueous solution into micelles. Such micelles
served as multifunctional macro-cross-links to copolymerize
with acrylamide (AAm) monomers, generating novel NM
hydrogels with extraordinary tensile and compressive proper-
ties, without using any chemical cross-linkers. Uniaxial tensile
tests demonstrated a fracture strain above 2265%, an ultimate
stress of 276 kPa, and a fracture energy of 2.34 MJ/m3. Under
compression tests, these hydrogels did not fracture up to 98%
strain and 62 MPa stress. Cyclic compressive loading−unloading tests at 90% strain showed no decay of the hyseteresis energy, indicating an unprecedented fatigue resistance.
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分类:
物理学
>>
普通物理:统计和量子力学,量子信息等
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引用:
ChinaXiv:201705.00462
(或此版本
ChinaXiv:201705.00462V1)
DOI:10.12074/201705.00462V1
CSTR:32003.36.ChinaXiv.201705.00462.V1
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科创链TXID:
7c01c618-bb7a-4f08-be7a-1e17c82bef0c
- 推荐引用方式:
Sun, YN [Sun, Yuan-na][ 1 ],Gao, GR [Gao, Guo-rong][ 1 ],Du, GL [Du, Gao-lai][ 1 ],Cheng, YJ [Cheng, Ya-jun][ 1 ],Fu, J [Fu, Jun][ 1 ].Super Tough, Ultrastretchable, and Thermoresponsive Hydrogels with Functionalized Triblock Copolymer Micelles as Macro-Cross-Linkers.中国科学院科技论文预发布平台.[ChinaXiv:201705.00462V1]
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