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首页> 外文期刊>Nature Communications >Control superstructure of rigid polyelectrolytes in oppositely charged hydrogels via programmed internal stress
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Control superstructure of rigid polyelectrolytes in oppositely charged hydrogels via programmed internal stress

机译:通过编程的内部应力控制带相反电荷的水凝胶中的刚性聚电解质的上部结构

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摘要

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.RI Gong, Jian Ping/B-7019-2009OI Gong, Jian Ping/0000-0003-2228-2750
机译:生物大分子通常在天然生物组织中形成复杂的上部结构,例如关节软骨中胶原纤维的不同排列,以实现多功能。受自然界的启发,人们正在努力开发水凝胶中的多尺度有序结构(公认是软生物组织的最佳候选者之一)。但是,由于缺乏控制局部分子取向的有效方法,因此很难在凝胶中形成复杂的超结构。在这里,我们介绍一种在聚阳离子水凝胶中创建各种刚性聚阴离子超结构的方法。对凝胶的内部应力场敏感的刚性分子的局部取向的控制是通过调节光刻图案化的凝胶的掩蔽和未掩蔽区域之间的溶胀失配来实现的。此外,我们开发了一种双网络结构,可通过编程的上层结构来强化水凝胶,这些结构在大应变下可逆地变形。这项工作为在水凝胶中发展上层结构提供了一个有希望的途径,应该为设计具有复杂分子排列的仿生材料提供参考.RI Gong,Jian Ping / B-7019-2009OI Gong,Jian Ping / 0000-0003-2228-2750

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