Suppr超能文献

通过使一个网络催化第二个网络的形成来合成双网络超分子水凝胶。

Synthesis of a Double-Network Supramolecular Hydrogel by Having One Network Catalyse the Formation of the Second.

作者信息

Singh Nishant, Maity Chandan, Zhang Kai, Angulo-Pachón César A, van Esch Jan H, Eelkema Rienk, Escuder Beatriu

机构信息

Departament de Química Inorgànica i Orgànica, Universitat Jaume I, 12071, Castelló, Spain.

Advanced Soft Matter, Department of Chemical Engineering, Delft University of Technology, van der Maasweg 9, 2629 HZ, Delft, The Netherlands.

出版信息

Chemistry. 2017 Feb 10;23(9):2018-2021. doi: 10.1002/chem.201605771. Epub 2017 Jan 20.

Abstract

Self-assembly of biomolecules catalytically controls the formation of natural supramolecular structures, giving highly ordered complex materials. Such desirable hybrid systems are very difficult to design and construct synthetically. A hybrid double-network hydrogel with a maximum storage modulus (G' ) of up to 55 kPa can be synthesized by using a self-assembled hydrogel that catalyses the formation of another kinetically arrested hydrogel network. Tuning of the catalytic efficiency of the first network allowed spatiotemporal control over the evolution of the second network and the resulting mechanical properties. The distribution of active catalytic sites was optimal for catalytic fibres prepared at the minimum gelation concentration (MGC) to give the double-network hydrogel with highest storage modulus. This approach could be very useful in preparing complex hierarchical structures with tailor-made properties.

摘要

生物分子的自组装通过催化作用控制天然超分子结构的形成,从而产生高度有序的复合材料。这种理想的混合体系很难通过合成方法进行设计和构建。通过使用一种自组装水凝胶来催化另一种动力学受阻的水凝胶网络的形成,可以合成一种最大储能模量(G')高达55 kPa的混合双网络水凝胶。对第一个网络催化效率的调节使得能够对第二个网络的演化以及由此产生的机械性能进行时空控制。活性催化位点的分布对于在最低凝胶化浓度(MGC)下制备的催化纤维而言是最佳的,从而能够得到具有最高储能模量的双网络水凝胶。这种方法在制备具有定制性质的复杂层次结构方面可能非常有用。

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