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空间分辨的多组分凝胶。

Spatially resolved multicomponent gels.

机构信息

Department of Chemistry, University of Liverpool, Crown Street, Liverpool L69 7ZD, UK.

出版信息

Nat Chem. 2015 Oct;7(10):848-52. doi: 10.1038/nchem.2347. Epub 2015 Sep 14.

Abstract

Multicomponent supramolecular systems could be used to prepare exciting new functional materials, but it is often challenging to control the assembly across multiple length scales. Here we report a simple approach to forming patterned, spatially resolved multicomponent supramolecular hydrogels. A multicomponent gel is first formed from two low-molecular-weight gelators and consists of two types of fibre, each formed by only one gelator. One type of fibre in this 'self-sorted network' is then removed selectively by a light-triggered gel-to-sol transition. We show that the remaining network has the same mechanical properties as it would have done if it initially formed alone. The selective irradiation of sections of the gel through a mask leads to the formation of patterned multicomponent networks, in which either one or two networks can be present at a particular position with a high degree of spatial control.

摘要

多组分超分子体系可用于制备令人兴奋的新型功能材料,但通常难以控制多个长度尺度上的组装。在这里,我们报告了一种形成图案化、空间分辨的多组分超分子水凝胶的简单方法。首先,由两种低分子量凝胶剂形成多组分凝胶,该凝胶由仅由一种凝胶剂形成的两种类型的纤维组成。这种“自分类网络”中的一种纤维通过光触发的凝胶到溶胶转变被选择性地去除。我们表明,剩余的网络具有与最初单独形成时相同的机械性能。通过掩模对凝胶的部分进行选择性辐照会导致图案化多组分网络的形成,其中在特定位置可以以高度的空间控制存在一种或两种网络。

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