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通过pH变化反应诱导溶致相变实现物理性质随时间编程变化的软材料。

Soft Materials with Time-Programmed Changes in Physical Properties through Lyotropic Phase Transitions Induced by pH-Changing Reactions.

作者信息

Bowley Emma, Liu Wanli, Adams Dave J, Squires Adam M

机构信息

School of Chemistry, University of Glasgow, Glasgow G12 8QQ, U.K.

Department of Chemistry, University of Bath, Bath BA2 7AY, U.K.

出版信息

ACS Appl Mater Interfaces. 2024 Apr 17;16(15):19585-19593. doi: 10.1021/acsami.4c01455. Epub 2024 Apr 5.

Abstract

We present the development of time-programmable functional soft materials. The materials undergo reversible phase transitions between lyotropic phases with different topologies and symmetries, which in turn have very different physical properties: viscosity, diffusion, and optical transparency. Here, this behavior is achieved by combining pH-responsive lyotropic phases made from the lipid monoolein doped with 10% oleic acid, with chemical reactions that have well-defined controllable kinetics: autocatalytic urea-urease and methyl formate hydrolysis, which increase and decrease pH, respectively. In this case, we use small-angle X-ray scattering (SAXS) and optical imaging to show temporally controlled transitions between the cloudy hexagonal phase, which is a two-dimensional (2D) array of cylindrical inverse micelles, and the transparent, highly viscous three-dimensional (3D) bicontinuous cubic phases. By combining these into a single reaction mixture where the pH increases and then decreases again, we can induce a sequential transformation cycle from hexagonal to cubic and back to hexagonal over several hours. The sample therefore changes from cloudy to transparent and back again as a proof-of-concept demonstration for a wider range of soft materials with time-programmable changes in physical properties.

摘要

我们展示了时间可编程功能软材料的开发。这些材料在具有不同拓扑结构和对称性的溶致液晶相之间经历可逆相变,而这些溶致液晶相又具有截然不同的物理性质:粘度、扩散和光学透明度。在此,通过将由掺杂10%油酸的单油酸甘油酯制成的pH响应溶致液晶相与具有明确可控动力学的化学反应相结合来实现这种行为:分别用于提高和降低pH值的自催化尿素-脲酶反应和甲酸甲酯水解反应。在这种情况下,我们使用小角X射线散射(SAXS)和光学成像来展示在浑浊的六方相(由圆柱形反胶束组成的二维(2D)阵列)和透明、高粘性的三维(3D)双连续立方相之间的时间控制转变。通过将这些反应组合到一个单一反应混合物中,使pH值先升高然后再降低,我们可以在数小时内诱导从六方相到立方相再回到六方相的连续转变循环。因此,作为具有时间可编程物理性质变化的更广泛软材料的概念验证演示,样品从浑浊变为透明,然后又变回浑浊。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4f9/11040581/9e205cb817c2/am4c01455_0001.jpg

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