Echeverria Coro, Fernandes Susete N, Godinho Maria H, Borges João Paulo, Soares Paula I P
Instituto de Ciencia y Tecnología de Polímeros, ICTP-CSIC, Calle Juan de la Cierva 3, Madrid 28006, Spain.
I3N/CENIMAT, Department of Materials Science, Faculty of Science and Technology, Universidade NOVA de Lisboa, Campus de Caparica, Caparica 2829-516, Portugal.
Gels. 2018 Jun 12;4(2):54. doi: 10.3390/gels4020054.
One strategy that has gained much attention in the last decades is the understanding and further mimicking of structures and behaviours found in nature, as inspiration to develop materials with additional functionalities. This review presents recent advances in stimuli-responsive gels with emphasis on functional hydrogels and microgels. The first part of the review highlights the high impact of stimuli-responsive hydrogels in materials science. From macro to micro scale, the review also collects the most recent studies on the preparation of hybrid polymeric microgels composed of a nanoparticle (able to respond to external stimuli), encapsulated or grown into a stimuli-responsive matrix (microgel). This combination gave rise to interesting multi-responsive functional microgels and paved a new path for the preparation of multi-stimuli "smart" systems. Finally, special attention is focused on a new generation of functional stimuli-responsive polymer hydrogels able to self-shape (shape-memory) and/or self-repair. This last functionality could be considered as the closing loop for smart polymeric gels.
在过去几十年中备受关注的一种策略是理解并进一步模仿自然界中发现的结构和行为,以此为灵感开发具有附加功能的材料。本综述介绍了刺激响应凝胶的最新进展,重点是功能水凝胶和微凝胶。综述的第一部分强调了刺激响应水凝胶在材料科学中的重大影响。从宏观到微观尺度,综述还收集了关于制备由纳米颗粒(能够响应外部刺激)组成的杂化聚合物微凝胶的最新研究,这些纳米颗粒被包裹或生长在刺激响应基质(微凝胶)中。这种组合产生了有趣的多响应功能微凝胶,并为制备多刺激“智能”系统开辟了一条新途径。最后,特别关注了能够自我塑形(形状记忆)和/或自我修复的新一代功能刺激响应聚合物水凝胶。最后这种功能可被视为智能聚合物凝胶的闭环。