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Hydrogel microparticles from lithographic processes: Novel materials for fundamental and applied colloid science

机译:来自光刻工艺的水凝胶微粒:用于基础和应用胶体科学的新型材料

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摘要

In recent years, there has been a surge in methods to synthesize geometrically and chemically complex microparticles. Analogous to atoms, the concept of a “periodic table” of particles has emerged and continues to be expanded upon. Complementing the natural intellectual curiosity that drives the creation of increasingly intricate particles is the pull from applications that take advantage of such high-value materials. Complex particles are now being used in fields ranging from diagnostics and catalysis, to self-assembly and rheology, where material composition and microstructure are closely linked with particle function. This is especially true of polymer hydrogels, which offer an attractive and broad class of base materials for synthesis. Lithography affords the ability to engineer particle properties a priori and leads to the production of homogenous ensembles of particles. This review summarizes recent advances in synthesizing hydrogel microparticles using lithographic processes and highlights a number of emerging applications. We discuss advantages and limitations of current strategies, and conclude with an outlook on future trends in the field.
机译:近年来,合成几何和化学复杂的微粒的方法激增。类似于原子,粒子“周期表”的概念已经出现并继续得到扩展。利用这种高价值材料的应用程序可以拉动自然知识的好奇心,这种好奇心驱使创造越来越复杂的粒子。如今,复杂颗粒已用于从诊断和催化到自组装和流变学等领域,这些领域中的材料组成和微观结构与颗粒功能密切相关。聚合物水凝胶尤其如此,它为合成提供了引人入胜的广泛基础材料。平版印刷术具有先验地设计颗粒特性的能力,并导致产生均匀的颗粒集合体。这篇综述总结了使用平版印刷工艺合成水凝胶微粒的最新进展,并重点介绍了许多新兴应用。我们讨论了当前策略的优点和局限性,并对本领域的未来趋势进行了展望。

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