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用于分离应用的甲基丙烯酸酯聚合物整体柱

Methacrylate Polymer Monoliths for Separation Applications.

作者信息

Groarke Robert J, Brabazon Dermot

机构信息

Advanced Processing Technology Research Centre, Dublin City University, Collins Avenue, Dublin 9, Ireland.

National Sensor Research Centre, Dublin City University, Glasnevin, Dublin 9, Ireland.

出版信息

Materials (Basel). 2016 Jun 3;9(6):446. doi: 10.3390/ma9060446.

Abstract

This review summarizes the development of methacrylate-based polymer monoliths for separation science applications. An introduction to monoliths is presented, followed by the preparation methods and characteristics specific to methacrylate monoliths. Both traditional chemical based syntheses and emerging additive manufacturing methods are presented along with an analysis of the different types of functional groups, which have been utilized with methacrylate monoliths. The role of methacrylate based porous materials in separation science in industrially important chemical and biological separations are discussed, with particular attention given to the most recent developments and challenges associated with these materials. While these monoliths have been shown to be useful for a wide variety of applications, there is still scope for exerting better control over the porous architectures and chemistries obtained from the different fabrication routes. Conclusions regarding this previous work are drawn and an outlook towards future challenges and potential developments in this vibrant research area are presented. Discussed in particular are the potential of additive manufacturing for the preparation of monolithic structures with pre-defined multi-scale porous morphologies and for the optimization of surface reactive chemistries.

摘要

本综述总结了用于分离科学应用的甲基丙烯酸酯基聚合物整体柱的发展情况。首先介绍了整体柱,接着阐述了甲基丙烯酸酯整体柱特有的制备方法和特性。介绍了传统的基于化学的合成方法以及新兴的增材制造方法,并分析了与甲基丙烯酸酯整体柱一起使用的不同类型官能团。讨论了甲基丙烯酸酯基多孔材料在工业上重要的化学和生物分离的分离科学中的作用,特别关注了与这些材料相关的最新进展和挑战。虽然这些整体柱已被证明可用于多种应用,但在更好地控制从不同制造路线获得的多孔结构和化学性质方面仍有空间。得出了关于此前工作的结论,并展望了这个充满活力的研究领域未来的挑战和潜在发展。特别讨论了增材制造在制备具有预定义多尺度多孔形态的整体结构以及优化表面反应化学性质方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b23d/5456823/06f6e3708315/materials-09-00446-g001.jpg

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