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皮克林聚合高内相乳液:从基础到高级应用

Pickering polymerized high internal phase emulsions: Fundamentals to advanced applications.

作者信息

Durgut E, Claeyssens F

机构信息

Department of Genetics and Bioengineering, Alanya Alaaddin Keykubat University, Alanya/Antalya, Turkiye; Kroto Research Institute, Department of Materials Science and Engineering, University of Sheffield, Sheffield, United Kingdom.

Kroto Research Institute, Department of Materials Science and Engineering, University of Sheffield, Sheffield, United Kingdom; Department of Materials Science and Engineering, INSIGNEO Institute for In Silico Medicine, The University of Sheffield, Sheffield, United Kingdom.

出版信息

Adv Colloid Interface Sci. 2025 Feb;336:103375. doi: 10.1016/j.cis.2024.103375. Epub 2024 Dec 7.

Abstract

Pickering-polymerized high internal phase emulsions have attracted attention since their successful first preparation 15 years ago, primarily due to their large pores and potential for functionalization during production. This review elucidates the fundamental principles of Pickering emulsions, Pickering HIPEs, and Pickering PolyHIPEs while comparing them to conventional surfactant-stabilized counterparts. The morphology of Pickering PolyHIPEs, with particular emphasis on methods for achieving interconnected structures, is explored and critically assessed. Lastly, the mechanical properties and diverse applications of these materials are reviewed, highlighting their use as catalytic supports and sorbent materials. The study aims to guide both new and experienced researchers in the field by comprehensively addressing the current potential and challenges of Pickering PolyHIPEs. Once the mystery behind the closed cellular pores of Pickering PolyHIPEs is resolved, these materials are expected to become more popular, particularly in applications where mass transfer is critical, such as tissue engineering.

摘要

自15年前首次成功制备以来,皮克林聚合的高内相乳液就备受关注,这主要归功于其大孔结构以及生产过程中进行功能化修饰的潜力。本综述阐明了皮克林乳液、皮克林高内相乳液和皮克林聚高内相乳液的基本原理,并将它们与传统表面活性剂稳定的乳液进行了比较。探讨并批判性地评估了皮克林聚高内相乳液的形态,特别强调了实现相互连接结构的方法。最后,综述了这些材料的机械性能和多样应用,突出了它们作为催化载体和吸附材料的用途。本研究旨在通过全面阐述皮克林聚高内相乳液当前的潜力和挑战,为该领域的新老研究人员提供指导。一旦皮克林聚高内相乳液封闭细胞孔背后的奥秘得以解决,这些材料有望变得更受欢迎,尤其是在传质至关重要的应用中,如组织工程。

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