Muzata Tanyaradzwa S, L Jagadeshvaran P, Bose Suryasarathi
Department of Materials Engineering, Indian Institute of Science, Bangalore 560012, India.
Phys Chem Chem Phys. 2020 Sep 23;22(36):20167-20188. doi: 10.1039/d0cp01814g.
Polymer blending is an effective method that can be used to fabricate new versatile materials with enhanced properties. The blending of two polymers can result in either a miscible or an immiscible polymer blend system. This present review provides an in-depth summary of the miscibility of LCST polymer blend systems, an area that has garnered much attention in the past few years. The initial discourse of the present review mainly focuses on process-induced changes in the miscibility of polymer blend systems, and how the preparation of polymer blends affects their final properties. This review further highlights how nanoparticles induce miscibility and describes the various methods that can be implemented to avoid nanoparticle aggregation. The concepts and different state-of-the-art experimental methods which can be used to determine miscibility in polymer blends are also highlighted. Lastly, the importance of studying miscible polymer blends is extensively explored by looking at their importance in barrier materials, EMI shielding, corrosion protection, light-emitting diodes, gas separation, and lithium battery applications. The primary goal of this review is to cover the journey from the fundamental aspects of miscible polymer blends to their applications.
聚合物共混是一种有效的方法,可用于制造具有增强性能的新型多功能材料。两种聚合物的共混可产生可混溶或不可混溶的聚合物共混体系。本综述深入总结了具有最低临界溶液温度的聚合物共混体系的混溶性,这一领域在过去几年中备受关注。本综述的开篇论述主要聚焦于聚合物共混体系混溶性的过程诱导变化,以及聚合物共混物的制备如何影响其最终性能。本综述进一步强调了纳米颗粒如何诱导混溶性,并描述了可用于避免纳米颗粒聚集的各种方法。还突出了可用于确定聚合物共混物中混溶性的概念和不同的最新实验方法。最后,通过研究其在阻隔材料、电磁干扰屏蔽、腐蚀防护、发光二极管、气体分离和锂电池应用中的重要性,广泛探讨了研究可混溶聚合物共混物的重要性。本综述的主要目标是涵盖从可混溶聚合物共混物的基本方面到其应用的历程。