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Polymer-Infiltrated Nanoparticle Films Using Capillarity-Based Techniques: Toward Multifunctional Coatings and Membranes
Annual Review of Chemical and Biomolecular Engineering ( IF 8.4 ) Pub Date : 2021-06-07
R. Bharath Venkatesh, Neha Manohar, Yiwei Qiang, Haonan Wang, Hong Huy Tran, Baekmin Q. Kim, Anastasia Neuman, Tian Ren, Zahra Fakhraai, Robert A. Riggleman, Kathleen J. Stebe, Kevin Turner, Daeyeon Lee

Polymer-infiltrated nanoparticle films (PINFs) are a new class of nanocomposites that offer synergistic properties and functionality derived from unusually high fractions of nanomaterials. Recently, two versatile techniques,capillary rise infiltration (CaRI) and solvent-driven infiltration of polymer (SIP), have been introduced that exploit capillary forces in films of densely packed nanoparticles. In CaRI, a highly loaded PINF is produced by thermally induced wicking of polymer melt into the nanoparticle packing pores. In SIP, exposure of a polymer–nanoparticle bilayer to solvent vapor atmosphere induces capillary condensation of solvent in the pores of nanoparticle packing, leading to infiltration of polymer into the solvent-filled pores. CaRI/SIP PINFs show superior properties compared with polymer nanocomposite films made using traditional methods, including superb mechanical properties, thermal stability, heat transfer, and optical properties. This review discusses fundamental aspects of the infiltration process and highlights potential applications in separations, structural coatings, and polymer upcycling—a process to convert polymer wastes into useful chemicals.

中文翻译:


使用基于毛细作用的技术渗透聚合物的纳米粒子薄膜:迈向多功能涂层和膜

聚合物渗透纳米颗粒薄膜 (PINF) 是一类新型纳米复合材料,可提供源自异常高比例的纳米材料的协同特性和功能。最近,已经引入了两种通用技术,毛细管上升渗透 (CaRI) 和溶剂驱动的聚合物渗透 (SIP),它们利用密集纳米颗粒薄膜中的毛细管力。在 CaRI 中,高负载的 PINF 是通过聚合物熔体的热诱导芯吸作用到纳米颗粒填充孔中产生的。在 SIP 中,聚合物-纳米颗粒双层暴露于溶剂蒸气气氛中会引起纳米颗粒填料孔中溶剂的毛细冷凝,导致聚合物渗透到充满溶剂的孔中。与使用传统方法制造的聚合物纳米复合薄膜相比,CaRI/SIP PINF 显示出优异的性能,包括出色的机械性能、热稳定性、传热和光学性能。这篇综述讨论了渗透过程的基本方面,并强调了在分离、结构涂层和聚合物升级回收方面的潜在应用——一种将聚合物废物转化为有用化学品的过程。

更新日期:2021-06-08
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