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聚电解质多层纳米涂层的快速自愈与超氧阻隔性能的恢复

Fast Self-Healing of Polyelectrolyte Multilayer Nanocoating and Restoration of Super Oxygen Barrier.

作者信息

Song Yixuan, Meyers Kevin P, Gerringer Joseph, Ramakrishnan Ramesh K, Humood Mohammad, Qin Shuang, Polycarpou Andreas A, Nazarenko Sergei, Grunlan Jaime C

机构信息

Department of Materials Science and Engineering, Texas A&M University, College Station, TX, 77843-3003, USA.

School of Polymers and High Performance Materials, University of Southern Mississippi, Hattiesburg, MS, 39406, USA.

出版信息

Macromol Rapid Commun. 2017 May;38(10). doi: 10.1002/marc.201700064. Epub 2017 Mar 27.

Abstract

A self-healable gas barrier nanocoating, which is fabricated by alternate deposition of polyethyleneimine (PEI) and polyacrylic acid (PAA) polyelectrolytes, is demonstrated in this study. This multilayer film, with high elastic modulus, high glass transition temperature, and small free volume, has been shown to be a super oxygen gas barrier. An 8-bilayer PEI/PAA multilayer assembly (≈700 nm thick) exhibits an oxygen transmission rate (OTR) undetectable to commercial instrumentation (<0.005 cc (m d atm )). The barrier property of PEI/PAA nanocoating is lost after a moderate amount of stretching due to its rigidity, which is then completely restored after high humidity exposure, therefore achieving a healing efficiency of 100%. The OTR of the multilayer nanocoating remains below the detection limit after ten stretching-healing cycles, which proves this healing process to be highly robust. The high oxygen barrier and self-healing behavior of this polymer multilayer nanocoating makes it ideal for packaging (food, electronics, and pharmaceutical) and gas separation applications.

摘要

本研究展示了一种通过交替沉积聚乙烯亚胺(PEI)和聚丙烯酸(PAA)聚电解质制备的可自愈气体阻隔纳米涂层。这种多层膜具有高弹性模量、高玻璃化转变温度和小自由体积,已被证明是一种超级氧气阻隔材料。一个8层的PEI/PAA多层组件(约700纳米厚)的氧气透过率(OTR)对于商业仪器来说是不可检测的(<0.005 cc/(m²·d·atm))。由于其刚性,PEI/PAA纳米涂层在适度拉伸后阻隔性能丧失,但在高湿度暴露后又能完全恢复,因此愈合效率达到100%。经过十次拉伸-愈合循环后,多层纳米涂层的OTR仍低于检测极限,这证明了这种愈合过程具有高度的稳健性。这种聚合物多层纳米涂层的高氧气阻隔性和自愈行为使其非常适合用于包装(食品、电子产品和药品)以及气体分离应用。

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