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首页> 外文期刊>Angewandte Chemie >Transparent, Ultrahigh-Gas-Barrier Films with a Brick-Mortar-Sand Structure
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Transparent, Ultrahigh-Gas-Barrier Films with a Brick-Mortar-Sand Structure

机译:具有砖砂砂结构的透明超高气体阻隔薄膜

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摘要

Transparent and flexible gas-barrier materials have shown broad applications in electronics, food, and pharmaceutical preservation. Herein, we report ultrahigh-gas-barrier films with a brick-mortar-sand structure fabricated by layer-by-layer (LBL) assembly of XAl-layered double hydroxide (LDH, X=Mg, Ni, Zn, Co) nanoplatelets and polyacrylic acid (PAA) followed by CO2 infilling, denoted as (XAl-LDH/PAA)(n)-CO2. The near-perfectly parallel orientation of the LDH brick creates a long diffusion length to hinder the transmission of gas molecules in the PAA mortar. Most significantly, both the experimental studies and theoretical simulations reveal that the chemically adsorbed CO2 acts like sand to fill the free volume at the organic-inorganic interface, which further depresses the diffusion of permeating gas. The strategy presented here provides a new insight into the perception of barrier mechanism, and the (XAl-LDH/PAA)(n)-CO2 film is among the best gas barrier films ever reported.
机译:透明和柔性的阻气材料已在电子,食品和药品保存中显示出广泛的应用。本文中,我们报道了通过XAl层状双氢氧化物(LDH,X = Mg,Ni,Zn,Co)纳米片的逐层(LBL)组装制造的具有砖砂结构的超高阻气膜,以及聚丙烯酸(PAA),然后填充CO2,表示为(XAl-LDH / PAA)(n)-CO2。 LDH砖的近乎完全平行的定向会产生较长的扩散长度,从而阻碍气体分子在PAA砂浆中的传输。最重要的是,实验研究和理论模拟均表明,化学吸附的二氧化碳像沙子一样填充有机-无机界面的自由体积,从而进一步抑制了渗透气体的扩散。本文介绍的策略提供了对阻隔机理的新见解,并且(XAl-LDH / PAA)(n)-CO2膜是有史以来最好的阻气膜之一。

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