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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >A Potential Novel Rapid Screening NMR Approach to Boundary Film Formation at Solid Interfaces in Contact with Ionic Liquids
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A Potential Novel Rapid Screening NMR Approach to Boundary Film Formation at Solid Interfaces in Contact with Ionic Liquids

机译:一种潜在的新型快速筛选NMR方法,可在与离子液体接触的固体界面形成边界膜

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摘要

The boundary films generated on a series of inorganic compounds,typical of native films on metal and ceramic surfaces,when exposed to various ionic liquids(ILs)based on the trihexyl(tetradecyl)phosphonium cation have been characterized using multinuclear solid-state NMR.The NMR results indicate that SiO2 and Mg(OH)2 interact strongly with the anion and cation of each IL through a mechanism of adsorption of the anion and subsequent close proximity of the cation in a surface double layer(as observed through ~1H-~(29)Si cross polarization experiments).In contrast,Al2O3,MgO,ZnO,and ZrO2 appear less active,strongly suggesting the necessity of hydroxylated surface groups in order to enhance the generation of these interfacial films.Using solid-state NMR to characterize such interfaces not only has the potential to elucidate mechanisms of wear resistance and corrosion protection via ILs,but is also likely to allow their rapid screening for such durability applications.
机译:使用多核固态NMR表征了在一系列无机化合物(通常是金属和陶瓷表面上的天然膜)上产生的边界膜,当暴露于基于三己基(十四烷基)phosph阳离子的各种离子液体(IL)时。 NMR结果表明,SiO2和Mg(OH)2通过阴离子的吸附以及随后阳离子在表面双层中的紧密接近机制与每个IL的阴离子和阳离子强烈相互作用(通过〜1H-〜( 29)Si交叉极化实验)。相比之下,Al2O3,MgO,ZnO和ZrO2的活性较低,强烈暗示需要羟基化表面基团以增强这些界面膜的生成。使用固态NMR表征界面不仅具有阐明通过IL的耐磨性和腐蚀保护机制的潜力,而且还可能允许对其快速筛选以用于此类耐久性应用。

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