Tuning the Pore Size in Ionic Nanoparticle Networks

Marie‐Alexandra Neouze Gauthey, Marco Litschauer, M. Puchberger, Martin Kronstein, H. Peterlik
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Abstract

Highly promising hybrid materials consisting of silica, titania, or zirconia nanoparticles linked with ionic liquid-like imidazolium units have been developed. The nanoparticle networks are prepared by click-chemistry-like process through a nucleophilic substitution reaction. The type of metal oxide nanoparticles appears to play a key role regarding the pore size of the hybrid material.
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离子纳米粒子网络中孔径的调节
由二氧化硅、二氧化钛或氧化锆纳米颗粒与离子液体状咪唑单元连接组成的极有前途的杂化材料已经开发出来。纳米粒子网络是通过亲核取代反应,通过类似点击化学的过程制备的。金属氧化物纳米颗粒的类型似乎对杂化材料的孔径起着关键作用。
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