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含氟环聚磷腈颗粒稳定的液滴弹及其作为高效微型反应器的应用

Liquid Marbles Stabilized by Fluorine-Bearing Cyclomatrix Polyphosphazene Particles and Their Application as High-Efficiency Miniature Reactors.

作者信息

Wei Wei, Lu Rongjie, Ye Weitao, Sun Jianhua, Zhu Ye, Luo Jing, Liu Xiaoya

机构信息

The Key Laboratory of Food Colloids and Biotechnology, Ministry of Education, School of Chemical and Material Engineering, Jiangnan University , Wuxi, Jiangsu 214122, People's Republic of China.

出版信息

Langmuir. 2016 Feb 23;32(7):1707-15. doi: 10.1021/acs.langmuir.5b04697. Epub 2016 Feb 8.

Abstract

Increasing attention has been paid to fabricate multifunctional stabilizers of liquid marbles for expanding their application. Here, a kind of hydrophobic cyclomatrix polyphosphazene particles (PZAF) were facilely prepared using a one-step precipitation polycondensation of hexachlorocyclotriphosphazene and 4,4'-(hexafluoroisopropylidene)diphenol, and their ability to stabilize liquid marbles was first investigated. The Ag nanoparticle-decorated PZAF particles (Ag/PZAF) were then fabricated by an in situ reduction of silver nitrate onto PZAF particles and used to construct catalytic liquid marbles. The results revealed that the reduction of methylene blue (MB) in aqueous solution by sodium borohydride could be highly efficiently catalyzed in the catalytic liquid marbles, even with a large volume. An excellent cycle use performance of the catalytic liquid marbles without losing catalytic efficiency was also present. The high catalytic activity is mainly attributed to the uniform immobilization of Ag nanoparticles onto PZAF particles and the adsorption behavior of PZAF particles toward MB, which may play an effect on allowing high catalytic surface area and effective accelerating the mass transfer of MB to the Ag catalytic active sites, respectively. Therefore, the combination of Ag nanoparticles with PZAF particles has been demonstrated clearly to be a facile and effective strategy to obtain the functional stabilizer for preparing the catalytic liquid marbles as promising miniature reactors used in heterogeneous catalytic reactions.

摘要

为了拓展液滴弹的应用,人们对制备多功能液滴弹稳定剂给予了越来越多的关注。在此,通过六氯环三磷腈与4,4'-(六氟异丙基)二酚的一步沉淀缩聚反应,简便地制备了一种疏水性环聚磷腈颗粒(PZAF),并首次研究了其稳定液滴弹的能力。然后通过在PZAF颗粒上原位还原硝酸银制备了银纳米颗粒修饰的PZAF颗粒(Ag/PZAF),并用于构建催化液滴弹。结果表明,在催化液滴弹中,硼氢化钠对水溶液中亚甲基蓝(MB)的还原反应即使在大体积情况下也能高效催化。催化液滴弹还具有优异的循环使用性能,且不会损失催化效率。高催化活性主要归因于银纳米颗粒在PZAF颗粒上的均匀固定以及PZAF颗粒对MB的吸附行为,这可能分别对提供高催化表面积和有效加速MB向银催化活性位点的传质起到作用。因此,银纳米颗粒与PZAF颗粒的结合已被明确证明是一种简便有效的策略,可用于获得用于制备催化液滴弹的功能稳定剂,催化液滴弹有望作为微型反应器用于多相催化反应。

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