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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Tailored covalent grafting of hexafluoropropylene oxide oligomers onto silica nanoparticles: Toward thermally stable, hydrophobic, and oleophobic nanocomposites
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Tailored covalent grafting of hexafluoropropylene oxide oligomers onto silica nanoparticles: Toward thermally stable, hydrophobic, and oleophobic nanocomposites

机译:六氟环氧丙烷低聚物在二氧化硅纳米颗粒上的定制共价接枝:形成热稳定,疏水和疏油的纳米复合材料

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摘要

The modification of silica nanoparticles with hexafluoropropylene oxide (HFPO) oligomers has been investigated. HFPO oligomers with two different average degrees of polymerization (DPn = 8 and 15) were first prepared by anionic ring-opening polymerization, deactivated by methanol, and in some cases postfunctionalized by aminopropyl(tri)ethoxysilane or allylamine. The "grafting onto" reactions of these oligomers were then carried out either on bare silica (reaction between a silanol surface and ethoxy-silanized HFPO) or on silica functionalized by amino groups (in an amidation reaction with methyl ester-ended HFPO) or mercapto groups (via the radical addition of allyl-functionalized HFPO). Hybrid nanoparticles thus obtained were characterized by solid-state 29Si NMR and FTIR spectroscopies as well as elemental and thermogravimetric analyses. The results assessed a significant yield of covalent grafting of HFPO oligomers when performing the hydrolysis-condensation of ethoxylated HFPO on the bare silica surface, compared to the other two methods that merely led to physically adsorbed HFPO chains. Chemically grafted nanohybrids showed a high thermal stability (up to 400 °C) as well as a very low surface tension (typically 5 mN/m) compared to physisorbed complexes.
机译:已经研究了用六氟环氧丙烷(HFPO)低聚物对二氧化硅纳米颗粒进行的改性。具有两个不同的平均聚合度(DPn = 8和15)的HFPO低聚物首先通过阴离子开环聚合反应制备,并通过甲醇使其失活,并且在某些情况下通过氨基丙基(三)乙氧基硅烷或烯丙胺进行后官能化。然后,这些低聚物的“接枝”反应在裸露的二氧化硅上(硅烷醇表面和乙氧基硅烷化的HFPO之间的反应)或在氨基官能化的二氧化硅上(在与甲基酯封端的HFPO进行酰胺化反应中)或巯基上进行。基团(通过烯丙基官能化的HFPO的自由基加成)。由此获得的杂化纳米颗粒通过固态29Si NMR和FTIR光谱以及元素分析和热重分析进行表征。与仅导致物理吸附的HFPO链的其他两种方法相比,该结果评估了在裸露的二氧化硅表面上进行乙氧基化HFPO的水解缩合时,HFPO低聚物的共价接枝率显着提高。与物理吸附的复合物相比,化学接枝的纳米杂化物显示出高的热稳定性(高达400°C)以及非常低的表面张力(通常为5 mN / m)。

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