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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Green one-pot synthesis and processing of polyimide-silica hybrid materials
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Green one-pot synthesis and processing of polyimide-silica hybrid materials

机译:绿色一锅合成与聚酰亚胺二氧化硅杂交材料的加工

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摘要

Inorganic-organic hybrid materials allow for combining features typical of the inorganic component with those of the organic component in one material. Generally, the preparation of organic and inorganic compounds requires considerably different synthesis conditions. Hence, the development of one-pot routes to inorganicorganic hybrid materials is challenging. We herein report a fully green one-pot synthesis of polyimide/silica (PI/SiO2) hybrids. Specifically, we co-condense both components hydrothermally, using nothing but the respective precursors and water. Furthermore, we show that the PI and the SiO2 component can be covalently connected under hydrothermal conditions, using the compatibilizer (3-aminopropyl)triethoxysilane. We thoroughly investigate the effect of different reaction conditions, including temperature, pH, precursor concentration and reaction time on the morphology and crystallinity of the final materials. The polyimide component, poly(hexamethylene pyromellitimide) was chosen for its thermoplasticity, which allows for processing both the PI and the PI/SiO2 via sintering. For being a solvent-free method, sintering qualifies as a green processing technique. This work is the first report of the simultaneous hydrothermal condensation of an inorganic and an organic material.
机译:无机 - 有机杂化材料允许将无机组分的特征与一种材料中的有机组分的特征相结合。通常,有机和无机化合物的制备需要相当大的合成条件。因此,对无机组织混合材料的单罐途径的发展是具有挑战性的。我们在此报告了全绿色的聚酰亚胺/二氧化硅(PI / SiO 2)杂种的合成。具体而言,我们使用除相应的前体和水中,使用除了相应的前体和水中时,我们将两种组分共凝集。此外,我们表明使用增容剂(3-氨基丙基)三乙氧基硅烷可以在水热条件下共价连接PI和SiO 2组分。我们彻底研究了不同反应条件的影响,包括温度,pH,前体浓度和反应时间对最终材料的形态和结晶度。选择聚酰亚胺组分,聚酰亚胺(六亚甲基吡甲酰胺)用于其热塑性,其允许通过烧结加工PI和PI / SiO 2。对于一种无溶剂方法,烧结有资格作为绿色加工技术。这项工作是第一报告无机和有机材料的同时水热凝聚。

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