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Bio-based carbonaceous composite materials from epoxidised linseed oil, bio-derived curing agent and starch with controllable functionality

机译:由环氧化亚麻籽油,生物衍生的固化剂和功能可控的淀粉制成的生物基含碳复合材料

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摘要

Development of biomass-derived materials using sustainable practices has been one of the major scientific aims over the last few decades. A new class of bio-derived nanocomposite derived from epoxidised linseed oil, a bio-derived crosslinker and a starch based carbonaceous mesoporous material (Starbon?) has been developed. The use of Starbons? technology enables the incorporation of carbonaceous materials with tuneable surface functionality (from hydrophilic to hydrophobic). The resulting composite demonstrated good thermal stability up to 300 °C, good low temperature modulus, flexibility and uniformity, as demonstrated by TGA, DMA and SEM studies, respectively. Furthermore, the thermoset composites' swelling behaviour in solvents with a high polar index through to non-polar ones was investigated, revealing initially that non polar solvents have a greater impact on swelling than polar solvents and that in all cases the addition of filler reduces the extent of swelling. The inclusion of this carbonaceous material with hierarchical pore structure and high BET surface area may further aid the use of such composites in membrane separation applications.
机译:在过去的几十年中,采用可持续实践开发生物质衍生材料一直是主要的科学目标之一。已经开发了一种新型的由环氧化亚麻籽油衍生的生物衍生的纳米复合材料,一种生物衍生的交联剂和一种基于淀粉的碳质介孔材料(Starbon?)。使用Starbons?这项技术可以使碳纤维材料具有可调节的表面功能(从亲水性到疏水性)。分别通过TGA,DMA和SEM研究证明,所得复合材料在高达300°C的温度下具有良好的热稳定性,良好的低温模量,柔韧性和均匀性。此外,研究了热固性复合材料在高极性至非极性溶剂中的溶胀行为,最初发现非极性溶剂对溶胀的影响大于极性溶剂,并且在所有情况下,填料的添加都会降低肿胀程度。包含具有分级孔结构和高BET表面积的碳质材料可进一步帮助此类复合材料在膜分离应用中使用。

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