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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >High Performance Biobased Epoxy Nanocomposite Reinforced with a Bacterial Cellulose Nanofiber Network
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High Performance Biobased Epoxy Nanocomposite Reinforced with a Bacterial Cellulose Nanofiber Network

机译:用细菌纤维素纳米纤维网络加固高性能生物化环氧纳米复合材料

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This work describes the preparation and characterization of biobased fiber reinforced resins using bacterial cellulose (BC) as the matrix reinforcing phase and diglycidyl ether diphenolate ethyl ester (DGEDP-ethyl) as the biobased epoxy resin. BC mats were prepared by static cultivation of strain Gluconacetobacter xylinus ATCC 700178 in Hestrin-Schramm medium augmented with mannitol in sterile containers. After freeze-drying, the surface of the BC matrix fibers was modified to introduce trimethylsilyl moieties (BCTMS). Reinforced by BCTMS nanofiber networks were fabricated by impregnation of BCTMS matrixes with the resin mixture followed by hot-pressing and curing. Resulting DGEDP-ethyl/BCTMS composites with 5, 10, 20, and 30%-by-vol BCTMS network loading were formed. The BC network proved effective in reinforcing the epoxy resin matrix. The composite Young's modulus (E-T) increased from 1.22 +/- 0.41 GPA for the neat DGEDP-ethyl thermoset to 8.8 +/- 0.98 for the composite with 30%-by-vol BCTMS. Furthermore, the storage modulus (E') increased for DGEDP-ethyl/30%BCTMS relative to the neat DGEDP-ethyl resin below T-g (30 degrees C) by 3-fold (2.27 to 7.7 GPA) and above T-g (180 degrees C) by 100-fold. This work highlights the potential to use prefabricated BC matrixes produced by microbial fermentation along with a biobased epoxy resin to provide high-performance biobased composites.
机译:本作品描述了使用细菌纤维素(BC)作为基质增强相和二缩水甘油醚二酚酸乙酯(DiDgP-乙基)作为生物化环氧树脂的基质纤维素(BC)的制备和表征。通过在Hestrin-Schramm媒体中静态葡萄糖杆菌菌株静态培养来制备BC垫,在Hestrin-Schramm培养基中加入甘露醇在无菌容器中。在冷冻干燥后,改性BC基质纤维的表面以引入三甲基甲硅烷基部分(BCTM)。通过用树脂混合物浸渍BCTM基质,通过与树脂混合物浸渍,然后热压和固化来制造BCTM纳米恐怖网络的增强。形成具有5,10,20和30%-VOR BCTM网络载荷的二甲乙基/ BCTM组复合材料。 BC网络证明有效地加强环氧树脂基质。综合杨氏模量(E-T)从1.22 +/- 0.41GPa增加到纯的二甲乙基乙基热固性至8.8 +/- 0.98,用于30%-VOR BCTM的复合材料。此外,储存模量(e')对于二甲乙基/ 30%BCTM相对于Tg(30℃)下方的纯的二甲乙基树脂(2.27至7.7GPa)和高于Tg(180℃ )100倍。该工作突出了使用微生物发酵产生的预制BC矩阵以及生物化的环氧树脂,以提供高性能生物复合材料。

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