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Fabrication and characterisation of protein fibril-elastomer composites.

机译:蛋白质原纤维-弹性体复合材料的制备和表征。

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Protein fibrils are emerging as a novel class of functional bionanomaterials. In this paper we make use of their rigidity by combining lysozyme fibrils with a silicone elastomer and demonstrating that at a filling ratio of 10%, the protein fibril composite is at minimum 2 times stiffer than a CNT elastomeric composite of the same filling ratio. We also show that when the elastomer is patterned such that the lysozyme fibrils can be spatially modulated within the elastomer, anisotropic moduli varying by a factor of 2 is produced. By using shear mixing as the fabrication process, the modulus of a 2 wt.% insulin fibril composite is equivalent to a CNT composite with the same filling ratio. In conclusion, we have presented the fabrication and mechanical characterisation of a class of elastomer/protein fibril composite material.
机译:蛋白质原纤维正在作为一类新型的功能性生物纳米材料出现。在本文中,我们通过将溶菌酶原纤维与有机硅弹性体结合使用它们的刚度,并证明了在10%的填充率下,蛋白质原纤维复合材料的硬度至少比相同填充比的CNT弹性复合材料硬2倍。我们还表明,当对弹性体进行构图以使溶菌酶原纤维可以在弹性体中进行空间调节时,会产生各向异性模量,其变化系数为2。通过使用剪切混合作为制造过程,2 wt。%的胰岛素原纤维复合材料的模量等于具有相同填充比的CNT复合材料。总之,我们介绍了一类弹性体/蛋白质原纤维复合材料的制备和力学性能。

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