论文标题

化学蒸气沉积石墨烯-PMMA纳米胺的柔性气体屏障

Chemical Vapour Deposition Graphene-PMMA Nanolaminates for Flexible Gas Barrier

论文作者

Baldanza, Antonio, Carbone, Maria Giovanna Pastore, Brondi, Cosimo, Manikas, Anastasios C., Mensitieri, Giuseppe, Pavlou, Christos, Scherillo, Giuseppe, Galiotis, Costas

论文摘要

完全利用石墨烯和相关材料的出色结构和多功能性能的成功方法具有极大的科学和技术兴趣。通过纳米氨酸酯建筑的新型纳米复合材料的制造提供了新的机会。在这项工作中,通过使用迭代提升/浮动过程与湿沉积结合使用,我们将通过化学蒸气沉积产生的CM大小的石墨烯单层掺入到聚(甲基甲基丙烯酸甲酯)(PMMA)基质中,并与受控的,交替的,备用的层层结构。产生的纳米氨酸盐在机械性能方面具有显着改善,具有增强的刚度,强度和韧性,仅添加了0.06 vol%的石墨烯。此外,与整齐的PMMA相比,在不同的相对湿度水平下进行的氧气和二氧化碳通透性测量值表明,添加石墨烯会导致渗透率显着降低。总体而言,我们证明了产生的石墨烯-PMMA纳米氨基氨酸酯的超过气体屏障性能,这是传统的不连续的石墨烯粒子复合材料,具有相似的填充含量。此外,我们发现,通过纳米复合材料的气体渗透性与相对湿度的函数不同,而在纯PMMA纳米氨基酸酯的情况下,这是显而易见的。这项工作表明,可能使用化学蒸气沉积石墨烯 - 聚合物纳米胺作为柔性气势屏障,从而扩大了这种新型材料的应用。

Successful ways of fully exploiting the excellent structural and multifunctional performance of graphene and related materials are of great scientific and technological interest. New opportunities are provided by the fabrication of a novel class of nanocomposites with a nanolaminate architecture. In this work, by using the iterative lift-off/float-on process combined with wet depositions, we incorporated cm-size graphene monolayers produced via Chemical Vapour Deposition into a poly (methyl methacrylate) (PMMA) matrix with a controlled, alternate-layered structure. The produced nanolaminate shows a significant improvement in mechanical properties, with enhanced stiffness, strength and toughness, with the addition of only 0.06 vol% of graphene. Furthermore, oxygen and carbon dioxide permeability measurements performed at different relative humidity levels, reveal that the addition of graphene leads to significant reduction of permeability, compared to neat PMMA. Overall, we demonstrate that the produced graphene-PMMA nanolaminate surpasses, in terms of gas barrier properties, the traditional discontinuous graphene-particle composites with a similar filler content. Moreover, we found that the gas permeability through the nanocomposites departs from a monotonic decrease as a function of relative humidity, which is instead evident in the case of the pure PMMA nanolaminate. This work suggests the possible use of Chemical Vapour Deposition graphene-polymer nanolaminates as a flexible gas barrier, thus enlarging the spectrum of applications for this novel material.

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