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块状氧化石墨烯/聚丙烯酸/聚乙烯亚胺三元聚电解质复合物的力学性能。

Mechanical properties of bulk graphene oxide/poly(acrylic acid)/poly(ethylenimine) ternary polyelectrolyte complex.

机构信息

Department of Polymer Engineering, University of Akron, 250 S. Forge St, Akron, OH 44325, USA.

出版信息

Soft Matter. 2018 May 30;14(21):4396-4403. doi: 10.1039/c8sm00176f.

Abstract

Ternary complexes formed in a single pot process through the mixing of cationic (branched polyethylenimine, BPEI) and anionic (graphene oxide, GO, and poly(acrylic acid), PAA) aqueous solutions exhibit superior mechanical performance in comparison to their binary analogs. The composition of the ternary complex can be simply tuned through the composition of the anionic solution, which influences the water content and mechanical properties of the complex. Increasing the PAA content in the complex decreases the overall water content due to improved charge compensation with the BPEI, but this change also significantly improves the toughness of the complex. Ternary complexes containing ≤32 wt% PAA were too brittle to generate samples for tensile measurements, while extension in excess of 250% could be reached with 57 wt% PAA. From this work, the influence of GO and PAA on the mechanical properties of GO/PAA/BPEI complexes were elucidated with GO sheets acting to restrain the viscous flow and improve the mechanical strength at low loading (<12.6 wt%) and PAA more efficiently complexes with BPEI than GO to generate a less swollen and stronger network. This combination overcomes the brittle nature of GO-BPEI complexes and viscous creep of PAA-BPEI complexes. Ternary nanocomposite complexes appear to provide an effective route to toughen and strengthen bulk polyelectrolyte complexes.

摘要

通过将阳离子(支化聚乙烯亚胺,BPEI)和阴离子(氧化石墨烯,GO 和聚丙烯酸,PAA)水溶液混合在一个锅中形成的三元复合物与它们的二元类似物相比表现出优异的机械性能。三元复合物的组成可以通过阴离子溶液的组成来简单地调节,这影响了复合物的含水量和机械性能。由于与 BPEI 更好的电荷补偿,复合物中 PAA 含量的增加会降低整体含水量,但这种变化也显著提高了复合物的韧性。含≤32wt%PAA 的三元复合物太脆,无法生成用于拉伸测量的样品,而含 57wt%PAA 的复合物则可延伸超过 250%。从这项工作中,阐明了 GO 和 PAA 对 GO/PAA/BPEI 复合物力学性能的影响,GO 片层起到限制粘性流动和提高低负载(<12.6wt%)下机械强度的作用,而 PAA 比 GO 更有效地与 BPEI 络合,形成不易溶胀和更强的网络。这种组合克服了 GO-BPEI 复合物的脆性和 PAA-BPEI 复合物的粘性蠕变。三元纳米复合材料复合物似乎为增韧和增强大块聚电解质复合物提供了一条有效途径。

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