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三聚氰胺网络作为一种显著增强新型碳纳米材料-二氧化硅气凝胶复合材料的机械、吸附和表面性能的解决方案。

Melamine Network as a Solution for Significant Enhancement of the Mechanical, Adsorptive, and Surface Properties in a Novel Carbon Nanomaterial-Silica Aerogel Composite.

作者信息

Fashandi Maryam, Rejeb Zeineb Ben, Naguib Hani E, Park Chul B

机构信息

Microcellular Plastics Manufacturing Laboratory, Department of Mechanical and Industrial Engineering, University of Toronto, Toronto, Ontario M5S 3G8, Canada.

Toronto Smart Materials & Structures, Department of Mechanical and Industrial Engineering, University of Toronto, Toronto, Ontario M5S 3G8, Canada.

出版信息

ACS Appl Mater Interfaces. 2024 Apr 29. doi: 10.1021/acsami.4c00415.

DOI:10.1021/acsami.4c00415
PMID:38684012
Abstract

Silica aerogels exhibit exceptional characteristics such as mesoporosity, light weight, high surface area, and pore volume. Nevertheless, their utilization in industrial settings remains constrained due to their brittleness, moisture sensitivity, and costly synthesis procedure. Several studies have proved that adding nanofillers, such as carbon nanotubes (CNT) or graphene nanoplatelets (GNP), can improve the mechanical strength of the aerogels. The incorporation of nanofillers is often accompanied by agglomeration and pore blockage, which, in turn, deteriorates the surface area, pore volume, and low density. Including flexible melamine foam (MF) as a scaffold for the silica aerogel and nanofiller composite can prevent the restacking of the nanofillers through π-π interaction, hence maintaining the incredible properties of aerogels and improving their mechanical properties. CNT, GNP, and the polymeric silica precursor, polyvinyltrimethoxysilane (PVTMS), were added to a MF, at varying concentrations, to fabricate the MF-aerogel nanocomposites. Surfactant and sonication were utilized to ensure a homogeneous dispersion of the nanofillers in the system. The presence of MF prevented the agglomeration of nanofillers, resulting in lower density and relatively higher surface properties ( up to 929 m·g and pore volume up to 4.34 cc·g). Moreover, the MF-supported samples could endure 80% strain without breakage and showed an outstanding compressive strength of up to ∼20 MPa. These aerogel nanocomposites also demonstrated an excellent volatile organic compound (∼2680 mg·g) and cationic dye adsorption (∼10 mg·g).

摘要

二氧化硅气凝胶具有介孔性、轻质、高比表面积和孔体积等优异特性。然而,由于其脆性、对湿度敏感以及合成过程成本高昂,它们在工业环境中的应用仍然受到限制。多项研究证明,添加纳米填料,如碳纳米管(CNT)或石墨烯纳米片(GNP),可以提高气凝胶的机械强度。纳米填料的加入往往伴随着团聚和孔堵塞,这反过来又会降低比表面积、孔体积和低密度。将柔性三聚氰胺泡沫(MF)用作二氧化硅气凝胶和纳米填料复合材料的支架,可以通过π-π相互作用防止纳米填料的重新堆积,从而保持气凝胶的优异性能并改善其机械性能。将CNT、GNP和聚合二氧化硅前驱体聚乙烯基三甲氧基硅烷(PVTMS)以不同浓度添加到MF中,以制备MF-气凝胶纳米复合材料。使用表面活性剂和超声处理来确保纳米填料在系统中均匀分散。MF的存在防止了纳米填料的团聚,导致密度降低和相对较高的表面性能(比表面积高达929 m²·g,孔体积高达4.34 cc·g)。此外,MF支撑的样品可以承受80%的应变而不破裂,并显示出高达约20 MPa的出色抗压强度。这些气凝胶纳米复合材料还表现出优异的挥发性有机化合物吸附性能(约2680 mg·g)和阳离子染料吸附性能(约10 mg·g)。

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