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Improvement of curing reaction activity of one-component room temperature-curable epoxy adhesive by the addition of functionalized graphene oxide

机译:通过加入官能化石墨烯氧化物改善单组分室温可固化环氧粘合剂的固化反应活性

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摘要

Functionalized graphene oxide (GO) nanocomposites including GO-Fe and GO-Fe-P were prepared and used as a curing additive for a one-component room temperature-curable epoxy adhesive (OCRTCEA). The results showed that the functionalized GO nanocomposites were conducive to accelerating the curing reaction of OCRTCEA with a moisture-activated ketimine as a latent curing agent, and when OCRTCEA containing 1 wt% GO-Fe-P was exposed to air at room temperature for 24 h, its lap shear strength reached 11.2 MPa, which was 144% higher than that of pure OCRTCEA under the same test conditions. Furthermore, the storage stability of OCRTCEA containing 1 wt% GO-Fe-P was similar with that of pure OCRTCEA over 60 days of storage. The enhanced curing reaction activity of OCRTCEA might be due to the role of curing accelerator of GO nanocomposites, the enhanced polarity of OCRTCEA because of the addition of GO nanocomposites, and the special morphology of GO nanocomposites.
机译:制备包括GO-Fe和Go-Fe-P的官能化的石墨烯氧化物(GO)纳米复合材料,并用作单组分室温可固化环氧粘合剂(OCRTCEA)的固化添加剂。 结果表明,官能化的去纳米复合材料有利于将OCRTCEA与水分活化的酮胺作为潜水固化剂的固化反应加速,并且当含有1wt%Go-Fe-P的OCRTCEA在室温下暴露于空气时24 H,其腿部剪切强度达到11.2MPa,在相同的试验条件下比纯OCRTCEA高144%。 此外,含有1wt%Go-Fe-p的OCRTCEA的储存稳定性与储存60天超过纯OCRTCEA的储存稳定性。 OCRTCEA的增强的固化反应活性可能是由于纳米复合材料的固化促进剂的作用,由于添加了GO纳米复合材料,以及GO纳米复合材料的特殊形态,OCRTCEA的增强极性。

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