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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Robust, amphiphobic and super-buoyant CNT foams promising for self-floating functional platforms
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Robust, amphiphobic and super-buoyant CNT foams promising for self-floating functional platforms

机译:坚固,两栖动物和超强的CNT泡沫对自浮功能平台有前途

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摘要

Light-weight materials have been holding great potentials and practical usages in floating functional platforms, while it remains in great needs in developing novel ultra-light foam materials towards future applications. Herein, we demonstrated the fabrication and self-floating application of an ultra-lightweight, robust and amphiphobic carbon nanotube (CNT) foams. The foams were prepared by a facile, fast and scalable CVD process, where alcohol vapor was used as carbon source at 1100 degrees C to weld the CNTs together in the original CNT aerogels and the reaction time was greatly reduced from hours to 30 min, several times faster than reported results. The compressive strength of foams was remarkably enhanced by 250 times and the contact angle to water increase from similar to 100 degrees to 132 degrees. Further vapor modification by 1H, 1H, 2H, 2H-perfluorodecyltrichlorosilane (FDTS) enabled the foams both superhydrophobic (162 degrees to water) and oleophobic (138 degrees to oil), which also show excellent long-term stability in strong acid and alkaline solutions. Most importantly, such robust and amphiphobic CNT foams exhibited superb self-floating performance in water and oil, which could bear more than 300 times its own weight, nearly 10 times higher than conventional polymer-based buoyant materials, such as EVA, PVC, PU, providing great promise for marine applications. (C) 2020 Elsevier Ltd. All rights reserved.
机译:轻量级材料在浮动功能平台上持有巨大的潜力和实用用途,而在为未来应用中开发新型超轻泡沫材料方面仍然存在巨大需求。在此,我们证明了超轻型,鲁棒和两亲碳纳米管(CNT)泡沫的制造和自浮动施加。通过容易,快速和可伸缩的CVD工艺制备泡沫,其中醇蒸汽用作1100℃的碳源,以在原始的CNT气凝胶中焊接CNT,并且反应时间从小时到30分钟大大降低了几个比报告结果快。泡沫的抗压强度显着增强了250倍,接触角与水增加到100度至132度。通过1H,1H,2H,2H-全氟二氯硅烷(FDT)的进一步气相改性使得超疏水(162度至水)和疏油(138度至油)的泡沫,这也表现出强酸和碱性溶液的优异的长期稳定性。最重要的是,这种稳健和两栖动物CNT泡沫在水和油中表现出极好的自漂浮性能,这可能具有超过其自身重量的300倍,比常规聚合物的浮力材料高近10倍,例如EVA,PVC,PU为海洋应用提供了很大的承诺。 (c)2020 elestvier有限公司保留所有权利。

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