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Foldable hydrogen sensor using Pd nanocubes dispersed into multiwall carbon nanotubes-reduced graphene oxide network assembled on nylon filter membrane

机译:折叠式氢气传感器,使用分散在多壁碳纳米管中的Pd纳米立方体,还原的氧化石墨烯网络组装在尼龙滤膜上

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摘要

Multiwall carbon nanotubes (MWCNTs)-supported palladium (Pd) nanocubes (NCs) with the assistant assistance of reduced graphene oxide (RGO) were synthesized via a simple chemical method to fabricate a foldable hydrogen (H2) sensor. Pd NCs were synthesized by a two-step chemical route (seed-mediated growth). Highly uniform colloidal Pd NCs with an average size of 70 nm were simply decorated onto the MWCNTs-RGO network assembled on nylon filter membrane by filtration method. The resulting composite was consider as a novel H_2 sensing material, which showed a high response, a good selectivity as well as an excellent mechanical stability at room temperature. Furthermore, the fabricated sensor exhibited a broad detection range from 10-10,000ppm with a good linearity behavior. Moreover, the new H_2 sensor showed two-fold higher response than our previously reported Pd NPs-Gr hybrid.
机译:通过简单的化学方法合成了多壁碳纳米管(MWCNTs)-负载的钯(Pd)纳米立方体(NCs),并通过一种简单的化学方法合成了可折叠的氢气(H2)传感器。 Pd NCs是通过两步化学路线(种子介导的生长)合成的。通过过滤方法,将平均尺寸为70 nm的高度均匀的胶体Pd NCs装饰在组装在尼龙滤膜上的MWCNTs-RGO网络上。所得复合材料被认为是新型的H_2传感材料,它在室温下显示出高响应,良好的选择性以及极好的机械稳定性。此外,所制造的传感器表现出10-10,000ppm的宽检测范围,并具有良好的线性行为。此外,新的H_2传感器显示出比我们先前报道的Pd NPs-Gr杂交体高两倍的响应。

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