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Enhanced Stability and Amplified Signal Output of Single-Wall Carbon Nanotube-Based NH3-Sensitive Electrode after Dual Plasma Treatment

机译:双壁等离子体处理后基于单壁碳纳米管的NH3敏感电极的增强的稳定性和放大的信号输出

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摘要

Pristine nanomaterials are normally prepared using finely controlled fabrication processes. Because no imperfect nanostructure remains, they cannot be used directly as electrode substrates of functional devices. This is because perfectly organized nanostructures or nanomaterials commonly require posttreatment to generate intentionally, the kinds of desirable defects inside or on their surfaces that enable effective functionalization. Plasma treatment is an easier, simpler and more widely used way (relative to other methods) to modify a variety of nanomaterials, although plasma-functionalized nano surfaces commonly have a short lifetime. We present herein a dual plasma treatment (DPT) that significantly enhances the degree and lifetime of plasma-induced surface functional groups on single-walled carbon nanotubes (SWCNTs). The DPT process consists of two individually optimized oxygen–plasma treatments. The DPT-modified SWCNT functioned as a sensing material for ammonia gas for more than a month. It also provided more than three times the degree of functionality for amplified signal output than with a single-plasma-treated SWCNT electrode.
机译:原始的纳米材料通常使用精细控制的制造工艺来制备。因为没有不完美的纳米结构,所以它们不能直接用作功能器件的电极基板。这是因为完美组织的纳米结构或纳米材料通常需要后处理以有意地在其表面内或表面上产生可实现有效功能化的各种所需缺陷。等离子体处理是一种相对于其他方法而言更轻松,更简单,使用更广泛的方法,可以对多种纳米材料进行改性,尽管等离子体功能化的纳米表面通常使用寿命较短。我们在本文中提出了一种双重等离子体处理(DPT),可以显着提高等离子体诱导的单壁碳纳米管(SWCNTs)上的表面官能团的程度和寿命。 DPT工艺包括两个单独优化的氧等离子体处理。经DPT改性​​的SWCNT用作氨气的传感材料已超过一个月。与单等离子体处理的SWCNT电极相比,它还提供了放大信号输出功能程度的三倍以上。

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