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首页> 外文期刊>ACS nano >High-Resolution, Fast, and Shape-Conformable Hydrogen Sensor Platform: Polymer Nanofiber Yarn Coupled with Nanograined Pd@Pt
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High-Resolution, Fast, and Shape-Conformable Hydrogen Sensor Platform: Polymer Nanofiber Yarn Coupled with Nanograined Pd@Pt

机译:高分辨率,快速,形状适得的氢气传感器平台:聚合物纳米纤维纱与纳米注载PD @ PT

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摘要

We report a flexible hydrogen sensing platform based on a single-strand yarn consisting of high-density electrospun nanofibers, on which nanograined Pd or Pd@Pt is coated via yarn spinning followed by sputter deposition. In general, Pd undergoes a phase transition to PdHx (alpha-PdHx at [H-2] < 1% and beta-PdHx at [H-2] > 2%), in which H atoms act as electron scattering centers, thus increasing the resistance. In our system, the sensors exhibit switchable H-2 sensing behaviors, that is, (i) Delta R/R-0 > 0 at [H-2] > 1% by the active electron scattering and (ii) Delta R/R-0 < 0 at [H-2] < 1% derived from nanograined Pd effects. Due to high mechanical stability stemming from nanogranular morphologies of Pd, which is essential for enduring a huge volume expansion upon exposure to high-concentration H-2, we could obtain a wide concentration range (4-0.0001%) H-2 detection resolution. Moreover, an ultrathin Pt overlayer coated on Pd offers an accelerated H-2 detection capability based on effective gas dissociation and activation properties. Furthermore, by virtue of the core (thread)-shell (nanofiber yarn) scaffold, long cycling reliability and flexibility were achieved. This facile and low-cost yarn fabrication method offers the development of single-strand thread-type wearable chemiresistors that possess a high surface area and open porosity, facilitating gas diffusion and reaction.
机译:我们报告基于由高密度电纺纳米纤维组成的单链纱线的柔性氢传感平台,其中纳米甲醚Pd或Pd @ Pt通过纱线纺丝涂覆,然后溅射沉积。通常,Pd经历对PDHX的相转变(在[H-2]> 2%的[H-2] <1%的α-PDHX和β-PDHX,其中H原子用作电子散射中心,从而增加阻力。在我们的系统中,传感器表现出可切换的H-2感测行为,即(i)通过主动电子散射和(ii)delta r / r的[H-2]> 1%的ΔR/ r-0> 0 -0 <0在[H-2]衍生自纳米甲基PD效应的<1%。由于Pd的纳米形形态源于高机械稳定性,这对于在暴露于高浓度H-2时持久的巨大膨胀至关重要,我们可以获得宽浓度范围(4-0.0001%)H-2检测分辨率。此外,涂覆在PD上的超薄PT覆盖器基于有效的气体解离和活化性能提供加速的H-2检测能力。此外,凭借芯(螺纹) - 壳(纳米纤维纱线)支架,实现了长循环可靠性和柔韧性。这种容易和低成本的纱线制造方法提供了具有高表面积和开放孔隙率的单链螺纹型可穿戴体系的开发,促进气体扩散和反应。

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