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Catalytically Activated Palladium@Platinum Nanowires for Accelerated Hydrogen Gas Detection

机译:催化活化钯@铂纳米线用于加速氢气检测

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Platinum (Pt)-modified palladium (Pd) nanowires (or Pd@Pt nanowires) are prepared with controlled Pt Coverage. These Pd@Pt nanowires are used as resistive gas sensors for the detection of hydrogen gas in air, and the influence of the Pt surface layer is assessed. Pd nanowires with dimensions of 40 nm (h) x 100 nm (w) x 50 mu m (l) are first prepared using lithographically patterned nanowire electrodeposition. A thin Pt surface layer is electrodeposited conformally onto a Pd nanowire at coverages, Opt, of 0.10-monolayer (ML), 1.0 ML, and 10 ML. X-ray photoelectron spectroscopy coupled with scanning electron microscopy and electrochemical measurements is consistent with a layer-by-layer deposition mode for Pt on the Pd nanowire surface. The resistance of a single Pd@Ptnanowire is measured during the exposure of these nanowires to pulses of hydrogen gas in air at concentrations ranging from 0.05 to 5.0 vol %. Both Pd nanowires and Pd@Pt nanowires show a prompt and reversible increase in resistance upon exposure to H-2 in air, caused by the conversion of Pd to more resistive PdHx. Relative to a pure Pd nanowire, the addition of 1.0 ML of Pt to the Pd surface alters the H2 detection properties of Pd@Pt nanowires in two ways. First, the amplitude of the relative resistance change, triangle R/R-0, measured at each H2 concentration is reduced at low temperatures (T= 294 and 303 K) and is unaffected at higher temperatures (T = 316, 344, and 376 K). Second, response and recovery rates are both faster at all temperatures in this range and for all H2 concentrations. For higher Opt = 10 ML, sensitivity to H2 is dramatically reduced. For lower theta(pt) = 0.1 ML, no significant influence on sensitivity or the speed of response/recovery is observed.
机译:铂(Pt)修饰的钯(Pd)纳米线(或Pd @ Pt纳米线)的制备具有受控的Pt覆盖率。这些Pd @ Pt纳米线被用作电阻气体传感器,用于检测空气中的氢气,并评估了Pt表面层的影响。首先使用光刻图案化的纳米线电沉积制备尺寸为40 nm(h)x 100 nm(w)x 50μm(l)的Pd纳米线。薄的Pt表面层以0.10单层(ML),1.0 ML和10 ML的覆盖率Opt保形地电沉积到Pd纳米线上。 X射线光电子能谱结合扫描电子显微镜和电化学测量与Pd纳米线表面上Pt的逐层沉积模式一致。在这些纳米线暴露于空气中浓度为0.05至5.0 vol%的氢气脉冲的过程中,测量了一条Pd @ Ptanonowire的电阻。 Pd纳米线和Pd @ Pt纳米线在暴露于空气中的H-2时均显示出迅速而可逆的电阻增加,这是由于Pd转化为更具电阻性的PdHx所致。相对于纯Pd纳米线,在Pd表面添加1.0 ML的Pt可以通过两种方式改变Pd @ Pt纳米线的H2检测性能。首先,在低温(T = 294和303 K)下,在每种H2浓度下测得的相对电阻变化幅度R / R-0的三角减小,而在高温下(T = 316、344和376)则不受影响。 K)。其次,在此范围内的所有温度下以及所有H2浓度下,响应速度和恢复速度都更快。对于更高的Opt = 10 ML,对H2的敏感性会大大降低。对于较低的theta(pt)= 0.1 ML,未观察到对灵敏度或响应/恢复速度的显着影响。

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