Yang Fan, Taggart David K, Penner Reginald M
Department of Chemistry, University of California, Irvine, California 92697-2025, USA.
Nano Lett. 2009 May;9(5):2177-82. doi: 10.1021/nl9008474.
Two types of pure palladium (Pd) nanowires, differentiated by microstructure, were electrodeposited: (1) nanocrystalline Pd nanowires (grain diameter approximately 5 nm, henceforth nc5-Pd) and (2) nanocrystalline Pd nanowires with a grain diameter of 15 nm (nc15-Pd). These nanowires were evaluated for the detection of hydrogen gas (H(2)). Despite their fundamental similarities, the behavior of these nanowires upon exposure to H(2) was dramatically and reproducibly different: nc5-Pd nanowires spontaneously fractured upon exposure to H(2) above 1-2%. Fractured nanowires continued to function as sensors for H(2) concentrations above 2%, actuated by the volume change associated with the alpha to beta phase transition of PdH(x). nc15-Pd nanowires, in contrast, withstood repeated exposures to H(2) up to 10% without fracturing. nc15-Pd nanowires showed a rapid (2 s at 10%) increase in resistance in the presence of H(2) and a response that scaled smoothly with [H(2)] spanning 5 orders of magnitude down to 2 ppm.
通过电沉积制备了两种微观结构不同的纯钯(Pd)纳米线:(1)纳米晶钯纳米线(晶粒直径约5nm,以下简称nc5-Pd)和(2)晶粒直径为15nm的纳米晶钯纳米线(nc15-Pd)。对这些纳米线进行了氢气(H₂)检测评估。尽管它们在本质上有相似之处,但这些纳米线在暴露于H₂时的行为却有显著且可重复的差异:nc5-Pd纳米线在暴露于高于1%-2%的H₂时会自发断裂。断裂后的纳米线在H₂浓度高于2%时仍可继续作为传感器工作,这是由与PdHₓ的α相到β相转变相关的体积变化驱动的。相比之下,nc15-Pd纳米线在反复暴露于高达10%的H₂时不会断裂。nc15-Pd纳米线在有H₂存在时电阻迅速增加(在10%时为2秒),并且响应与[H₂]在5个数量级范围内平滑缩放,低至2ppm。