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首页> 外文期刊>Journal of Applied Physics >Temperature, pressure, and size dependence pf Pd-H interaction in size selected Pd-Ag and Pd-Cu alloy nanoparticles: In-situ X-ray diffraction studies
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Temperature, pressure, and size dependence pf Pd-H interaction in size selected Pd-Ag and Pd-Cu alloy nanoparticles: In-situ X-ray diffraction studies

机译:尺寸选定的Pd-Ag和Pd-Cu合金纳米粒子中的温度,压力和尺寸依赖性pf Pd-H相互作用:原位X射线衍射研究

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摘要

In this study, in-situ X-ray diffraction has been carried out to investigate the effect of temperature and pressure on hydrogen induced lattice parameter variation in size selected Pd-Ag and Pd-Cu alloy nanoparticles. The nanoparticles of three different mobility equivalent diameters (20, 40, and 60 nm) having a narrow size distribution were prepared by gas phase synthesis method. In the present range of temperature (350 K to 250 K) and pressure (10~(-4) to 100 millibars), no α (H/Pd ≤ 0.03) ↔β(H/Pd ≥ 0.54) phase transition is observed. At temperature higher than 300 ℃ or pressure lower than 25 millibars, there is a large difference in the rate at which lattice constant varies as a function of pressure and temperature. Further, the lattice variation with temperature and pressure is also observed to depend upon the nanoparticle size. At lower temperature or higher pressure, size of the nanoparticle seems to be relatively less important. These results are explained on the basis of the relative dominance of physical absorption and diffusion of H in Pd alloy nanoparticles at different temperature and pressure. In the present study, absence of α ↔ β phase transition points towards the advantage of using Pd-alloy nanoparticles in applications requiring long term and repeated hydrogen cycling.
机译:在这项研究中,已进行了原位X射线衍射研究温度和压力对氢致晶格参数变化的影响,这些参数变化是所选Pd-Ag和Pd-Cu合金纳米粒子的尺寸。通过气相合成法制备具有窄尺寸分布的三种不同迁移率当量直径(20、40和60nm)的纳米颗粒。在目前的温度范围(350 K至250 K)和压力范围(10〜(-4)至100毫巴)中,未观察到α(H / Pd≤0.03)↔β(H / Pd≥0.54)相变。在高于300℃的温度或低于25毫巴的压力下,晶格常数随压力和温度变化的速率存在很大差异。此外,还观察到随温度和压力的晶格变化取决于纳米颗粒尺寸。在较低温度或较高压力下,纳米颗粒的尺寸似乎相对不太重要。这些结果是基于在不同温度和压力下H在Pd合金纳米粒子中物理吸收和扩散的相对优势来解释的。在本研究中,不存在α↔β相变指向在需要长期重复氢循环的应用中使用Pd合金纳米颗粒的优势。

著录项

  • 来源
    《Journal of Applied Physics》 |2014年第11期|114308.1-114308.7|共7页
  • 作者单位

    Thin Film Laboratory, Department of Physics, Indian Institute of Technology Delhi, New Delhi 110016, India;

    Thin Film Laboratory, Department of Physics, Indian Institute of Technology Delhi, New Delhi 110016, India;

    Inter University Accelerator Centre, Aruna Asaf Ali Marg, New Delhi 110067, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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