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Hydrogen absorption properties of carbon supported Pd-Ni nanoalloys

机译:碳载Pd-Ni纳米合金的吸氢性能

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Carbon supported Pd Ni nanoalloys with well controlled composition and particle size distribution were synthesized by incipient wetness impregnation method. The Pd-rich nanoalloys (10 and 20 Ni at.%) form a hydride phase at atmospheric pressure and ambient temperature whereas, no hydride formation is observed for higher Ni content (30 at%), as determined by Pressure-Composition-Isotherms and in situ X-ray diffraction. Significant thermodynamic changes for hydride forming Pd Ni nanoalloys are noticed as compared to pure Pd, in agreement with the bulk counterparts: the enthalpy of the hydride formation of Pd Ni nanoalloys decreases by increasing the Ni content. These thermodynamic changes are not related to downsizing of particles but rather to an alloying effect. The solely effects of particle downsizing are the sloping and the shortening of the plateau observed in the PCI curves. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:采用初期湿润浸渍法合成了碳负载的Pd Ni纳米合金,具有良好的组成和粒径分布。富钯的纳米合金(10和20 Ni at。%)在大气压和环境温度下形成氢化物相,但是,通过压力-组成-等温线和压力测定,对于较高的Ni含量(30 at%),没有观察到氢化物形成。原位X射线衍射。与大量Pd相比,与纯Pd相比,注意到形成氢化物的Pd Ni纳米合金的热力学变化显着:通过增加Ni含量,Pd Ni纳米合金的氢化物形成焓降低。这些热力学变化与颗粒的尺寸减小无关,而与合金化效果有关。颗粒尺寸减小的唯一影响是在PCI曲线中观察到的倾斜和平台期的缩短。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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