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Hydrogen isotope effects in Ti1.0Mn0.9V1.1 and Ti1.0Cr1.5V1.7 alloys

机译:Ti1.0Mn0.9V1.1和Ti1.0Cr1.5V1.7合金中的氢同位素效应

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摘要

The hydrogen isotope effects in Ti1.0Mn0.9V1.1 and Ti1.0Cr1.5V1.7 alloys have been investigated at 313 and 353 K and at 313 and 338 K, respectively, using protium and deuterium. The crystal structures including the phase abundance and the lattice parameters were determined by the Rietveld method. Using SEM and EDX, the morphology was examined and an elemental analysis was carried out. In both alloys and regardless of temperature, the amounts of deuterium absorption were larger than those of protium. The hydrogen isotope effects of Ti1.0Mn0.9V1.1 and Ti1.0Cr1.5V1.7 were fairly large in comparison with that of LaNi5. The protide of the Ti1.0Mn0.9V1.1 alloy was more stable than the corresponding deuteride. although at 313 K the equilibrium pressures of deuterium and protium showed slightly opposite behaviour. In the Ti1.0Cr1.5V1.7 alloy, the deuteride was always more stable than the corresponding protide in the experimental temperature range. The Ti1.0Cr1.5V1.7 alloy absorbed more deuterium and protium than the Ti1.0Mn0.9V1.1 alloy. (C) 2000 Elsevier Science S.A. All rights reserved. [References: 12]
机译:使用1.0和氘,分别在313和353 K以及313和338 K下研究了Ti1.0Mn0.9V1.1和Ti1.0Cr1.5V1.7合金中的氢同位素效应。通过Rietveld方法确定包括相丰度和晶格参数的晶体结构。使用SEM和EDX,检查形态并进行元素分析。在两种合金中,无论温度如何,氘的吸收量都比pro的吸收量大。与LaNi5相比,Ti1.0Mn0.9V1.1和Ti1.0Cr1.5V1.7的氢同位素效应相当大。 Ti1.0Mn0.9V1.1合金的蛋白质比相应的氘化物更稳定。尽管在313 K下,氘和pro的平衡压力表现出略微相反的行为。在Ti1.0Cr1.5V1.7合金中,氘化物在实验温度范围内始终比相应的蛋白质更稳定。 Ti1.0Cr1.5V1.7合金比Ti1.0Mn0.9V1.1合金吸收更多的氘和pro。 (C)2000 Elsevier Science S.A.保留所有权利。 [参考:12]

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