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Magnetic Properties of Palladium and Palladium-Platinum Alloy of Various Hydrogen Content

机译:氢含量不同的钯及钯-铂合金的磁性

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摘要

Magnetic properties of palladium and palladium-platinum alloy (Pd-Pt) of different hydrogen content were measured in a hydrogen atmosphere at ambient temperature using a superconducting quantum interference device (SQUID) magnetometer. It was found that the magnetic susceptibility of Pd and Pd-Pt alloy decreased with increasing hydrogen content. These results were attributed to a change in the electronic structure of the valence band. Increasing hydrogen content in Pd and Pd-Pt alloy causes the Fermi level to rise and the density of states at Fermi level to decrease. Since the magnetic susceptibility is proportional to the density of states at the Fermi level, the magnetic susceptibility decreases with increasing hydrogen content. The magnetic susceptibility of Pd-Pt was smaller than that of Pd over the whole hydrogen content range. This was ascribed to the higher position of the Fermi level of Pd-Pt than that of Pd.
机译:使用超导量子干涉仪(SQUID)磁力计在环境温度下的氢气氛中测量氢含量不同的钯和钯-铂合金(Pd-Pt)的磁性能。发现随着氢含量的增加,Pd和Pd-Pt合金的磁化率降低。这些结果归因于价带电子结构的变化。 Pd和Pd-Pt合金中氢含量的增加会导致费米能级升高,而费米能级的态密度降低。由于磁化率与费米能级的态密度成正比,因此磁化率随氢含量的增加而降低。在整个氢含量范围内,Pd-Pt的磁化率小于Pd。这归因于Pd-Pt的费米能级比Pd的高。

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