Published December 15, 1970 | Version v1
Journal article

Electrical properties of hydrides and deuterides of zirconium

  • 1. Atomics International, Canoga Park, Calif. (USA)

Description

Electrical properties of hydrides and deuterides of zirconium have been investigated between 1.1 and 410°K. The metallic nature of these materials is evident in the fact that for compositions approaching ZrH₂, the hydride is a better conductor than is high-purity zirconium. Above ∼150°K the electrical resistivity exhibits an interesting upturn, which arises from scattering from the optical-model lattice vibrations. Excellent fits to the ideal-resistivity data are obtained with a simple additive combination of Gr\"uneisen and Howarth-Sondheimer functions for the respective acoustical- and optical-mode scattering contributions. The corresponding acoustical- and optical-mode characteristic temperatures are in good accord with expectations based on earlier inelastic neutron scattering data. Moreover, the optical-mode characteristic temperature exhibits the expected hydride-deuteride isotope shift of 2. The observed Hall coefficients are large in magnitude (much greater than for pure Zr), and indicate majority hole conduction for the fcc δ phase and majority electron conduction for the face-centered tetragonal ε phase. The thermoelectric power also changes from positive to negative with increasing hydrogen concentration in the range ZrH1.5-ZrH₂.

Additional details

Identifiers

Publishing Information

Journal Title
Physical Review B
Journal Volume
2
Journal Issue
12
Series
Phys. Rev., B.
Journal Page Range
4807-4813
ISSN
0556-2805

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
2009102
Subject category
S36: MATERIALS SCIENCE;
Resource subtype / Literary indicator
Progress Report
Descriptors DEI
ELECTRIC CONDUCTIVITY; ELECTRIC PROPERTIES; ELECTRONS; HALL EFFECT; HOLES; LOW TEMPERATURE; PHONONS; STOICHIOMETRY; TEMPERATURE; THERMOELECTRICITY; ZIRCONIUM HYDRIDES
Descriptors DEC
DEFECTS; ELECTRICITY; LATTICES; QUALITATIVE ANALYSIS

Optional Information

Notes
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