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The electrical conductivity and thermal electromotive force of lithium hydride and lithium deuteride at 20-50 GPa. / Babushkin, A. N.; Pilipenko, G. I.; Gavrilov, F. F.
в: Journal of Physics Condensed Matter, Том 5, № 46, 15.11.1993, стр. 8659-8664.

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Babushkin AN, Pilipenko GI, Gavrilov FF. The electrical conductivity and thermal electromotive force of lithium hydride and lithium deuteride at 20-50 GPa. Journal of Physics Condensed Matter. 1993 нояб. 15;5(46):8659-8664. doi: 10.1088/0953-8984/5/46/005

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Babushkin, A. N. ; Pilipenko, G. I. ; Gavrilov, F. F. / The electrical conductivity and thermal electromotive force of lithium hydride and lithium deuteride at 20-50 GPa. в: Journal of Physics Condensed Matter. 1993 ; Том 5, № 46. стр. 8659-8664.

BibTeX

@article{793957760a3a4fec95f15e8bb185e96c,
title = "The electrical conductivity and thermal electromotive force of lithium hydride and lithium deuteride at 20-50 GPa",
abstract = "It has been shown that insulating LiH and LiD transform gradually to a semiconducting state at about 30 GPa and room temperature. It was also found that these compounds undergo a semiconductor-to-semimetal transition at about 43 GPa. The observed phenomena can probably be explained by a first-order phase B1-to-B2 structure transition.",
author = "Babushkin, {A. N.} and Pilipenko, {G. I.} and Gavrilov, {F. F.}",
year = "1993",
month = nov,
day = "15",
doi = "10.1088/0953-8984/5/46/005",
language = "English",
volume = "5",
pages = "8659--8664",
journal = "Journal of Physics Condensed Matter",
issn = "0953-8984",
publisher = "Institute of Physics Publishing (IOP)",
number = "46",

}

RIS

TY - JOUR

T1 - The electrical conductivity and thermal electromotive force of lithium hydride and lithium deuteride at 20-50 GPa

AU - Babushkin, A. N.

AU - Pilipenko, G. I.

AU - Gavrilov, F. F.

PY - 1993/11/15

Y1 - 1993/11/15

N2 - It has been shown that insulating LiH and LiD transform gradually to a semiconducting state at about 30 GPa and room temperature. It was also found that these compounds undergo a semiconductor-to-semimetal transition at about 43 GPa. The observed phenomena can probably be explained by a first-order phase B1-to-B2 structure transition.

AB - It has been shown that insulating LiH and LiD transform gradually to a semiconducting state at about 30 GPa and room temperature. It was also found that these compounds undergo a semiconductor-to-semimetal transition at about 43 GPa. The observed phenomena can probably be explained by a first-order phase B1-to-B2 structure transition.

UR - http://www.scopus.com/inward/record.url?partnerID=8YFLogxK&scp=0000154483

U2 - 10.1088/0953-8984/5/46/005

DO - 10.1088/0953-8984/5/46/005

M3 - Article

VL - 5

SP - 8659

EP - 8664

JO - Journal of Physics Condensed Matter

JF - Journal of Physics Condensed Matter

SN - 0953-8984

IS - 46

ER -

ID: 55803845