2022
DOI: 10.1002/pssb.202100623
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High‐Pressure Studies of Correlated Electron Systems

Abstract: Tuning the electronic properties of transition‐metal and rare‐earth compounds by virtue of changes of the crystallographic lattice constants offers controlled access to new forms of order. The development of tungsten carbide (WC) and moissanite Bridgman cells conceived for studies of the electrical resistivity up to 10 GPa, as well as bespoke diamond anvil cells (DACs) developed for neutron depolarization studies up to 20 GPa is reviewed. For the DACs, the applied pressure changes as a function of temperature … Show more

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Cited by 1 publication
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“…The field of experimental and theoretical studies of materials with strongly correlated charge carriers [46][47][48][49]57,[59][60][61]74,[98][99][100][101][102][103][104][105][106][107][108][109][110][111][112][113][114][115][116], including diborides [44,[46][47][48][49]107,108], is experiencing a boom. In this work, we deduced the primary superconducting parameters of highly compressed diborides: the P6/mmm phases of MoB 2 and WB 2 and ambient pressure superconductors Nd 0.75 Mo 0.25 B 2 .…”
Section: Discussionmentioning
confidence: 99%
“…The field of experimental and theoretical studies of materials with strongly correlated charge carriers [46][47][48][49]57,[59][60][61]74,[98][99][100][101][102][103][104][105][106][107][108][109][110][111][112][113][114][115][116], including diborides [44,[46][47][48][49]107,108], is experiencing a boom. In this work, we deduced the primary superconducting parameters of highly compressed diborides: the P6/mmm phases of MoB 2 and WB 2 and ambient pressure superconductors Nd 0.75 Mo 0.25 B 2 .…”
Section: Discussionmentioning
confidence: 99%