The superconductivity of Li-intercalated beta-HfNCl in the light of the HTSC cuprates
Author:
Publisher
IOP Publishing
Subject
Materials Chemistry,Electrical and Electronic Engineering,Metals and Alloys,Condensed Matter Physics,Ceramics and Composites
Reference46 articles.
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3. TiOCl, TiOBr-are these RVB d1, S=1/2 materials? The results of scandium substitution set in the context of other S=1/2 systems of current interest for high-temperature superconductivity and the metal-insulator transition
4. Transport and Raman studies of the group IV layered compounds and their lithium intercalates: LixTiS2, LixTiSe2, LixZrS2, LixZrSe2, LixHfS2 and LixHfSe2
5. Superconductivity of alkali metal intercalated ZrSe2
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1. A perspective on the Fe-based superconductors;Journal of Physics: Condensed Matter;2010-04-26
2. Valence-band photoemission study ofβ−ZrNCland the quasi-two-dimensional superconductorNaxZrNCl;Physical Review B;2004-11-12
3. Bosonic mode interpretation of novel scanning tunnelling microscopy and related experimental results, within boson–fermion modelling of cuprate high-temperature superconductivity;Philosophical Magazine;2004-07-21
4. Developments in the negative-Umodelling of the cuprate HTSC systems;Journal of Physics: Condensed Matter;2001-11-30
5. Again `why layered, square-planar, mixed-valent cuprates alone?' - further pursuit of the `chemical' negative-Uroute to the HTSC mechanism;Journal of Physics: Condensed Matter;2000-10-09
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