Abstract
The physical properties of layered materials have been a field of intensive study for many years. Particularly, attention has focused on the transition-metal dichalcogenides which form typical layer structures. They are built from layers of metal atoms M, sandwiched between two sheets of chalcogens X, which are bonded by van der Waals energy. The early work on transition-metal dichalcogenides has been reviewed by Wilson and Yoffe [1]. Also, their structural properties were briefly reviewed in a chapter on transition-metal chalcogenides by Jellinek [2]. More recently a review article on inclusion compounds, by Gamble and Geballe [3], discussed the chemistry and physical properties of chalcogenide intercalation compounds. Optics, transparent and anisotropic physical properties were measured in order to study their band structure [4, 5, 6, 6a]. However, it appears that among transition-metal chalcogenides the typical layer materials do not show the most interesting magnetic properties. With a few exceptions they are either Pauli-paramagnetic metals or diamagnetic semiconductors.
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Vandenberg-Voorhoeve, J.M. (1976). Structural and Magnetic Properties of Layered Chalcogenides of the Transition Elements. In: Lee, P.A. (eds) Optical and Electrical Properties. Physics and Chemistry of Materials with Layered Structures, vol 4. Springer, Dordrecht. https://doi.org/10.1007/978-94-010-1478-6_8
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