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pro vyhledávání: '"Daniel Tezze"'
Engineering Magnetism and Superconductivity in van der Waals Materials via Organic‐Ion Intercalation
Publikováno v:
Advanced Physics Research, Vol 2, Iss 7, Pp n/a-n/a (2023)
Abstract Intercalation is the insertion of guest species between the planes of a host van der Waals layered crystal. The process is accompanied by a significant change of the charge carrier density and by the expansion of the interlayer distance, ove
Externí odkaz:
https://doaj.org/article/f8f92a5fdf5647aca61c1a2a4f794d64
Autor:
Junhyeon, Jo, Francesco, Calavalle, Beatriz, Martín-García, Daniel, Tezze, Fèlix, Casanova, Andrey, Chuvilin, Luis E, Hueso, Marco, Gobbi
Publikováno v:
Advanced materials (Deerfield Beach, Fla.). 34(21)
The exfoliation of layered magnetic materials generates atomically thin flakes characterized by an ultrahigh surface sensitivity, which makes their magnetic properties tunable via external stimuli, such as electrostatic gating and proximity effects.
Autor:
Daniel, Tezze, José M, Pereira, Yaiza, Asensio, Mihail, Ipatov, Francesco, Calavalle, Felix, Casanova, Alexander M, Bittner, Maider, Ormaza, Beatriz, Martín-García, Luis E, Hueso, Marco, Gobbi
Publikováno v:
Nanoscale. 14(4)
Atomically thin van der Waals magnetic crystals are characterized by tunable magnetic properties related to their low dimensionality. While electrostatic gating has been used to tailor their magnetic response, chemical approaches like intercalation r
Autor:
Daniel Tezze, José M. Pereira, Yaiza Asensio, Mihail Ipatov, Francesco Calavalle, Felix Casanova, Alexander M. Bittner, Maider Ormaza, Beatriz Martín-García, Luis E. Hueso, Marco Gobbi
Publikováno v:
Digital.CSIC. Repositorio Institucional del CSIC
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Atomically thin van der Waals magnetic crystals are characterized by tunable magnetic properties related to their low dimensionality. While electrostatic gating has been used to tailor their magnetic response, chemical approaches like intercalation r
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::383f9bb6d3c0e363d2e753c88adbbdf4
https://doi.org/10.26434/chemrxiv-2021-bwhp6
https://doi.org/10.26434/chemrxiv-2021-bwhp6
Autor:
Jose M. Pereira, Daniel Tezze, Iris Niehues, Yaiza Asensio, Haozhe Yang, Lars Mester, Shu Chen, Felix Casanova, Alexander M. Bittner, Maider Ormaza, Frederik Schiller, Beatriz Martín‐García, Rainer Hillenbrand, Luis E. Hueso, Marco Gobbi
Publikováno v:
Advanced Functional Materials. 32:2208761
When doped into a certain range of charge carrier concentrations, MoS2 departs from its pristine semiconducting character to become a strongly correlated material characterized by exotic phenomena such as charge density waves or superconductivity. Ho