Superconducting Tin Selenide/Niobium Diselenide Ferecrystals†
Author:
Affiliation:
1. Novel Materials Humboldt‐Universität zu Berlin Newtonstr. 15 12489 Berlin Germany
2. Department of Chemistry and Materials Science Institute University of Oregon Eugene OR 97403 USA
Funder
National Science Foundation
Publisher
Wiley
Subject
Condensed Matter Physics,General Materials Science,General Chemistry
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1002/crat.201700126
Reference17 articles.
1. Structural and Electrical Properties of ([SnSe]1+δ)m(NbSe2)1 Compounds: Single NbSe2 Layers Separated by Increasing Thickness of SnSe
2. Structural and electrical properties of a new ([SnSe]1.16)1(NbSe2)1 polytype
3. Effect of Local Structure of NbSe2 on the Transport Properties of ([SnSe]1.16)1(NbSe2)n Ferecrystals
4. Neutron diffraction study of the structural phase transition in SnS and SnSe
5. Layer structure polytypism among niobium and tantalum selenides
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1. Nanostructured Ferecrystal Intergrowths with TaSe2 Unveiled High Thermoelectric Performance in n-Type SnSe;Journal of the American Chemical Society;2024-08-21
2. Tuning metal/superconductor to insulator/superconductor coupling via control of proximity enhancement between NbSe2 monolayers;Journal of Physics: Condensed Matter;2023-03-23
3. Unprecedented generation of 3D heterostructures by mechanochemical disassembly and re-ordering of incommensurate metal chalcogenides;Nature Communications;2020-06-12
4. Electronic structure of designed [(SnSe)1+δ]m[TiSe2]2 heterostructure thin films with tunable layering sequence;Journal of Materials Research;2019-04-29
5. Superconductivity in a misfit layered compound (SnSe)1.16(NbSe2);Journal of Physics: Condensed Matter;2018-08-07
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