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  6. α-RuCl3 intercalated into graphite: a new three-dimensional platform for exotic quantum phases
 
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Title(s)
TitleLanguage
α-RuCl3 intercalated into graphite: a new three-dimensional platform for exotic quantum phases
en
 
Author(s)
NameORCIDGNDAffiliation
Razpopov, Aleksandar orcid-logo
0009-0009-6935-3297
Theoretical Physics 
 
Project(s)
TRR 288: Elastic Tuning and Response of Electronic Quantum Phases of Matter 
 
Faculty
13 Physics
 
Date Issued
16 June 2026
 
Publisher(s)
Goethe-Universität Frankfurt
 
Handle
https://gude.uni-frankfurt.de/handle/gude/798
 
DOI
10.25716/gude.1jyj-rw7p
 

Type(s) of data
DataPaper
 
Language(s)
en
 
Subject Keyword(s)
  • proximity effects

  • strongly correlated s...

  • van der waals systems...

 
Abstract(s)
AbstractLanguage
Multilayer graphene with different stacking sequences has emerged as a powerful setting for correlated
and topological phases. In parallel, progress in graphene heterostructures with magnetic or correlated
materials—most notably the Kitaev candidate α-RuCl3 —has demonstrated charge transfer, magnetic
proximity effects, and interfacial reconstruction, creating new opportunities for engineered quantum
systems. Motivated by these developments, we explore a three-dimensional analogue in which α-RuCl3
layers are inserted directly into the van der Waals gaps of graphite, forming an intercalated system. Here,
we report the successful synthesis and comprehensive characterization of graphite intercalated with α-
RuCl3. Using a combination of X-ray diffraction, quantum oscillation measurements, and first-principles
electronic structure calculations, we study the structural and electronic properties of this intercalated
crystals. Our results demonstrate that graphite intercalated with α-RuCl3 offers a robust route to
develop three-dimensional materials with access to novel correlated and topological states.
en
 
Description(s)
DescriptionLanguage
The full description of the data can be found in the README.
en
 

Related Resource(s)
Type of identifierIdentifierType of publicationType of relation
DOI
10.48550/arXiv.2512.03147
JournalArticle
IsSupplementTo
 

Funder(s)
NameType of identifierFunder identifierAward numberAward titleAward URI
German research foundation
ROR
https://ror.org/018mejw64
TRR 288 - 422213477
Gordon and Betty Moore Foundation’s EPiQS initiative,
ROR
https://ror.org/006wxqw41
Grant GBMF9069
AFOSR MURI
Other
rant No. FA9550-20-1-0322
U.S. Department of Energy, Office of Basic Energy Sciences, Division of Ma- terials Sciences and Engineering
ROR
https://ror.org/05mg91w61
 

License
Creative Commons Attribution 4.0 International (CC BY 4.0) cclicense-logocclicense-logo
 

Views
3
Acquisition Date
Jun 19, 2026
View Details
Downloads
1
Acquisition Date
Jun 19, 2026
View Details

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