Tailored topotactic chemistry unlocks heterostructures of magnetic intercalation compounds

S Samra Husremović O Oscar Gonzalez (Department of Chemistry) B Berit H. Goodge L Lilia S. Xie (Department of Chemistry) Z Zhizhi Kong W Wanlin Zhang S Sae Hee Ryu S Stephanie M. Ribet (National Center for Electron Microscopy, Molecular Foundry) S Shannon S. Fender (Department of Chemistry) K Karen C. Bustillo (National Center for Electron Microscopy, Molecular Foundry) C Chengyu Song J Jim Ciston T Takashi Taniguchi K Kenji Watanabe C Colin Ophus (Department of Materials Science and Engineering) C Chris Jozwiak (Advanced Light Source, Lawrence Berkeley National Laboratory) A Aaron Bostwick (Advanced Light Source, Lawrence Berkeley National Laboratory) E Eli Rotenberg (Advanced Light Source, Lawrence Berkeley National Laboratory) D D. Kwabena Bediako

Abstract

Abstract The construction of thin film heterostructures has been a widely successful archetype for fabricating materials with emergent physical properties. This strategy is of particular importance for the design of multilayer magnetic architectures in which direct interfacial spin-spin interactions between magnetic phases in dissimilar layers lead to emergent and controllable magnetic behavior. However, crystallographic incommensurability and atomic-scale interfacial disorder can severely limit the types of materials amenable to this strategy, as well as the performance of these systems. Here, we demonstrate a method for synthesizing heterostructures comprising magnetic intercalation compounds of transition metal dichalcogenides (TMDs), through directed topotactic reaction of the TMD with a metal oxide. The mechanism of the intercalation reaction enables thermally initiated intercalation of the TMD from lithographically patterned oxide films, giving access to a family of multi-component magnetic architectures through the combination of deterministic van der Waals assembly and directed intercalation chemistry.

Article Details

Volume / Issue Vol. 16, Issue 1
Published January 31, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (19)

S

Samra Husremović

O

Oscar Gonzalez

Department of Chemistry

B

Berit H. Goodge

L

Lilia S. Xie

Department of Chemistry

Z

Zhizhi Kong

W

Wanlin Zhang

S

Sae Hee Ryu

S

Stephanie M. Ribet

National Center for Electron Microscopy, Molecular Foundry

S

Shannon S. Fender

Department of Chemistry

K

Karen C. Bustillo

National Center for Electron Microscopy, Molecular Foundry

C

Chengyu Song

J

Jim Ciston

T

Takashi Taniguchi

K

Kenji Watanabe

C

Colin Ophus

Department of Materials Science and Engineering

C

Chris Jozwiak

Advanced Light Source, Lawrence Berkeley National Laboratory

A

Aaron Bostwick

Advanced Light Source, Lawrence Berkeley National Laboratory

E

Eli Rotenberg

Advanced Light Source, Lawrence Berkeley National Laboratory

D

D. Kwabena Bediako