Large‐Area Synthesis of Ferromagnetic Fe5−xGeTe2/Graphene van der Waals Heterostructures with Curie Temperature above Room Temperature

Author:

Lv Hua1,da Silva Alessandra1,Figueroa Adriana I.2,Guillemard Charles3,Aguirre Iván Fernández24,Camosi Lorenzo2,Aballe Lucia3,Valvidares Manuel3,Valenzuela Sergio O.25,Schubert Jürgen67,Schmidbauer Martin8,Herfort Jens1,Hanke Michael1,Trampert Achim1,Engel‐Herbert Roman1,Ramsteiner Manfred1,Lopes Joao Marcelo J.1ORCID

Affiliation:

1. Paul‐Drude‐Institut für Festkörperelektronik Leibniz‐Institut im Forschungsverbund Berlin e.V 10117 Berlin Germany

2. Catalan Institute of Nanoscience and Nanotechnology (ICN2) CSIC and BIST Campus UAB Bellaterra Barcelona 08193 Spain

3. ALBA Synchrotron Light Source Cerdanyola del Valles Barcelona 08290 Spain

4. Universitat Autònoma de Barcelona Bellaterra Barcelona 08193 Spain

5. Institució Catalana de Recerca i Estudis Avançats (ICREA) Barcelona 08010 Spain

6. Peter Grünberg Institut (PGI‐9) Forschungszentrum Jülich 52425 Jülich Germany

7. JARA‐Fundamentals of Future Information Technology Jülich‐Aachen Research Alliance 52425 Jülich Germany

8. Leibniz‐Institut für Kristallzüchtung (IKZ) 12489 Berlin Germany

Abstract

AbstractVan der Waals (vdW) heterostructures combining layered ferromagnets and other 2D crystals are promising building blocks for the realization of ultracompact devices with integrated magnetic, electronic, and optical functionalities. Their implementation in various technologies depends strongly on the development of a bottom‐up scalable synthesis approach allowing for realizing highly uniform heterostructures with well‐defined interfaces between different 2D‐layered materials. It is also required that each material component of the heterostructure remains functional, which ideally includes ferromagnetic order above room temperature for 2D ferromagnets. Here, it is demonstrated that the large‐area growth of Fe5−xGeTe2/graphene heterostructures is achieved by vdW epitaxy of Fe5−xGeTe2 on epitaxial graphene. Structural characterization confirms the realization of a continuous vdW heterostructure film with a sharp interface between Fe5−xGeTe2 and graphene. Magnetic and transport studies reveal that the ferromagnetic order persists well above 300 K with a perpendicular magnetic anisotropy. In addition, epitaxial graphene on SiC(0001) continues to exhibit a high electronic quality. These results represent an important advance beyond nonscalable flake exfoliation and stacking methods, thus marking a crucial step toward the implementation of ferromagnetic 2D materials in practical applications.

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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