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2D Co-Directed Metal-Organic Networks Featuring Strong Antiferromagnetism and Perpendicular Anisotropy.

Sofia de Oliveira ParreirasCristina Martín-FuentesDaniel MorenoShanmugasibi K MathialaganKalyan BiswasBeatriz Muñiz CanoKoen LauwaetManuel ValvidaresMiguel Angel ValbuenaJosé I UrgelPierluigi GargianiJulio CamareroRodolfo MirandaJose Ignacio MartínezJosé M GallegoDavid Ecija
Published in: Small (Weinheim an der Bergstrasse, Germany) (2023)
Antiferromagnetic spintronics is a rapidly emerging field with the potential to revolutionize the way information is stored and processed. One of the key challenges in this field is the development of novel 2D antiferromagnetic materials. In this paper, the first on-surface synthesis of a Co-directed metal-organic network is reported in which the Co atoms are strongly antiferromagnetically coupled, while featuring a perpendicular magnetic anisotropy. This material is a promising candidate for future antiferromagnetic spintronic devices, as it combines the advantages of 2D and metal-organic chemistry with strong antiferromagnetic order and perpendicular magnetic anisotropy.
Keyphrases
  • water soluble
  • molecularly imprinted
  • current status
  • room temperature
  • mass spectrometry
  • high resolution
  • risk assessment
  • network analysis
  • transition metal