Literature DB >> 31701115

Co/Pd-Based synthetic antiferromagnetic thin films on Au/resist underlayers: towards biomedical applications.

G Varvaro1, S Laureti, D Peddis, M Hassan, G Barucca, P Mengucci, A Gerardino, E Giovine, O Lik, D Nissen, M Albrecht.   

Abstract

Thin film stacks consisting of multiple repeats M of synthetic antiferromagnetic (SAF) [Co/Pd]N/Ru/[Co/Pd]N units with perpendicular magnetic anisotropy were explored as potential starting materials to fabricate free-standing micro/nanodisks, which represent a promising candidate system for theranostic applications. The films were directly grown on a sacrificial resist layer spin-coated on SiOx/Si(100) substrates, required for the preparation of free-standing disks after its dissolution. Furthermore, the film stack was sandwiched between two Au layers to allow further bio-functionalization. For M ≤ 5, the samples fulfill all the key criteria mandatory for biomedical applications, i.e., zero remanence, zero field susceptibility at small fields and sharp switching to saturation, together with the ability to vary the total magnetic moment at saturation by changing the number of repetitions of the multi-stack. Moreover, the samples show strong perpendicular magnetic anisotropy, which is required for applications relying on the transduction of a mechanical force through the micro/nano-disks under a magnetic field, such as the mechanical cell disruption, which is nowadays considered a promising alternative to the more investigated magnetic hyperthermia approach for cancer treatment. In a further step, SAF microdisks were prepared from the continuous multi-stacks by combining electron beam lithography and Ar ion milling, revealing similar magnetic properties as compared to the continuous films.

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Year:  2019        PMID: 31701115     DOI: 10.1039/c9nr06866j

Source DB:  PubMed          Journal:  Nanoscale        ISSN: 2040-3364            Impact factor:   7.790


  2 in total

1.  Perpendicularly magnetized Co/Pd-based magneto-resistive heterostructures on flexible substrates.

Authors:  M Hassan; S Laureti; C Rinaldi; F Fagiani; S Varotto; G Barucca; N Y Schmidt; G Varvaro; M Albrecht
Journal:  Nanoscale Adv       Date:  2021-04-09

2.  Temperature Dependence of the Magnetic Properties of IrMn/CoFeB/Ru/CoFeB Exchange Biased Synthetic Antiferromagnets.

Authors:  Edoardo Albisetti; Giuseppe Scaramuzzi; Christian Rinaldi; Matteo Cantoni; Riccardo Bertacco; Daniela Petti
Journal:  Materials (Basel)       Date:  2020-01-14       Impact factor: 3.623

  2 in total

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