English

Plasma treatment as an unconventional molecular magnet engineering method

Materials Science 2024-03-07 v1

Abstract

Molecular magnetism aims to design materials with unique properties at the molecular level, focusing on the systematic synthesis of new chemical compounds. In this paper, we propose an alternative route to engineer molecular magnetic materials through plasma irradiation. Our research indicates that the long-range magnetic order temperature in the three-dimensional {[MnII(H2O)2]2[NbIV(CN)8]4H2O}n\mathrm{\{[Mn^{II}(H_2O)_2]_2[Nb^{IV}(CN)_8]\cdot 4H_2O\}_n} molecular ferrimagnet increases by 20 K after plasma treatment. The core structure of the compound does not reveal significant changes after plasma processing, as confirmed by the X-ray powder diffraction analysis. The observed results are attributed to the release of crystallized water molecules. The described procedure can serve as a viable approach to altering the magnetic properties of the molecular systems.

Keywords

Cite

@article{arxiv.2310.19467,
  title  = {Plasma treatment as an unconventional molecular magnet engineering method},
  author = {Dominik Czernia and Piotr Konieczny and Marcin Perzanowski and Dawid Pinkowicz},
  journal= {arXiv preprint arXiv:2310.19467},
  year   = {2024}
}

Comments

6 pages, 4 figures

R2 v1 2026-06-28T13:05:47.638Z