Magnetic properties of multi-metal Prussian Blue analogue Co0.75Ni0.75[Fe(CN)6]·6.8H2O
Author:
Publisher
Elsevier BV
Subject
Electrical and Electronic Engineering,Condensed Matter Physics,Electronic, Optical and Magnetic Materials
Reference22 articles.
1. Molecular Magnetism;Kahn,1993
2. Structural and magnetic properties ofFe[Fe(CN)6]∙4H2O
3. Magnetic structure of molecular magnet Fe[Fe(CN)6]·4H2O
4. Magnetism as a functionality at the molecular level
5. Electrochemically Tunable Magnetic Phase Transition in a High- T c Chromium Cyanide Thin Film
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1. Interplay between transition-metal K-edge XMCD, slight structural distortions and magnetism in a series of trimetallic (CoxNi(1−x))4[Fe(CN)6]3/8 Prussian blue analogues;Physical Chemistry Chemical Physics;2024
2. Infrared Light-Induced Charge Transfer of Prussian Blue Analogs K0.4Co1.3[Fe(CN)6]·nH2O;Journal of Superconductivity and Novel Magnetism;2023-11-20
3. Thermal-induced structural distortion, charge transfer and magnetic changes of Prussian blue analogs K0.4Co1.3[Fe(CN)6]•nH2O;Chemical Physics Letters;2021-10
4. Synthesis of CoFe Prussian blue analogue/poly vinylidene fluoride nanocomposite material with improved thermal stability and ferroelectric properties;New Journal of Chemistry;2018
5. Spin-Glass Behavior, Magnetic, and IR Spectroscopy Analysis of Multimetallic Compound Ni0.25Mn1.25[Fe(CN)6]·6.1H2O;Journal of Spectroscopy;2015
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