Effect of pressure on magnetic properties of TM3[Cr(CN) 6]2 ·nH2O nanoparticles

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Abstract

Effect of pressure on magnetic properties of magnetic nanoparticles, based on Prussian blue analogues, were studied in pressures up to 1.2 GPa. The Mn 3[Cr(CN)6]2 ·nH2O and Ni 3[Cr(CN)6]2 ·nH2O nanoparticles were prepared by reverse micelle technique. Transmission electron microscopy images show nanoparticles with average diameter of about 3.5 nm embedded in an organic matrix. The characteristic X-ray peaks of nanoparticles are more diffused and broader. Systems of nanoparticles behave as systems of interacting magnetic particles. The Curie temperature TC is reduced from TC = 56 K for Ni-Prussian blue analogues to TC = 21 K for Ni-nanoparticles system and from TC = 65 K for Mn-Prussian blue analogues to TC = 38 K for Mn-nanoparticles system. One can explain this reduction of the Curie temperature and of the saturated magnetization μs by dispersion of nanoparticles in an organic matrix i.e. by a dilution effect. Applied pressure leads to a remarkable increase in T C for system of Mn-nanoparticles (ΔTC/Δp = +13 K/GPa) and to only slight decrease in TC for system of Ni-nanoparticles (ΔTC/Δp = -3 K/GPa). The pressure effect follows behavior of the mother Prussian blue analogues under pressure. The increase in saturated magnetization, attributed to compression of the organic matrix, is very small.

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Zentko, A., Zentková, M., Kavečanský, V., Mihalik, M., Mitróová, Z., Arnold, Z., … Zeleňák, V. (2008). Effect of pressure on magnetic properties of TM3[Cr(CN) 6]2 ·nH2O nanoparticles. In Acta Physica Polonica A (Vol. 113, pp. 489–493). Polish Academy of Sciences. https://doi.org/10.12693/APhysPolA.113.489

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