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Photoinduced effects on the magnetic properties of the (Fe <sub/>0.2</sub> Cr <sub/>0.8</sub> ) <sub/>1.5</sub> [Cr(CN) <sub/>6</sub> ] Prussian blue analogue.

DOI:10.1039/c8tc05815f 期刊:Journal of Materials Chemistry C 出版年份:2019 更新时间:2025-09-19 17:15:36
摘要: One of the most attractive characteristics of some Prussian blue derivatives is the sensitivity of their magnetic properties to the irradiation with light. In this work photoinduced effects in the (Fe0.2Cr0.8)1.5 [Cr(CN)6]·15 H2O PBA have been studied by means of X ray-based spectroscopies and magnetometry. It is found that the photosensitivity of this compound is mostly centred on the Fe cations: the exposure to green light induces a transfer of electrons from them to the Cr that provokes a reversal of the previously existing linkage isomerization and increases the elastic strain caused by the mis?t of the unit cells of the Fe–NC–Cr and Cr–NC–Cr sublattices. The green light also quenches the magnetism of the FeII high-spin (HS) ions present in the sample and reduces the magnetic moments of most of the Cr cations except for CrII HS. Our study highlights the important role played by the mismatch between the unit cells of the coexisting sub-lattices in ternary Prussian blue analogues.
作者: Francisco Jesús Luque,Iwona Agnieszka Kowalik,Juan Pablo Prieto-Ruiz,Miguel ángel Ni?o,Helena Prima-García,Francisco Manuel Romero,Dimitri Arvanitis,Corine Mathonière,Eugenio Coronado,Rodolfo Miranda,Juan José de Miguel
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Investigating the photoinduced effects on the magnetic properties of the (Fe0.2Cr0.8)1.5[Cr(CN)6] Prussian blue analogue, focusing on charge transfer, linkage isomerization reversal, and lattice strain.

The study demonstrates that photoinduced effects in the FeCrCr PBA are primarily centered on Fe cations, involving electron transfer to Cr, reversal of linkage isomerization, and increased lattice strain. Long-term irradiation leads to charge transfer to relieve strain, reducing magnetic moments except for CrII HS. The mismatch between unit cells of Fe–NC–Cr and Cr–NC–Cr sublattices plays a crucial role in tailoring properties, highlighting the importance of elastic effects in ternary PBAs. Findings suggest new ways to design photosensitive magnetic materials, with implications for optoelectronics and spintronics.

The vacuum system was not baked to avoid damaging the PBA material, leading to a base pressure of 10^-8 mbar. EXAFS measurements at room temperature only due to setup constraints preventing simultaneous cooling and laser exposure. The 200-minute threshold for regime change may vary with sample stoichiometry and light power. Surface sensitivity in some measurements could affect results. Reversibility and kinetic limitations were noted, and local heating effects were ruled out but could be a concern in other setups.

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