2011
DOI: 10.1021/cm2003337
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Photoinduced Magnetism in a Series of Prussian Blue Analogue Heterostructures

Abstract: Heterostructured thin films consisting of distinct layers of the Prussian blue analogues Rb a Co b [Fe(CN)6] c ·mH2O (CoFe PBA) and Rb j M k [Cr(CN)6] l ·nH2O (MCr PBA, where M = Ni or Co) have been fabricated, and their photomagnetic properties have been investigated. The CoFe PBA is known to be photoactive, with light induced changes in the unit cell size and the spin states below ∼150 K and magnetic order below ∼20 K. The NiCr and CoCr PBAs do not have native photoeffects, but are known to have higher magne… Show more

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Cited by 79 publications
(74 citation statements)
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“…The net effect is an overlapping for the electron clouds of the involved metals (M, T). This explains the attractive properties of this family of materials as prototype of molecular magnets, which have been widely studied in the last decades The presence of two redox centers linked through the CN bridge and for some compositions also of an exchangeable alkali metal (A), has stimulated their study as materials for new generation of batteries, in electrochemical sensors, environmental remediation,, and for health care . For certain combinations of metals, e.g.…”
Section: Introductionmentioning
confidence: 99%
“…The net effect is an overlapping for the electron clouds of the involved metals (M, T). This explains the attractive properties of this family of materials as prototype of molecular magnets, which have been widely studied in the last decades The presence of two redox centers linked through the CN bridge and for some compositions also of an exchangeable alkali metal (A), has stimulated their study as materials for new generation of batteries, in electrochemical sensors, environmental remediation,, and for health care . For certain combinations of metals, e.g.…”
Section: Introductionmentioning
confidence: 99%
“…Then, it is not surprising that ≈ 100 nm layered heterostructures can show the largest magnetic response, 43 as that is close to the domain size. So, domain wall formation in NiCrPB could be modified with the optically controlled strain, giving rise to the synergistic response.…”
mentioning
confidence: 97%
“…The surface/interface energy can be therefore viewed as a key parameter, which governs the SCO properties at the nanoscale . Understanding surface/interface phenomena is not only important to elucidate nanoscale SCO behaviors but also opens up possibilities for engineering these nanomaterials . However, thin films and nanostructures usually have nonuniform properties due to defects, grain boundaries, strain distributions, and so forth.…”
Section: Comparison Of Reported Elastic Moduli Ofmentioning
confidence: 99%