Bulk and surface switching in Mn-Fe-based Prussian Blue Analogues
T.T.A. Lummen, R.Y.N. Gengler, P. Rudolf, F. Lusitani, E.J.M., Vertelman, P.J. van Koningsbruggen, M. Knupfer, O. Molodtsova, J.-J. Pireaux, and P.H.M. van Loosdrecht

TL;DR
This study investigates bulk and surface phase transitions in Mn-Fe-based Prussian Blue Analogues, revealing surface reconstruction effects, the impact of metal substitution on charge transfer, and temperature-dependent photo-induced metastable states.
Contribution
It provides new insights into surface versus bulk charge transfer phenomena and the effects of metal substitution on phase transition efficiency in these materials.
Findings
High charge transfer in bulk, reduced at surface
Substitution with Cu decreases charge transfer proportionally
Photo-induced metastable state observed at 50-100 K
Abstract
Many Prussian Blue Analogues are known to show a thermally induced phase transition close to room temperature and a reversible, photo-induced phase transition at low temperatures. This work reports on magnetic measurements, X-ray photoemission and Raman spectroscopy on a particular class of these molecular heterobimetallic systems, specifically on Rb0.81Mn[Fe(CN)6]0.95_1.24H2O, Rb0.97Mn[Fe(CN)6]0.98_1.03H2O and Rb0.70Cu0.22Mn0.78[Fe(CN)6]0.86_2.05H2O, to investigate these transition phenomena both in the bulk of the material and at the sample surface. Results indicate a high degree of charge transfer in the bulk, while a substantially reduced conversion is found at the sample surface, even in case of a near perfect (Rb:Mn:Fe=1:1:1) stoichiometry. Thus, the intrinsic incompleteness of the charge transfer transition in these materials is found to be primarily due to surface…
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Taxonomy
TopicsMagnetism in coordination complexes · Organic and Molecular Conductors Research · Molecular Junctions and Nanostructures
