2 research outputs found

    Thermal transition from a disordered, 2D network to a regular, 1D, Fe(II)-DCNQI coordination network

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    We report the formation of an Fe-DCNQI (DCNQI = dicyano-p-quinodiimine) coordination network on the Ag(111) surface, where the Fe atoms are 4-fold coordinated in a square-planar geometry with the N atoms of the cyano groups. Depending on the formation temperature, the coordination network can be a two-dimensional arrangement of Fe atoms in a hexagonal lattice joined by DCNQI molecules in an apparent random way, or a set of 1D chains bound together by hydrogen bonds, but with the Fe atoms maintaining the same hexagonal lattice. The electronic structure of this network is studied by a combination of photoemission spectroscopy and theoretical calculations based on the density functional theory. In particular, we show that the oxidation state of the Fe atoms in this 1D arrangement is +2, which has been compared with the atomic charges values obtained from first-principles calculations.Our own work has been supported by the MICINN of Spain (FIS2010-18847, FIS2013-42002-R, FIS2013-40667-P and CTQ2013-43698-P), Comunidad de Madrid (NANOFRONTMAG-CM S2013/MIT-2850), and European Union (SMALL PITN-GA-2009-23884, COST Action CM1204 XLIC)
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