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Title of Journal: J Clust Sci

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Abbravation: Journal of Cluster Science

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Springer US

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DOI

10.1016/0041-624x(70)91124-8

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1572-8862

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Molybdenum Bisphosphonates with CrIII or MnIII

Authors: Ali Saad Guillaume Rousseau Hani El Moll Olivier Oms Pierre Mialane Jérôme Marrot Loïc Parent IsraelMartyr Mbomekallé Rémi Dessapt Anne Dolbecq
Publish Date: 2013/11/01
Volume: 25, Issue: 3, Pages: 795-809
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Abstract

The synthesis of MoVI bisphosphonates BPs complexes in the presence of a heterometallic element has been studied Two different BPs have been used the alendronate ligand O3PCC3H6NH3OPO34− Ale and a new BP derivative with a pyridine ring linked to the amino group O3PCC3H6NH2CH2C5H4NOPO34− AlePy Three compounds have been isolated a tetranuclear MoVI complex with CrIII ions NH45Mo2O62O3PCC3H6NH3OPO32Cr·11H2O Mo4Ale2Cr its MnIII analogue NH445Na05Mo2O62O3PCC3H6NH3OPO32Mn·9H2O Mo4Ale2Mn and a cocrystal of two polyoxomolybdates NH410Na3Mo2O62O3PCC3H6NH2CH2C5H4NOPO32Cr2CrMo6OH6O18·37H2O Mo4AlePy2Cr2CrMo6 In this latter compound an Andersontype POM CrMo6OH6O183− is sandwiched between two tetranuclear MoVI complexes with AlePy ligands The protonated triply bridging oxygen atoms bound to the central CrIII ion of the Anderson anion develop strong hydrogen bonding interactions with the oxygen atoms of the bisphosphonate complexes The UV–Vis spectra confirm the coexistence in solution of both POMs Cyclic voltammetry experiments have been performed showing the reduction of the Mo centers In strong contrast with the reported MoVI BP systems the presence of trivalent cations in close proximity to the MoVI centers dramatically impact the potential solidstate photochromic properties of these compounds


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