Non-hydrothermal synthesis and structure determination of two new β-octamolybdate (VI) stabilized with dialkylammonium counterions - Université Toulouse III - Paul Sabatier - Toulouse INP Accéder directement au contenu
Article Dans Une Revue Journal of Molecular Structure Année : 2018

Non-hydrothermal synthesis and structure determination of two new β-octamolybdate (VI) stabilized with dialkylammonium counterions

Résumé

Two new organiceinorganic materials based on MoePOM, namely (iPr2NH2)2.((CH3)2NH2)2.[Mo8O26] (1) and (Pr2NH2)4$[Mo8O26] (2), have been synthesized by a non-hydrothermal method at room temperature and characterized by single crystal X-ray diffraction, thermal gravimetric analysis (TGA) and vibrational spectroscopy. The compound (1) is a b-[Mo8O26]4- anion which crystallizes as a mixed salt of both dimethylammonium [(CH3)2NH2]þ and diisopropylammonium [iPr2NH2]þ. The interaction between anions and cations leads to an inorganic-organic band structure. Similarly, in compound (2), the interconnection of b-[Mo8O26]4- anions with dipropylammonium [Pr2NH2]þ cations gives an inorganicorganic band structure. In both compounds, the cations interact with two different sites of the cluster: a fundamental site formed by four highly nucleophilic terminal oxo ligands, and a second site which is composed of Ot, m2-O and/or m3-O oxygen groups. A remarkable difference between the two compounds is that in compound (2) interactions between the bands involve only Van der Waals forces, whereas in compound (1) the bands interact also through hydrogen bonds.
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Dates et versions

hal-01829951 , version 1 (04-07-2018)

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Bougar Sarr, Cheikh A.K. Diop, Frederic Melin, Mamadou Sidibe, Petra Hellwig, et al.. Non-hydrothermal synthesis and structure determination of two new β-octamolybdate (VI) stabilized with dialkylammonium counterions. Journal of Molecular Structure, 2018, 1170, pp.44-50. ⟨10.1016/j.molstruc.2018.05.055⟩. ⟨hal-01829951⟩
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