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Please use this identifier to cite or link to this item: http://hdl.handle.net/20.500.12128/12030
Title: Low-melting manganese(II)-based ionic liquids: syntheses, structures, properties and influence of trace impurities
Authors: Peppel, Tim
Geppert-Rybczyńska, Monika
Neise, Christin
Kragl, Udo
Köckerling, Martin
Keywords: manganese; ionic liquid; crystal structure; physical properties; trace impurities
Issue Date: 2019
Citation: "Materials" iss. 22 (2019), art. no. 3764
Abstract: The synthesis of more than 10 new magnetic ionic liquids with [MnX4]2􀀀 anions, X = Cl, NCS, NCO, is presented. Detailed structural information through single-crystal X-ray di raction is given for (DMDIm)[Mn(NCS)4], (BnEt3N)2[Mn(NCS)4], and {(Ph3P)2N}2[Mn(NCO4)] 0.6H2O, respectively. All compounds consist of discrete anions and cations with tetrahedrally coordinated Mn(II) atoms. They show paramagnetic behavior as expected for spin-only systems. Melting points are found for several systems below 100 C classifying them as ionic liquids. Thermal properties are investigated using di erential scanning calorimetry (DSC) measurements. The physicochemical properties of density, dynamic viscosity, electrolytic conductivity, and surface tension were measured temperature-dependent of selected samples. These properties are discussed in comparison to similar Co containing systems. An increasing amount of bromide impurity is found to a ect the surface tension only up to 3.3%.
URI: http://hdl.handle.net/20.500.12128/12030
DOI: 10.3390/ma12223764
ISSN: 1996-1944
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