Chlorostannate(II) Ionic Liquids: Speciation, Lewis Acidity, and Oxidative Stability


Autoria(s): Currie, Matthew; Estager, Julien; Licence, Peter; Men, Shuang; Nockemann, Peter; Seddon, Kenneth R.; Swadzba-Kwasny, Malgorzata; Terrade, Cecile
Data(s)

18/02/2013

Resumo

<p>The anionic speciation of chlorostannate(II) ionic liquids, prepared by mixing 1-alkyl-3-methylimidazolium chloride and tin(II) chloride in various molar ratios, chi(SnCl2), was investigated in both solid and liquid states. The room temperature ionic liquids were investigated by Sn-119 NMR spectroscopy, X-ray photoelectron spectroscopy, and viscometry. Crystalline samples were studied using Raman spectroscopy, single-crystal X-ray crystallography, and differential scanning calorimetry. Both liquid and solid systems (crystallized from the melt) contained [SnCl3](-) in equilibrium with Cl- when chi(SnCl2) < 0.50, [SnCl3](-) in equilibrium with [Sn2Cl5](-) when chi(SnCl2) > 0.50, and only [SnCl3](-) when chi(SnCl2) = 0.50. Tin(II) chloride was found to precipitate when chi(SnCl2) > 0.63. No evidence was detected for the existence of [SnCl4](-) across the entire range of chi(SnCl2) although such anions have been reported in the literature for chlorostannate(II) organic salts crystallized from organic solvents. Furthermore, the Lewis acidity of the chlorostannate(II)-based systems, expressed by their Gutmann acceptor number, has been determined as a function of the composition, chi(SnCl2), to reveal Lewis acidity for chi(SnCl2) > 0.50 samples comparable to the analogous systems based on zinc(II). A change of the Lewis basicity of the anion was estimated using H-1 NMR spectroscopy, by comparison of the measured chemical shifts of the C-2 hydrogen in the imidazolium ring. Finally, compositions containing free chloride anions (chi(SnCl2) < 0.50) were found to oxidize slowly in air to form a chlorostannate(IV) ionic liquid containing the [SnCl6](2-) anion.</p>

Identificador

http://pure.qub.ac.uk/portal/en/publications/chlorostannateii-ionic-liquids-speciation-lewis-acidity-and-oxidative-stability(d9982a50-55ba-4c04-b5f6-6c701bf5fd8f).html

http://dx.doi.org/10.1021/ic300241p

Idioma(s)

eng

Direitos

info:eu-repo/semantics/restrictedAccess

Fonte

Currie , M , Estager , J , Licence , P , Men , S , Nockemann , P , Seddon , K R , Swadzba-Kwasny , M & Terrade , C 2013 , ' Chlorostannate(II) Ionic Liquids: Speciation, Lewis Acidity, and Oxidative Stability ' Inorganic Chemistry , vol 52 , no. 4 , pp. 1710-1721 . DOI: 10.1021/ic300241p

Tipo

article