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Features of Protonation of the Simplest Weakly Basic Molecules, SO2 , CO, N2 O, CO2 , and Others by Solid Carborane
Evgenii S Stoyanov1,2, Irina V Stoyanova1
1Vorozhtsov Institute of Organic Chemistry, Siberian Branch of Russian Academy of Sciences, Novosibirsk, 630090, Russia.
Abstract:
An experimental study on protonation of simple weakly basic molecules (L) by the strongest solid superacid, H(CHB11 F11 ), showed that basicity of SO2 is high enough (during attachment to the acidic H atoms at partial pressure of 1 atm) to break the bridged H-bonds of the polymeric acid and to form a mixture of solid mono- LH+ ⋅⋅⋅An- , and disolvates, L-H+ -L. With a decrease in the basicity of L=CO (via C), N2 O, and CO (via O), only proton monosolvates are formed, which approach L-H+ -An- species with convergence of the strengths of bridged H-bonds. The molecules with the weakest basicity, such as CO2 and weaker, when attached to the proton, cannot break the bridged H-bond of the polymeric superacid, and the interaction stops at stage of physical adsorption. It is shown here that under the conditions of acid monomerization, it is possible to protonate such weak bases as CO2 , N2 , and Xe.
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