Abstract

Triple-ion and quadrupole formation in addition to ion-pair formation from lithium and tributylammonium thiocyanates has been examined by means of conductometry, in several protophobic aprotic solvents: nitrobenzene, benzonitrile, acetonitrile, nitromethane and propylene carbonate. The formation constants of the ion pair (M++ SCN–⇌ MSCN, Ka1; where M+= Li+ or n-Bu3NH+), symmetrical triple ions [2M++ SCN–⇌(M+)2SCN–, Ka2; M++ 2 SCN–⇌ M+(SCN–)2, Ka3; Ka2=Ka3] and the quadrupole [(M+)2SCN–+ SCN–⇌(MSCN)2, Ka4; M++ M+(SCN–)2⇌(MSCN)2, Ka5=(Ka5) were evaluated after correction of the activity coefficients of the ions. Effects of the ratio ΛT/Λ0 on the conductivities were examined, where ΛT and Λ0 are the molar conductivities at infinite dilution of the triple ions and simple ions, respectively. A remarkable enhancement of the triple-ion formation from LiSCN was observed in nitromethane: Ka′1= 5.5 × 104, Ka′2=Ka′3= 8.0 × 107 and ΛT/Λ0= 0.4 (the effects of the ionic atmosphere and viscosity changes are taken into account). At higher salt concentrations, quadrupole formation was observed, which caused the disappearance of the minimum in the Λ–C1/2 curve. In contrast, the degree of triple-ion formation from n-Bu3NHSCN was much smaller than that from LiSCN and quadrupole formation was not observed in all the solvents. The formation of (Li+)2SCN– was suggested by spectrophotometry. Both the donor and acceptor numbers of the solvents were concerned with the formation of higher ion aggregates.

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