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Lithium Isotope Effects in Chemical Exchange with (2, 2, 1) Cryptand

机译:化学交换中的锂同位素效应与(2,2,1)穴状配体

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Equilibrium single-stage separation factors were determined for three lithium - (2,2,1) cryptand two-phase chemical exchange systems. The equilibrated phases consisted of an aqueous solution of a lithium salt and a chloroform solution of lithium cryptate salt complex. Lithium-6 concentrated in the organic phase in all cases, and the lithium isotope exchange rate with (2,2,1) cryptand was rapid. The separation factors were a = 1.026 ± 0.006 (LiBr exchange), a = 1.035 ± 0.003 (LiTFA), and a = 1.041 ± 0.006 (LiTFA + HTFA), where TFA represents trifluoroacetate. These values were compared with separation factors of other lithium chemical exchange systems. This work has shown that separation factors are influenced by the choice of chemical species and parameters. It has also demonstrated that significant lithium isotope effects can be obtained without a valence change of the metal exchanging between the aquo and cryptate complexes.

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