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首页> 外文期刊>Electrochimica Acta >Voltammetric and electrospray ionization mass spectrometric studies of the facilitated ion transfer of sodium and potassium cations by naphtho-15-crown-5 across the water|1,2-dichloroethane interface
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Voltammetric and electrospray ionization mass spectrometric studies of the facilitated ion transfer of sodium and potassium cations by naphtho-15-crown-5 across the water|1,2-dichloroethane interface

机译:萘15冠5穿过水| 1,2-二氯乙烷界面促进钠和钾阳离子离子迁移的伏安和电喷雾电离质谱研究

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摘要

The transfer Na{sup}+ and K{sup}+ cations, facilitated by naphtho-15-crown-5, N15C5, from an aqueous phase to a l,2dichloroethane (DCE) phase were studied by cyclic voltammetry under two following conditions, the metal ion concentration in theaqueous phase was much higher than the N15C5 concentration in the organic phase (N15C5 diffusion controlled process) and the N15C5 concentration was much higher than metal ion concentration in the aqueous phase (metal ion diffusion controlled process). In both conditions, diffusion controlled waves were observed and the diffusion coefficients of Na{sup}+ and K{sup}+ in the aqueous phase and that of N15C5 in the organic phase were evaluated to be 1.03×10{sup}-5, 1.28×10{sup}-5 and 5.4×10{sub}-6 cm{sup}2s{sup}-1, respectively. The stoichiometries of the complexes were determined to be 1:1 (cation to ligand) for Na{sup}+-N15C5 and 1:2 for K{sup}+-N15C5. Under the both conditions, the stability constants, β{sup}1, of the Na(N15C5) {sup}+ complex, in theorganic phase were evaluated to be 3.9×l0{sup}8 M{sup}-2 and 2.3×l0{sup}5 M{sup}-1 because two reference standard potentials were reported elsewhere. The β{sub}2 values of the K(N15C5) {sub}2{sup}+ complex were 2.5×10{sup}11 M{sup}-2 and1.2×10{sup}11 M{sup}-2 under the conditions of N15C5 and K{sup}+ diffusion controlled processes, respectively. The stoichiometries of the complexes were also studied by electrospray ionization mass spectrometry. The complexes of Na(N15C5){sup}+ andNa(N15C5){sub}2{sup}+ were observed and their stabilities were almost similar to each other in the gas phase. On the other hand, the K(N15C5) {sup}+ complex was very unstable and the K(N15C5) {sub}2{sup}+ complex was only observed in the gas phase. Thisresult is very consistent with the electrochemical results. Comparing the intensities in the ESI-MS spectra, the K(N15C5){sub}2{sup}+ was more stable than Na(N15C5){sub}2{sup}+ in the gas phase.
机译:Naphtho-15-crown-5(N15C5)促进了Na {sup} +和K {sup} +阳离子从水相到Al,2-二氯乙烷(DCE)相的转移,在以下两个条件下进行了循环伏安法研究:水相中的金属离子浓度远高于有机相中的N15C5浓度(N15C5扩散控制过程),N15C5浓度远高于水相中的金属离子浓度(金属离子扩散控制过程)。在两种情况下,均观察到扩散控制波,Na {sup} +和K {sup} +在水相中的扩散系数以及N15C5在有机相中的扩散系数经评估为1.03×10 {sup} -5,分别为1.28×10 {sup} -5和5.4×10 {sub} -6 cm {sup} 2s {sup} -1。对于Na {sup} +-N15C5,测定复合物的化学计量比为1:1(对配体阳离子),而对于K {sup} +-N15C5,则为1:2。在这两种条件下,有机相中Na(N15C5){sup} +配合物的稳定常数β{sup} 1分别为3.9×10 {sup} 8 M {sup} -2和2.3×。 10 {sup} 5 M {sup} -1,因为在其他地方报告了两个参考标准电位。 K(N15C5){sub} 2 {sup} +复合物的β{sub} 2值为2.5×10 {sup} 11 M {sup} -2和1.2×10 {sup} 11 M {sup}-分别在N15C5和K {sup} +扩散控制过程的条件下得到图2的结果。还通过电喷雾电离质谱法研究了配合物的化学计量。观察到Na(N15C5){sup} +和Na(N15C5){sub} 2 {sup} +的配合物,它们在气相中的稳定性几乎相似。另一方面,K(N15C5){sup} +络合物非常不稳定,并且仅在气相中观察到K(N15C5){sub} 2 {sup} +络合物。该结果与电化学结果非常一致。比较ESI-MS光谱中的强度,在气相中K(N15C5){sub} 2 {sup} +比Na(N15C5){sub} 2 {sup} +更稳定。

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