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用于磷酸根阴离子高效跨硝基苯-水界面传输的氢键形成离子载体。

Hydrogen-bond forming ionophore for highly efficient transport of phosphate anions across the nitrobenzene-water interface.

作者信息

Nishizawa Seiichi, Yokobori Tomoyuki, Kato Ryo, Yoshimoto Keitaro, Kamaishi Tomoyuki, Teramae Norio

机构信息

Department of Chemistry, Graduate School of Science, Tohoku University, Aoba-ku, Sendai 980-8578, Japan.

出版信息

Analyst. 2003 Jun;128(6):663-9. doi: 10.1039/b301141k.

Abstract

Thiourea-based hydrogen-bond forming ionophore 2, alpha,alpha'-bis(N'-p-nitrophenylthioureylene)-m-xylene, is synthesized and investigated by using ion transfer polarography for the facilitated transfers of H2PO4-, HPO42- and Cl- across the nitrobenzene-water interface. Bis-thiourea 2 has a significant ability to assist H2PO4- transfer across the interface whereas its counterpart, N-(p-nitrophenyl)-N'-propylthiourea (ionophore 3), cannot facilitate the transfer of this hydrophilic anion. The H2PO4- transfer assisted by 2 is based on the formation of a 2:1 complex between H2PO4- and ionophore, and the transfer reaction is more stable by over -12 kJ mol(-1) than the case of 3. The stabilization of the H2PO4- transfer for 2 is even stronger by -11 kJ mol(-1) than that for bis-thiourea 1, 2,7-di-t-butyl-4,5-bis(N'-butylthioureylene)-9,9-dimethylxanthene, which forms a 1:1 complex through the formation of four hydrogen bonds. Bis-thiourea 2 is also able to facilitate transfers of HPO42- and Cl- by the formation of 1:1 complex. As compared to bis-thiourea 1, HPO42- transfer by 2 is significantly stabilized by -27 to -31 kJ mol(-1) while the stabilization of the Cl- transfer is relatively moderate (-6.1 kJ mol(-1)). These binding properties of bis-thiourea 2 are discussed for the design of phosphate-selective ionophores for use in two-phase distribution systems such as ion-selective electrodes.

摘要

合成了基于硫脲的氢键形成离子载体2,即α,α'-双(N'-对硝基苯硫脲撑基)-间二甲苯,并采用离子转移极谱法研究了其促进H2PO4-、HPO42-和Cl-跨硝基苯-水界面的转移情况。双硫脲2具有显著的协助H2PO4-跨界面转移的能力,而其类似物N-(对硝基苯基)-N'-丙基硫脲(离子载体3)则不能促进这种亲水性阴离子的转移。2协助的H2PO4-转移基于H2PO4-与离子载体之间形成2:1的配合物,且该转移反应比3的情况更稳定,稳定程度超过-12 kJ·mol-1。2对H2PO4-转移的稳定作用甚至比双硫脲1(2,7-二叔丁基-4,5-双(N'-丁基硫脲撑基)-9,9-二甲基呫吨)更强,后者通过形成四个氢键形成1:1的配合物。双硫脲2还能够通过形成1:1的配合物促进HPO42-和Cl-的转移。与双硫脲1相比,2促进的HPO42-转移显著稳定,稳定程度为-27至-31 kJ·mol-1,而Cl-转移的稳定程度相对适中(-6.1 kJ·mol-1)。讨论了双硫脲2的这些结合特性,以用于设计用于两相分配系统(如离子选择电极)的磷酸盐选择性离子载体。

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