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用于检测Pb2+离子的高选择性光学传感膜,含有杯[4]芳烃色离子载体。

Highly selective optical-sensing membranes, containing calix[4]arene chromoionophores, for Pb2+ ions.

作者信息

van der Veen N J, Rozniecka E, Woldering L A, Chudy M, Huskens J, van Veggel F C, Reinhoudt D N

机构信息

Department of Supramolecular Chemistry and Technology and MESA Research Institute, University of Twente, Enschede, The Netherlands.

出版信息

Chemistry. 2001 Nov 19;7(22):4878-86. doi: 10.1002/1521-3765(20011119)7:22<4878::aid-chem4878>3.0.co;2-8.

Abstract

Plasticized poly(vinyl chloride) (PVC) optode membranes containing novel calix[4]arene chromoionophores 1 or 2 and one equivalent of a lipophilic anion respond to Pb2+ ions with high selectivity over alkali, alkaline-earth, and other heavy metal ions. This selectivity stems from the combination of ligand specificity and a unique ion exchange scheme that employs both monovalent metal ions and protons as the exchanged ions. Complexation of Pb2+ ions inside the membrane is accompanied by deprotonation of the chromoionophores, which causes a bathochromic shift of the absorption maximum lambda(max). The response to Pb2+ ions is modulated by pH and alkali metal ions in a fashion that is consistent with the proposed ion-exchange mechanism. Of all of the other metal ions tested, only Cs+ and Ag+ produce a color change. However, these monovalent metal ions cause hypsochromic shifts of lambda(max) instead of the bathochromic shift caused by Pb2+, because the chromoionophores remain protonated upon complexation.

摘要

含有新型杯[4]芳烃色离子载体1或2以及一当量亲脂性阴离子的增塑聚氯乙烯(PVC)光极膜对Pb2+离子具有高选择性,对碱金属、碱土金属和其他重金属离子具有高选择性。这种选择性源于配体特异性和独特的离子交换机制的结合,该机制采用单价金属离子和质子作为交换离子。膜内Pb2+离子的络合伴随着色离子载体的去质子化,这导致吸收最大值λ(max)发生红移。对Pb2+离子的响应受pH值和碱金属离子的调节,其方式与所提出的离子交换机制一致。在所有测试的其他金属离子中,只有Cs+和Ag+会产生颜色变化。然而,这些单价金属离子会导致λ(max)发生蓝移,而不是由Pb2+引起的红移,因为色离子载体在络合时仍保持质子化状态。

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