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基于聚合物膜中铟(III)八乙基卟啉二聚体-单体平衡的光学氯化物传感器。

Optical chloride sensor based on dimer-monomer equilibrium of indium(III) octaethylporphyrin in polymeric film.

作者信息

Zhang Wei, Rozniecka Ewa, Malinowska Elzbieta, Parzuchowski Pawel, Meyerhoff Mark E

机构信息

Department of Chemistry, The University of Michigan, Ann Arbor 48109-1055, USA.

出版信息

Anal Chem. 2002 Sep 1;74(17):4548-57. doi: 10.1021/ac0202536.

Abstract

A novel transduction chemistry for preparing optical anion-selective polymeric films that respond reversibly and selectively to chloride ion activity is demonstrated. The chloride sensors are prepared by casting thin (5-10 microm) plasticized PVC films containing indium(III) octaethylporphyrin hydroxide, along with optimized levels of a lipophilic tetraphenylborate salt, onto glass slides. When bathed in low-pH buffered solutions void of chloride, the porphyrin species spontaneously forms a hydroxide ion-bridged dimer, with the added lipophilic borate species serving as the counteranion for this complex. The maximum for the Soret absorption band of this dimeric species is shifted to 390 nm, from 410 nm for the initial monomeric porphyrin. Increases in chloride ion levels in the bathing solution results in chloride extraction and ligation to the In(III) center, and concomitant breaking of the dimer into monomeric porphyrin species, yielding a decrease in absorbance at 390 nm and an increase in optical signal at 410 nm. Under optimized conditions, optical selectivity coefficients toward chloride over a wide range of other anions (NO3-, ClO4-, SCN-, SO4(2-), F-, Br-, H2PO4-) are measured to be < 10(-3). Of all anions tested, only salicylate yields a slightly greater response than chloride. This selectivity is shown to be adequate for reversible and accurate sensing of chloride levels in diluted serum samples.

摘要

展示了一种用于制备对氯离子活性具有可逆且选择性响应的光学阴离子选择性聚合物薄膜的新型转导化学方法。氯离子传感器是通过将含有氢氧化铟(III)八乙基卟啉以及优化水平的亲脂性四苯基硼酸盐的薄(5 - 10微米)增塑PVC薄膜浇铸到载玻片上制备而成。当置于不含氯离子的低pH缓冲溶液中时,卟啉物种会自发形成氢氧根离子桥连的二聚体,添加的亲脂性硼酸盐物种作为该配合物的抗衡阴离子。这种二聚体物种的Soret吸收带最大值从初始单体卟啉的410纳米移至390纳米。浴液中氯离子水平的增加导致氯离子萃取并与In(III)中心配位,同时二聚体分解为单体卟啉物种,导致390纳米处吸光度降低,410纳米处光信号增强。在优化条件下,测得对氯离子相对于多种其他阴离子(NO3-、ClO4-、SCN-、SO4(2-)、F-、Br-、H2PO4-)的光学选择性系数小于10(-3)。在所有测试的阴离子中,只有水杨酸酯的响应比氯离子略大。这种选择性被证明足以对稀释血清样品中的氯离子水平进行可逆且准确的传感。

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