首页> 外文期刊>International journal of environmental analytical chemistry >Synthesis, characterisation and application of two new lariat crown ethers in construction of PVC membrane, coated wire and coated graphite electrodes: application to flow injection potentiometry
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Synthesis, characterisation and application of two new lariat crown ethers in construction of PVC membrane, coated wire and coated graphite electrodes: application to flow injection potentiometry

机译:两种新型套索状冠醚的合成,表征及在PVC膜,包覆丝和包覆石墨电极中的应用:在流动注射电位计中的应用

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摘要

Two lariat crown ethers, 7-(2-Hydroxy-5-methylbenzyl)-5,6,7,8,9,10-hexahydro-2H-benzo[b][l,4,7,10,13]pentadecine-3,11(4H,12H)dione, L1 and, (7-(5-tert-buthyl-2-hydroxybenzyl)-5,6,7,8,9,10-hexahydro-2H-benzo[b][ 1,4,7,10,13]dioatria-zacyclopentadecine-3,11 (4h, 12, H) dione, L2 was synthesised, characterised and used as active components for fabrication of PVC membrane electrode (PME), coated graphite electrode (CGE) and coated wire electrodes (CWE) for sensing Co2+ ion. Potassium tetrakis(p-cholorophenyl) borate(KTpClPB) and o-nitro-phenyloctyl ether (o-NPOE) were used as anion excluder and plasticiser, respectively, in a PVC matrix. The two lariat ethers were tested, LI has shown better electrode characteristics than the other. The electrodes exhibited linear Nernstian responses to Co2+ ion in the linear concentration range of 3.3 × 1(T6-1.9 × 1(T2M (for PME), 2.3 × l(T7-7.9 × 1(T2M (for CWE), and 5.0 × 10"8-1.2x 10"2M (for CGE). The CGE was used as a proper detection system in flow-injection potentiometry (FIP) with a linear Nernstian range of 2.3 × 1(T7-1.2 × 10~2M. Over a pH range of 3.2 to 8.0, the limit of detection for PME, CWE, CGE, and CGE-FIP systems were found to be 1.2 ×10-6, 2.5 × 10~7, 3.5 x10-8 and 1.0×l0-7M, respectively. The electrodes revealed fairly good discriminating ability towards Co2+ in comparison with a large number of alkali, alkaline earth, transition and heavy metal ions. The electrodes were found to be chemically inert, showing fast response time of <5 s, and could be used practically over a period of 1 month. CGE has also been used for measurement of Co2+ in binary mixtures.
机译:两个套索状冠醚7-(2-羟基-5-甲基苄基)-5,6,7,8,9,10-六氢-2H-苯并[b] [l,4,7,10,13] 3,11(4H,12H)二酮L1和(7-(5-叔丁基-2-羟基苄基)-5,6,7,8,9,10-六氢-2H-苯并[b] [1 ,4,7,10,13]二氮杂-zacyclopentadecine-3,11(4h,12,H)二酮,合成,表征并用作制造PVC膜电极(PME),涂覆石墨电极(CGE)的活性成分)和用于检测Co2 +离子的包覆丝电极(CWE),将四(对-氯苯基)硼酸钾(KTpClPB)和邻硝基-苯基辛基醚(o-NPOE)用作PVC基质中的阴离子排斥剂和增塑剂。测试了两种套索状醚,LI显示出比其他电极更好的电极特性,这些电极在3.3×1(T6-1.9×1(T2M(对于PME)为2.3)的线性浓度范围内表现出对Co2 +离子的线性能斯特响应。 ×l(T7-7.9×1(T2M(对于CWE),和5.0×10“ 8-1.2x 10” 2M(对于CGE)。CGE用作flow-i中的适当检测系统线性Nernstian范围为2.3×1(T7-1.2×10〜2M)的喷射电势(FIP)。在3.2至8.0的pH范围内,发现PME,CWE,CGE和CGE-FIP系统的检出限为1.2×10-6、2.5×10〜7、3.5 x10-8和1.0×10-分别为7M。与大量的碱金属,碱土金属,过渡金属和重金属离子相比,该电极显示出对Co2 +的良好区分能力。发现电极是化学惰性的,显示出<5 s的快速响应时间,实际上可以使用1个月。 CGE也已用于测量二元混合物中的Co2 +。

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