Kuswandi Bambang, Dam Henk H, Reinhoudt David N, Verboom Willem
Chemo & Biosensors Group, School of Pharmacy, University of Jember, Jember 68121, Indonesia.
Anal Chim Acta. 2007 May 22;591(2):208-13. doi: 10.1016/j.aca.2007.03.064. Epub 2007 Apr 4.
A disposable ion-selective optode for mercury based on trityl-picolinamide (T-Pico) as neutral ionophore was developed. The sensing layer consist of plasticised PVC incorporating T-Pico as a selective ionophore for Hg2+, ETH 5418 as a chromoionophore, and potassium tetrakis[3,5-bis(trifluoromethyl)phenyl] borate as lipophilic salt. The measurement principle is based on an ion-exchange mechanism. When the optode membrane is introduced into a water sample for 5 min, there is a colour change from red to blue, depending on the mercury concentration (pH 4.7), making it possible to use the absorbance at 665 nm as the analytical signal. The optode membrane response to Hg2+ was not fully reversible; however, it reveals a very good selectivity to many cations including alkali, alkaline earth, transition, and heavy metal ions. The detection limit for Hg2+ is 5.0x10(-7) M at pH 4.7. The response characteristics of the sensor including dynamic range, reproducibility, response time, and lifetime are discussed in detail. This sensor was used for the determination of mercury in environmental water samples with satisfactory recovery.
开发了一种基于三苯甲基吡啶酰胺(T-Pico)作为中性离子载体的一次性汞离子选择性光极。传感层由增塑PVC组成,其中包含作为Hg2+选择性离子载体的T-Pico、作为发色离子载体的ETH 5418以及作为亲脂性盐的四[3,5-双(三氟甲基)苯基]硼酸钾。测量原理基于离子交换机制。当将光极膜放入水样中5分钟时,根据汞浓度(pH 4.7)会发生从红色到蓝色的颜色变化,这使得可以将665 nm处的吸光度用作分析信号。光极膜对Hg2+的响应并非完全可逆;然而,它对许多阳离子,包括碱金属、碱土金属、过渡金属和重金属离子,都表现出非常好的选择性。在pH 4.7时,Hg2+的检测限为5.0×10(-7)M。详细讨论了该传感器的响应特性,包括动态范围、重现性、响应时间和寿命。该传感器用于测定环境水样中的汞,回收率令人满意。