Scripps Institution of Oceanography, University of California San Diego , 9500 Gilman Drive, La Jolla, California 92093, United States.
Anal Chem. 2014 Nov 18;86(22):11189-95. doi: 10.1021/ac502631z. Epub 2014 Oct 31.
Characterization of several potentiometric cells without a liquid junction has been carried out in universal buffer, aqueous HCl, and artificial seawater media. The electrodes studied include Ion Sensitive Field Effect Transistor (ISFET) pH electrodes, and Chloride-Ion Selective Electrodes (Cl-ISE) directly exposed to the solution. These electrodes were compared directly to the conventional hydrogen electrode and silver-silver chloride electrode in order to report the degree to which they obey ideal Nernstian laws. These data provide a foundation for operating the ISFET|Cl-ISE pair in seawater as a pH sensor. In order to obtain the highest quality pH measurements from this sensor, its response to changes in pH and salinity must be properly characterized. Our results indicate near-ideal Nernstian response for both electrodes over a wide range of pH (2-12) and Cl(-) molality (0.01-1). We conclude that the error due to sub-Nernstian response of the cell ISFET|seawater|Cl-ISE over the range of seawater pH and salinity is negligible (<0.0001 pH). The cross sensitivity of the Cl-ISE to Br(-) does not seem to be a significant source of error (<0.003 pH) in seawater media in the salinity range 20-35.
在通用缓冲液、盐酸水溶液和人工海水中对几种无液接界的电位型电池进行了特性描述。所研究的电极包括离子敏场效应晶体管(ISFET)pH 电极和直接暴露于溶液中的氯离子选择性电极(Cl-ISE)。为了报告它们在多大程度上符合理想的能斯特定律,将这些电极与传统的氢电极和银-氯化银电极进行了直接比较。这些数据为在海水中操作 ISFET|Cl-ISE 对作为 pH 传感器提供了基础。为了从该传感器获得最高质量的 pH 测量值,必须正确表征其对 pH 和盐度变化的响应。我们的结果表明,两种电极在很宽的 pH(2-12)和 Cl(-)摩尔浓度(0.01-1)范围内均表现出近乎理想的能斯特响应。我们得出结论,在海水 pH 和盐度范围内,由于电池 ISFET|海水|Cl-ISE 的亚能斯特响应引起的误差可以忽略不计(<0.0001 pH)。在 20-35 的盐度范围内,Cl-ISE 对 Br(-)的交叉灵敏度似乎不是海水介质中误差的主要来源(<0.003 pH)。