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用于 pCO(2)测量的储层式毛细管光学微传感器的特性描述。

Characterization of a reservoir-type capillary optical microsensor for pCO(2) measurements.

机构信息

Faculty of Science and Arts, Department of Chemistry, University of Celal Bayar, 45140, Muradiye, Manisa, Turkey; Institute of Analytical Chemistry, Chemo- and Biosensors, University of Regensburg, D-93040 Regensburg, Germany.

出版信息

Talanta. 2003 Feb 6;59(2):261-7. doi: 10.1016/s0039-9140(02)00495-2.

Abstract

A reservoir type of capillary microsensor for pCO(2) measurements is presented. The sensor is based on the measurement of the fluorescence intensity of the anionic form of the pH indicator 1-hydroxy-3,6,8-pyrenetrisulfonate in the form of its ion pair with a quaternary ammonium base in an ethyl cellulose matrix. The glass capillary containing the reservoir sensor was prepared by immersing the tip of the optical fiber into the sensing agent very close to the sensor tip thus providing a very small volume for the sensing reaction. The purpose of the sensing approach is to regenerate the dye/buffer system by diffusion, which may be poisoned by interfering acids, or bleach by photolysis. The fresh cocktail from the reservoir takes the place of protonated form of the dye. The internal buffer system also makes the protonation-deprotonation equilibria reversible. The distal tip of the internal buffer containing reservoir is coated with a gas-permeable but ion-impermeable teflon membrane. The dynamic range for the detection of pCO(2) is between 1 and 20 hPa, which corresponds to the range of dissolved CO(2) in water. The response time is 15 s and the detection limit is 1 hPa of pCO(2.) The recovery performance of this sensor can be improved by means of mechanical adjustment of the sensor tip in a micrometric scale.

摘要

一种用于测量 pCO(2) 的储层式毛细微传感器被提出。该传感器基于在乙基纤维素基质中,以其与季铵盐的离子对形式测量 pH 指示剂 1-羟基-3,6,8-苝三磺酸的阴离子形式的荧光强度。含有储层传感器的玻璃毛细管是通过将光纤的尖端浸入靠近传感器尖端的感测剂中来制备的,从而为感测反应提供非常小的体积。感测方法的目的是通过扩散来再生染料/缓冲系统,该系统可能被干扰酸中毒,或者通过光解漂白。储层中的新鲜鸡尾酒取代了染料的质子化形式。内部缓冲系统还使质子化-去质子化平衡可逆。内部缓冲储层的远端尖端涂有透气但不透离子的特氟隆膜。检测 pCO(2) 的动态范围在 1 至 20 hPa 之间,这对应于水中溶解 CO(2) 的范围。响应时间为 15 秒,检测限为 1 hPa 的 pCO(2。)通过在微米尺度上机械调整传感器尖端,可以改善该传感器的恢复性能。

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