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Anion selective optodes: development of a fluorescent fiber optic sensor for the determination of nitrite activity

机译:阴离子选择性光电二极管:开发用于确定亚硝酸盐活性的荧光光纤传感器

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Abstract: The response of state of the art anion optodes often cannot be described in a thermodynamically exact manner because the ionic strength within the membrane phase of such optodes changes during the course of a titration. Incorporating lipophilic charge sites in the anion optode membranes provides a constant ionic strength in the membrane phase, the ability to measure anion activities, and a more thermodynamically describable system. This configuration has been used to create a micrometer-sized nitrite-selective optode. Recent elucidation of the many biological roles of nitric oxide (NO) has spurred interest in sensitive and selective detection of this molecule. In biological systems NO is converted to NO$-2$/$+$MIN$/ within 30 sec and the biological concentration of NO$-2$/$+$MIN$/ is normally on the micromolar level. The optode we have prepared contains a selective vitamin B$-12$/ derivative ionophore, a fluorescent chromoionophore (ETH 2439 or ETH 5350), and lipophilic charge sites. These components are entrapped in a highly plasticized PVC matrix which is placed on the distal end of the fiber. Sensor characteristics such as limit of detection and reversibility are presented. !16
机译:摘要:不能用热力学精确的方式描述最先进的阴离子光电二极管的响应,因为在滴定过程中,这种光电二极管膜相内的离子强度会发生变化。在阴离子光电离膜中掺入亲脂性电荷位点可在膜相中提供恒定的离子强度,测量阴离子活性的能力以及更热力学可描述的系统。此配置已用于创建微米尺寸的亚硝酸盐选择性光电二极管。一氧化氮(NO)的许多生物学作用的最新阐明激发了对该分子的灵敏和选择性检测的兴趣。在生物系统中,NO在30秒内转换为NO $ -2 $ / $ + MINMIN /,并且NO $ -2 $ / $ + MINMIN /的生物浓度通常处于微摩尔水平。我们准备的光电二极管包含选择性的维生素B $ -12 $ /衍生物离子载体,荧光发色团(ETH 2439或ETH 5350)和亲脂性电荷位点。这些成分被截留在高度增塑的PVC基体中,该基体位于纤维的远端。介绍了传感器的特性,例如检测极限和可逆性。 !16

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