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基于铀酰水杨醛离子载体的磷酸盐选择性荧光传感微球。

Phosphate-selective fluorescent sensing microspheres based on uranyl salophene ionophores.

作者信息

Wygladacz Katarzyna, Qin Yu, Wroblewski Wojciech, Bakker Eric

机构信息

Department of Chemistry, Purdue University, West Lafayette, IN 47907, USA.

出版信息

Anal Chim Acta. 2008 Apr 28;614(1):77-84. doi: 10.1016/j.aca.2008.02.069. Epub 2008 Mar 8.

Abstract

Optical dihydrogen phosphate-selective sensors that function on the basis of bulk optode principles and are based on two different uranyl salophene ionophores are reported here for the first time. The influence of the optode composition and measuring conditions such as sample pH on the optode response are characterized, along with sensor selectivity and long-term stability. Three plasticizers of different polarity are considered for optode fabrication: bis(2-ethylhexyl)sebacate (DOS), dodecyl 2-nitrophenyl ether (o-NPDDE), o-nitrophenyloctylether (o-NPOE). The compounds 9-(diethylamino)-5-(octadecanoylimino)-5H-benzo[a]phenoxazine (ETH 5294, chromoionophore I) and 9-(diethylamino)-5-[(2-octyldecyl)imino]benzo[a]phenoxazine (ETH 5350, chromoionophore III) are used as H(+)-selective fluoroionophores that also act as reference ionophores. The resulting optode-based sensors are compared with their ion-selective electrode (ISE) counterparts, and it is revealed that optodes are better suited for operation at physiological pH. The best optode performance was found for the two component optode sensors doped with ETH 5350 and phosphate ionophore(I). The linear range of these sensor was loga=-6.0 to -2.6. Dihydrogen phosphate-selective optode sensors of optimized composition are fabricated in microsphere format and preliminary measurements in diluted sheep blood samples are presented.

摘要

本文首次报道了基于整体光极原理、基于两种不同的铀酰水杨醛离子载体的光学磷酸二氢根选择性传感器。对光极组成和测量条件(如样品pH值)对光极响应的影响进行了表征,同时还研究了传感器的选择性和长期稳定性。在光极制备中考虑了三种不同极性的增塑剂:癸二酸二(2-乙基己基)酯(DOS)、十二烷基2-硝基苯基醚(o-NPDDE)、邻硝基苯基辛基醚(o-NPOE)。化合物9-(二乙氨基)-5-(十八烷酰亚氨基)-5H-苯并[a]吩恶嗪(ETH 5294,发色团离子载体I)和9-(二乙氨基)-5-[(2-辛基癸基)亚氨基]苯并[a]吩恶嗪(ETH 5350,发色团离子载体III)用作H(+)选择性氟离子载体,同时也作为参比离子载体。将所得基于光极的传感器与其离子选择性电极(ISE)对应物进行了比较,结果表明光极更适合在生理pH值下运行。发现掺杂ETH 5350和磷酸根离子载体(I)的两组分光极传感器具有最佳的光极性能。这些传感器的线性范围为loga=-6.0至-2.6。制备了优化组成的磷酸二氢根选择性光极传感器微球形式,并给出了在稀释羊血样品中的初步测量结果。

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