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首页> 外文期刊>Analytical chemistry >3,3 ',5,5 '-tetramethyl-N-(9-anthrylmethyl)benzidine: A dual-signaling fluorescent reagent for optical sensing of aliphatic aldehydes
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3,3 ',5,5 '-tetramethyl-N-(9-anthrylmethyl)benzidine: A dual-signaling fluorescent reagent for optical sensing of aliphatic aldehydes

机译:3,3',5,5'-四甲基-N-(9-蒽甲基)联苯胺:一种用于脂肪醛光学检测的双信号荧光试剂

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A new optical chemical sensor for continuous monitoring of aliphatic aldehydes has been proposed based on the reversible chemical reaction between a new sensing reagent, 3,3',5,5'-tetramethyl-N-(9-anthrylmethyl)benzidine (TMAB), and the analytes. TMAB, containing two receptors and two fluorescent reporters, can perform dual fluorescence responses corresponding to the reactions of hydrogen ion and carbonyl compound. When immobilized in a plasticized poly(vinyl chloride) membrane, TMAB extracts aliphatic aldehydes from aqueous solution into the bulk membrane phase and reacts with the analyte by forming a Schiff base. Since the extraction equilibrium and chemical reaction are accompanied by fluorescence increase of the sensing membrane, the chemical recognition process could be directly translated into an optical signal. At pH 3.20, the sensor exhibits a dynamic detection range from 0.017 to 4.2 mM n-butyraldehyde with a limit of detection of 0.003 mM. The forward response time (t(95)) of the sensor is 3-5 min, and the reverse response time is 5-7 min. The responses of the sensor toward different kinds of aldehydes and ketones depend on the lipophilicity and the reactivity of the analytes. Since the fluorescence enhancement of the sensing membrane at 296 nm/410 nm is only related to the formation of Schiff base, the measurement of aldehydes is independent of pH. [References: 51]
机译:基于一种新的传感试剂3,3',5,5'-四甲基-N-(9-蒽甲基)联苯胺(TMAB)之间的可逆化学反应,提出了一种用于连续监测脂肪族醛的新型光学化学传感器,和分析物。包含两个受体和两个荧光报告分子的TMAB可以执行对应于氢离子和羰基化合物反应的双重荧光反应。当将TMAB固定在增塑的聚氯乙烯膜中时,它将其水溶液中的脂族醛萃取到整个膜相中,并通过形成席夫碱来与分析物反应。由于提取平衡和化学反应伴随着传感膜的荧光增强,因此化学识别过程可以直接转化为光信号。在pH 3.20下,该传感器的动态检测范围为0.017至4.2 mM正丁醛,检测极限为0.003 mM。传感器的正向响应时间(t(95))为3-5分钟,反向响应时间为5-7分钟。传感器对不同种类的醛和酮的响应取决于亲脂性和分析物的反应性。由于传感膜在296 nm / 410 nm处的荧光增强仅与席夫碱的形成有关,因此醛的测定与pH无关。 [参考:51]

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