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首页> 外文期刊>Analytical chemistry >DEVELOPMENT OF CHEMICAL SENSING PLATFORMS BASED ON SOL-GEL-DERIVED THIN FILMS - ORIGIN OF FILM AGE VS PERFORMANCE TRADE OFFS
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DEVELOPMENT OF CHEMICAL SENSING PLATFORMS BASED ON SOL-GEL-DERIVED THIN FILMS - ORIGIN OF FILM AGE VS PERFORMANCE TRADE OFFS

机译:基于溶胶凝胶薄膜的化学传感平台的开发-胶片年龄与性能折衷的起源。

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We present a detailed investigation on the evolution and performance of sol-gel-derived thin films as used for chemical sensing platforms. In order to develop an understanding of how the sol-gel matrix affects the entrapped recognition chemistry and determine how and whether the analyte interacts with the sensing element, we have chosen to investigate a simple model probe-analyte system. Specifically, we use static and time-resolved fluorescence spectroscopy to report on the photophysics and O-2 quenching of pyrene entrapped within sol-gel-derived thin films as a function of precursor form, processing conditions, and storage time. The results of this year-long study show that the analytical response of the pyrene-doped film/sensor to O-2 decreases as a function of storage time. This response decrease results from two Separate factors. First, the average bimolecular quenching constant decreases from (1.3-1.4) x 10(7) to (0.4-0.6) x 10(7) M(-1) s(-1) for fresh and 300-day-old films, respectively. Second, the average pyrene excited-state fluorescence lifetime, in the absence of quencher, decreases as a function of storage time. The simultaneous decrease in bimolecular quenching constant and average fluorophore lifetime are directly related to the change in analytical signal (i.e., response). These results demonstrate that single-component sol-gel-derived sensing platforms are unstable over time. However, we find that most of the observed instability occurs during the first month following film preparation.
机译:我们提出了用于化学传感平台的溶胶-凝胶衍生薄膜的演变和性能的详细研究。为了加深对溶胶-凝胶基质如何影响所捕获的识别化学的了解,并确定分析物如何以及是否与传感元件相互作用,我们选择研究一种简单的模型探针-分析物系统。具体来说,我们使用静态和时间分辨荧光光谱技术来报告溶胶-凝胶薄膜中截留的pyr的光物理性质和O-2猝灭与前体形式,加工条件和储存时间的关系。这项为期一年的研究结果表明,pyr掺杂的薄膜/传感器对O-2的分析响应随存储时间的延长而降低。该响应降低是由两个单独的因素导致的。首先,对于新鲜和300天的薄膜,平均双分子淬灭常数从(1.3-1.4)x 10(7)降至(0.4-0.6)x 10(7)M(-1)s(-1),分别。第二,在没有淬灭剂的情况下,pyr的平均激发态荧光寿命随储存时间的延长而降低。双分子猝灭常数和平均荧光团寿命的同时降低与分析信号(即响应)的变化直接相关。这些结果表明,单组分溶胶凝胶衍生的传感平台随时间推移是不稳定的。但是,我们发现大多数观察到的不稳定性发生在薄膜制备后的第一个月。

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