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Sol-gel derived amperometric nitric oxide microsensor

机译:溶胶凝胶衍生的电流型一氧化氮微传感器

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An amperometric sol-gel derived nitric oxide microsensor is described. Several silicon-based xerogel membranes are evaluated to identify the optimum composition for maximizing NO permeability while providing sufficient selectivity for NO in the presence of common interfering species. Xerogel permeability and selectivity are further manipulated as a function of reaction/processing conditions. In addition, the effects of incorporating Nafion into the xerogel matrix on sensor performance and the stability of the ensuing xerogel/Nafion hybrid film are evaluated. The optimal permselective membrane is achieved by catalyzing polycondensation of the xerogel composed of methyltrimethoxysilane and (aminoethylaminomethyl)phenethyltrimethoxysilane and Nafion with NO gas. The resulting NO microsensor exhibits a sensitivity of 0.17 &PLUSMN; 0.02 pAM (from 25 to 800 nM, r = 0.9991), detection limit of 25 nM (S/N = 3), response time of 9 S (t(95%), a NO concentration change from 400 to 500 nM), selectivity (log K-NOj(amp)) of -5.8, <-6, <-6, and <-6 for j = nitrite, ascorbic acid, uric acid, and acetaminophen, and a lifetime of 8 d (82% of initial sensitivity without serious deterioration in selectivity).
机译:描述了由安培法溶胶-凝胶衍生的一氧化氮微传感器。对几种硅基干凝胶膜进行了评估,以鉴定出最佳的成分,以最大程度地提高NO的渗透性,同时在存在常见干扰物种的情况下为NO提供足够的选择性。干凝胶的渗透性和选择性还根据反应/工艺条件进行控制。另外,评估了将Nafion掺入干凝胶基质中对传感器性能以及随后的干凝胶/ Nafion杂化膜的稳定性的影响。通过用NO气体催化由甲基三甲氧基硅烷和(氨乙基氨基甲基)苯乙基三甲氧基硅烷组成的干凝胶的缩聚反应,可以获得最佳的选择性渗透膜。所得的NO微传感器的灵敏度为0.17&PLUSMN; 0.02 pA / nM(从25到800 nM,r = 0.9991),检测极限为25 nM(S / N = 3),响应时间为9 S(t(95%),NO浓度从400到500 nM ),对j =亚硝酸盐,抗坏血酸,尿酸和对乙酰氨基酚的选择性(log K-NOj(amp))为-5.8,&LT; -6,&LT; -6和&LT; -6 d(初始灵敏度的82%,选择性没有明显降低)。

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