A novel smectite-polymer nanocomposite (SPN) microstrip sensor for rapid quantitative detection of aflatoxins

He Hu, Jun Zou, Youjun Deng
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Abstract

This paper reports the development of a novel smectite-polymer nanocomposite (SPN) microstrip sensor for both rapid quantification and long-term monitoring of aflatoxins. The smectite was modified with Ba2002B; cation exchange to improve its aflatoxin adsorption. SPN thin-films were synthesized on silicon substrates via layer-by-layer self-assembly. SPN microstrip arrays were patterned on glass substrates using stencil masks and enclosed in a microfluidic channel. This reduces the diffusion length and the adsorption time of aflatoxins, thereby resulting in fast response time (<; 10 min). A simple fluorometric quantification of aflatoxin concentration based on incident intensity modulation was developed to eliminate the need of a sophisticated fluorometer. A low detection limit of 6.09 ppb and a wide linear range of 5~80 ppb for aflatoxin B1 have been achieved.
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一种用于黄曲霉毒素快速定量检测的新型蒙脱石-聚合物纳米复合材料微带传感器
本文报道了一种用于黄曲霉毒素快速定量和长期监测的新型蒙脱石-聚合物纳米复合材料(SPN)微带传感器的研制。用Ba2002B对蒙脱石进行改性;阳离子交换提高其对黄曲霉毒素的吸附。采用逐层自组装的方法在硅衬底上合成了SPN薄膜。SPN微带阵列采用模板掩模在玻璃基板上进行图图化,并封闭在微流控通道中。这减少了黄曲霉毒素的扩散长度和吸附时间,从而获得快速的响应时间(<;10分钟)。基于入射强度调制的黄曲霉毒素浓度的简单荧光定量被开发,以消除需要一个复杂的荧光计。黄曲霉毒素B1的检出限低至6.09 ppb,线性范围宽至5~80 ppb。
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