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Portable surface-enhanced Raman spectroscopy for insecticidedetection using silver nanorod film fabricated by magnetron sputtering

机译:采用磁控溅射制造的银纳米棒膜的便携式表面增强拉曼光谱

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In order to increase agricultural productivity, several countries heavily rely on deadly insecticides, known to be toxic to most living organisms and thus significantly affect the food chain. The most obvious impact is to human beings who come into contact, or even consume, pesticide-exposed crops. This work hence focused on an alternative method for insecticide detection at trace concentration under field tests. We proposed a compact Raman spectroscopy system, which consisted of a portable Raman spectroscope, and a surface-enhanced Raman scattering (SERS) substrate, developed for the purpose of such application, on a chip. For the selected portable Raman spectroscope, a laser diode of 785 nm for excitation and a thermoelectric-cooled CCD spectrometer for detection were used. The affordable SERS substrates, with a structure of distributed silver nanorods, were however fabricated by a low-energy magnetron sputtering system. Based on an oblique-angle deposition technique, several deposition parameters, which include a deposition angle, an operating pressure and a substrate rotation, were investigated for their immediate effects on the formation of the nanorods. Trace concentration of organophosphorous chemical agents, including methyl parathion, chlorpyrifos, and malathion, adsorbed on the fabricated SERS substrates were analyzed. The obtained results indicated a sensitive detection for the trace organic analyses of the toxic chemical agents from the purposed portable SERS system.
机译:为了提高农业生产力,若干国家严重依赖致命杀虫剂,已知对大多数生物有毒,从而显着影响食物链。最明显的影响是对人类接触,甚至消费的农药暴露作物。因此,该工作侧重于在现场试验下在痕量浓度下进行杀虫剂检测的替代方法。我们提出了一种紧凑的拉曼光谱系统,其由便携式拉曼分光镜和表面增强的拉曼散射(SERS)衬底组成,用于这种应用,在芯片上开发。对于所选择的便携式拉曼分光镜,使用785nm的激光二极管和用于检测的热电冷却CCD光谱仪。然而,具有分布式银纳米棒的结构的实惠的SERS基材由低能量磁控溅射系统制造。基于倾斜角沉积技术,研究了几个沉积参数,其包括沉积角,操作压力和基板旋转,以便立即对纳米棒的形成产生影响。分析了在制造的SERS基材上吸附在制造的SERS基材上的有机磷化学试剂的痕量浓度的有机磷化学试剂,包括甲基脱硫磷和丙吡啶酚磷。所获得的结果表明,毒性化学试剂来自被饰有饰品的便携式SERS系统的痕量有机分析的敏感性检测。

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