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IT09. Nanoscale coatings on optical fibers for sensitivity and specificity enhancement

机译:IT09。光纤上的纳米级涂层,可提高灵敏度和特异性

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Summary form only given. An optical sensor is probably the most engaging areas of research at present, given the number of publications that come out in this area. Starting with simple optical fiber sensors for physical parameters such as temperature, strain, etc. to the more complex biosensing strategies, optical sensors promise immunity to electrical interferences, ease of manufacturing and easy acceptance from the user community. Although various complex bio/chemical sensors have been developed riding on the wave of nanotechnology, there are simple strategies to exploit nanoscale phenomena to develop powerful bio/chemical sensors. In the Biosensors and Bioinstrumentation (BSBI) lab of IIT Bombay, research is conducted on using modulations of the evanescent field on optical fibers or waveguides for chemical and biological sensing. This talk will concentrate on sensors developed using multimode optical fibers for detection of pathogens in water, proteins in serum and even trace explosive vapors in air. The sensitivity of these sensors canbeen improved by incorporating nanostructures (e.g. gold nanospheres, dendrimers, etc.) and polymers on the surface of the fibers.
机译:仅提供摘要表格。考虑到该领域的出版物数量,光学传感器可能是当前最吸引人的研究领域。从简单的用于物理参数(例如温度,应变等)的光纤传感器开始,到更复杂的生物传感策略,光学传感器有望抵抗电干扰,易于制造并易于被用户接受。尽管已经随着纳米技术的发展而开发了各种复杂的生物/化学传感器,但仍有一些简单的策略可以利用纳米级现象来开发功能强大的生物/化学传感器。在IIT孟买的生物传感器和生物仪器(BSBI)实验室中,进行了有关使用光纤或波导上的van逝场调制进行化学和生物传感的研究。演讲将集中于使用多模光纤开发的传感器,该传感器可检测水中的病原体,血清中的蛋白质,甚至是空气中的痕量爆炸性蒸气。这些传感器的灵敏度可以通过在纤维表面掺入纳米结构(例如金纳米球,树枝状聚合物等)和聚合物来提高。

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