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Chemical and Biological Sensing with a Fiber Optic Surface Plasmon Resonance Device.

机译:光纤表面等离子体共振装置的化学和生物传感。

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摘要

Fiber biosensors have emerged as an alternative to other optical sensor platforms which utilize bulkier optical elements. Sensors manufactured using optical fiber offer considerable advantages over traditional platforms, such as simple manufacturing process, small size and possibility for in situ and remote measurements. The possibility to manufacture a compact sensor with very few optical elements and package it into a portable hand-held device makes it particularly useful in many biomedical applications. Such applications generate a growing demand for an improved understanding of how fiber sensors function as well as for sensor optimization techniques so later these devices can suit the needs of the applications they are developed for.;Research presented in this thesis is focused on a development of a plasmonic fiber biosensor and its application towards biochemical sensing. The fiber sensor used in this study integrates plasmonics with tilted Bragg grating technology, creating a versatile sensing solution. Plasmonics alone is an established phenomenon that is widely employed in many sensing applications. The Bragg grating is also a well-researched optical component that has been extensively applied in telecommunication. By combining both plasmonics and Bragg gratings, it is possible to design a compact and very sensitive chemical sensor. The presented work focuses on the characterization and optimization of the fiber sensor so later it could be applied in biochemical sensing. It also explores several applications including real-time monitoring of polymer adsorption, detection of thrombin and cellular sensing. All applications are focused on studying processes that are very different in their nature and thus the various strengths of the developed sensing platform were leveraged to suit the requirements of these applications.
机译:光纤生物传感器已经成为使用体积较大的光学元件的其他光学传感器平台的替代产品。与传统平台相比,使用光纤制造的传感器具有明显的优势,例如制造过程简单,尺寸小以及可进行原位和远程测量。制造具有很少的光学元件的紧凑型传感器并将其包装到便携式手持设备中的可能性使其在许多生物医学应用中特别有用。此类应用对提高对光纤传感器的功能以及传感器优化技术的了解的需求不断增长,因此,这些设备随后可以满足其开发应用的需求。等离子体纤维生物传感器及其在生化传感中的应用。本研究中使用的光纤传感器将等离子与倾斜的布拉格光栅技术集成在一起,从而创建了一种多功能的传感解决方案。单是等离子现象是一种已建立的现象,已广泛应用于许多传感应用中。布拉格光栅也是经过广泛研究的光学组件,已广泛应用于电信领域。通过结合等离子体激元光栅和布拉格光栅,可以设计出紧凑且非常灵敏的化学传感器。提出的工作集中于光纤传感器的特性和优化,因此以后可以应用于生化传感。它还探讨了几种应用,包括聚合物吸附的实时监控,凝血酶的检测和细胞传感。所有应用程序都专注于研究本质上截然不同的过程,因此,已开发的传感平台的各种优势都可以满足这些应用程序的需求。

著录项

  • 作者

    Shevchenko, Yanina.;

  • 作者单位

    Carleton University (Canada).;

  • 授予单位 Carleton University (Canada).;
  • 学科 Chemistry Physical.;Physics Optics.;Physics Quantum.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 148 p.
  • 总页数 148
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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