Surface plasmon resonance-based fiber optic sensors: Principle, probe designs, and some applications

被引:349
作者
Gupta, B.D. [1 ]
Verma, R.K. [1 ]
机构
[1] Department of Physics, Indian Institute of Technology Delhi
关键词
D O I
10.1155/2009/979761
中图分类号
学科分类号
摘要
Surface plasmon resonance technique in collaboration with optical fiber technology has brought tremendous advancements in sensing of various physical, chemical, and biochemical parameters. In this review article, we present the principle of SPR technique for sensing and various designs of the fiber optic SPR probe reported for the enhancement of the sensitivity of the sensor. In addition, we present few examples of the surface plasmon resonance- (SPR-) based fiber optic sensors. The present review may provide researchers valuable information regarding fiber optic SPR sensors and encourage them to take this area for further research and development. © 2009 B. D. Gupta and R. K. Verma.
引用
收藏
相关论文
共 49 条
[1]  
Liedberg B., Nylander C., Lunstrm I., Surface plasmon resonance for gas detection and biosensing, Sensors and Actuators, 4, pp. 299-304, (1983)
[2]  
Van Gent J., Lambeck P.V., Kreuwel H.J.M., Optimization of a chemooptical surface plasmon resonance based sensor, Applied Optics, 29, pp. 2843-2849, (1990)
[3]  
Stenberg E., Persson B., Roos H., Urbaniczky C., Quantitative determination of surface concentration of protein with surface plasmon resonance using radiolabeled proteins, Journal of Colloid and Interface Science, 143, 2, pp. 513-526, (1991)
[4]  
Dougherty G., A compact optoelectronic instrument with a disposable sensor based on surface plasmon resonance, Measurement Science and Technology, 4, 6, pp. 697-699, (1993)
[5]  
Ekgasit S., Tangcharoenbumrungsuk A., Yu F., Baba A., Knoll W., Resonance shifts in SPR curves of nonabsorbing, weakly absorbing, and strongly absorbing dielectrics, Sensors and Actuators B, 105, 2, pp. 532-541, (2005)
[6]  
Chyou J.-J., Chu C.-S., Chien F.-C., Precise determination of the dielectric constant and thickness of a nanolayer by use of surface plasmon resonance sensing and multiexperiment linear data analysis, Applied Optics, 45, 23, pp. 6038-6044, (2006)
[7]  
Chiang H.P., Chen C.-W., Wu J.J., Effects of temperature on the surface plasmon resonance at a metal-semiconductor interface, Thin Solid Films, 515, 17, pp. 6953-6961, (2007)
[8]  
Le Person J., Colas F., Compere C., Surface plasmon resonance in chalcogenide glass-based optical system, Sensors and Actuators B, 130, 2, pp. 771-776, (2008)
[9]  
Feng W., Shenye L., Xiaoshi P., Zhuangqi C., Yongkun D., Reflective-type configuration for monitoring the photobleaching procedure based on surface plasmon resonance, Journal of Optics A, 10, 9, (2008)
[10]  
Jorgenson R.C., Yee S.S., A fiber-optic chemical sensor based on surface plasmon resonance, Sensors and Actuators B, 12, 3, pp. 213-220, (1993)