Photonic Sensors, Volume. 15, Issue 1, 250119(2025)

MSM Fiber Optic Surface Plasmon Resonance Glucose Sensor Based on SnO2 Nanofibers/Au Structure

SONG Hongyu... WU Haoyu, XU Yanpei, MA Shaowei, SUN Meng and WANG Qi |Show fewer author(s)
References(52)

[1] [1] M. Ramakrishnan, G. Rajan, Y. Semenova, and G. Farrell, “Overview of fiber optic sensor technologies for strain/temperature sensing applications in composite materials,”Sensors, 2016, 16(1): 99.

[2] [2] L. Wang, Y. J. Wang, S. Song, and F. Li, “Overview of fibre optic sensing technology in the field of physical ocean observation,”Frontiers in Physics, 2021, 9:745487.

[3] [3] F. Berghmans, T. Geernaert, S. Sulejmani, H. Thienpont, G. Van Steenberge, Van Hoe,et al., “Photonic crystal fiber Bragg grating based sensors: opportunities for applications in healthcare,” inAsia Communications and Photonics Conference and Exhibition, Shanghai, China, 2011, pp. 831102.

[4] [4] H. Wang, J. K. Guo, H. Mo, X. Zhou, and Y. Han, “Fiber optic sensing technology and vision sensing technology for structural health monitoring,”Sensors, 2023, 23(9): 4334.

[5] [5] S. Hu and M. J. Zuo, “Application of distribution fiber optic sensing technology in submarine optical cable safety monitoring,” inOptics Frontiers Online 2020: Distributed Optical Fiber Sensing Technology and Applications, Wuhan, China, 2020, pp. 94–96.

[6] [6] A. H. Hartog, M. Belal, and M. A. Clare, “Advances in distributed fiber-optic sensing for monitoring marine infrastructure, measuring the deep ocean, and quantifying the risks posed by seafloor hazards,”Marine Technology Society Journal, 2018, 52(5), 58–73.

[7] [7] I. McKenzie, S. Ibrahim, E. Haddad, S. Abad, A. Hurni, and L. K. Cheng, “Fiber optic sensing in spacecraft engineering: an historical perspective from the European space agency,”Frontiers in Physics, 2021, 9: 719441.

[8] [8] C. S. Baldwin, “Applications for fiber optic sensing in the upstream oil and gas industry,” inFiber Optic Sensors and Applications XII, Baltimore, USA, 2015, pp. 69–78.

[9] [9] S. S. Guo, Y. Shang, X. H. Liu, C. Wang, W. A. Zhao, and J. S. Lv, “Design for a new type of water cut meter based on fiber optic interferometer used in oil well logging,”Advanced Materials Research, 2013, 807: 2578−2582.

[10] [10] A. M. Biondi, J. Zhou, X. Guo, R. Wu, Q. Tang, H. Gandhi,et al., “Pipeline structural health monitoring using distributed fiber optic sensing textile,”Optical Fiber Technology, 2022, 70: 102876.

[11] [11] X. Liu, J. Li, B. Shi, G. Ding, F. Dong, and Z. Zhang, “Intelligent detection technology for leakage bag of baghouse based on distributed optical fiber sensor,”Optical Fiber Technology, 2019, 52: 101947.

[12] [12] Y. Sun, J. Liu, Z. Xue, Q. Li, C. Fan, and X. Zhang, “A critical review of distributed fiber optic sensing for real-time monitoring geologic CO2 sequestration,”Journal of Natural Gas Science and Engineering, 2021, 88: 103751.

[13] [13] H. Xing, J. Han, and C. F. Li, “Performance monitoring of large rock-socketed piles by Brillouin fiber optic sensing,”Materials Testing, 2017, 59(4): 373−378.

[14] [14] M. Jaaskelainen, “Fiber optic distributed sensing applications in defense, security, and energy,” inFiber Optic Sensors and Applications VI, Orlando, USA, 2009, pp. 58−66.

[15] [15] L. Li, Y. Zhang, H. Zhang, X. Li, and Y. Zhao, “Advances in optical fiber aptasensor for biochemical sensing applications,”Advanced Materials Technologies, 2023, 8(16): 2300137.

[16] [16] L. Zhou, K. Wang, D. Xiao, X. Yang, and R. Chen, “Refractometric fiber optic mode-filtered light chemical sensor for acetic acid,” inInternational Conference on Sensor Technology, Wuhan, China, 2001, pp. 342−345.

[17] [17] K. Langry and B. Rambabu, “Ionic optodes: role in fiber optic chemical sensor technology,”Journal of Chemical Technology & Biotechnology: International Research in Process, Environmental & Clean Technology, 1999, 74(8): 717−732.

[18] [18] X. Lu, P. J. Thomas, and J. O. Hellevang, “A review of methods for fibre-optic distributed chemical sensing,”Sensors, 2019, 19(13): 2876.

[19] [19] D. Li, S. Yu, C. Sun, C. Zou, H. Yu, and K. Xu, “U-shaped fiber-optic ATR sensor enhanced by silver nanoparticles for continuous glucose monitoring,”Biosensors and Bioelectronics, 2015, 72: 370−375.

[20] [20] Q. Chai, Y. Luo, J. Ren, J. Zhang, J. Yang, L. Yuan,et al., “Review on fiber-optic sensing in health monitoring of power grids,”Optical Engineering, 58(7): 072007.

[21] [21] C. R. U. Kumari, D. Samiappan, R. Kumar, and T. Sudhakar, “Fiber optic sensors in ocean observation: a comprehensive review,”Optik, 2019, 179: 351−360.

[22] [22] L. Li, Y. Zhang, H. Zhang, X. Li, and Y. Zhao, “Advances in optical fiber aptasensor for biochemical sensing applications,”Advanced Materials Technologies, 2023, 8(16): 2300137.

[23] [23] Y. Zheng, Z. W. Zhu, W. Xiao, and Q. X. Deng, “Review of fiber optic sensors in geotechnical health monitoring,”Optical Fiber Technology, 54: 102127.

[24] [24] X. Li, Q. Yu, X. Zhou, Y. Zhang, R. Lv, and Y. Zhao, “Magnetic sensing technology of fiber optic interferometer based on magnetic fluid: a review,”Measurement, 2023, 216: 112929.

[25] [25] G. Liang, Z. Luo, K. Liu, Y. Wang, J. Dai, and Y. Duan, “Fiber optic surface plasmon resonance-based biosensor technique: fabrication, advancement, and application,”Critical Reviews in Analytical Chemistry, 2016, 46(3): 213−223.

[26] [26] W. Fang, L. Ding, Y. Zhang, and H. Li, “Prism SPR glucose sensor based on gold nanoparticle/gold film coupling enhanced SPR,”IEEE Sensors Journal, 2023, 23(12): 12477−12484.

[27] [27] M. Suzuki, Y. Nakashima, and Y. Mori, “SPR immunosensor integrated two miniature enzyme sensors,”Sensors and Actuators B: Chemical, 1999, 54(1−2): 176−181.

[28] [28] Y. Y. Zhang, M. A. Arugula, J. S. Kirsch, X. Y. Yang, E. Olsen, and A. L. Simonian, “Layer-by-layer assembled carbon nanotube-acetylcholinesterase/biopolymer renewable interfaces: SPR and electrochemical characterization,”Langmuir, 2015, 31(4): 1462−1468.

[29] [29] V. Chandgude, T. Vlisalmi, J. Linnekoski, T. Granstrm, B. Pratto, T. Eerikinen,et al., “Reducing agents assisted fed-batch fermentation to enhance ABE yields,”Energy conversion and management, 2021, 227: 113627.

[30] [30] L. Wang, Y. Sun, J. Wang, X. N. Zhu, F. Jia, Y. B. Cao,et al., “Sensitivity enhancement of SPR biosensor with silver mirror reaction on the Ag/Au film,”Talanta, 2009, 78(1): 265–269.

[31] [31] Y. H. Kwak, D. S. Choi, Y. N. Kim, H. Kim, D. H. Yoon, S. S. Ahn,et al., “Flexible glucose sensor using CVD-grown graphene-based field effect transistor,”Biosensors & Bioelectronics, 2012, 37(1): 82–87.

[32] [32] M. Singh, P. K. Kathuroju, and N. Jampana, “Polypyrrole based amperometric glucose biosensors,”Sensors and Actuators B: Chemical, 2009, 143(1): 430–443.

[33] [33] K. S. Park, H. Kim, M. K. Kim, K. Kim, and Y. Chong, “Synthesis and biological evaluation of flavonol-glucose conjugates for cosmeceutical development,”Journal of the Korean Society for Applied Biological Chemistry, 2015, 58(3): 317–323.

[34] [34] J. L. Cano Perez, J. Gutirrez-Gutirrez, C. Perezcampos Mayoral, E. L. Prez-Campos, M. D. S. Pina Canseco, L. Tepech Carrillo,et al., “Fiber optic sensors: a review for glucose measurement,”Biosensors, 2021, 11(3): 61.

[35] [35] P. Gong, X. Li, X. Zhou, Y. Zhang, N. Chen, S. Wang,et al., “Optical fiber sensors for glucose concentration measurement: a review,”Optics & Laser Technology, 2021, 139: 106981.

[36] [36] S. Park, H. Boo, and T. D. Chung, “Electrochemical non-enzymatic glucose sensors,”Analytica Chimica Acta, 2006, 556(1): 46–57.

[37] [37] H. Yu, Y. Chong, P. Zhang, J. Ma, and D. Li, “A D-shaped fiber SPR sensor with a composite nanostructure of MoS2-graphene for glucose detection,”Talanta, 2020, 219: 121324.

[38] [38] C. Zhang, Z. Li, S. Z. Jiang, C. H. Li, S. C. Xu, J. Yu,et al., “U-bent fiber optic SPR sensor based on graphene/AgNPs,”Sensors and Actuators B: Chemical, 2017, 251: 127–133.

[39] [39] J. Zhang, X. Mai, X. Hong, Y. Chen, and X. Li, “Optical fiber SPR biosensor with a solid-phase enzymatic reaction device for glucose detection,”Sensors and Actuators B: Chemical, 2022, 366: 131984.

[40] [40] J. Martinez-Perdiguero and I. Alonso, “Optimized sample addressing in prism-coupled surface plasmon resonance experiments,”Optics & Laser Technology, 2020, 129: 106240.

[41] [41] P. K. Teotia and R. S. Kaler, “Multilayer with periodic grating based high performance SPR waveguide sensor,”Optics Communications, 2017, 395: 154–158.

[42] [42] C. Rizal, P. O. Kapralov, D. Ignatyeva, V. Belotelov, and S. Pisana, “Comparison of the effects of surface plasmon resonance and the transverse magneto-optic Kerr effect in magneto-optic plasmonic nanostructures,”Journal of Physics D: Applied Physics, 2020, 53(2): 02LT02.

[43] [43] Q. Wang, A. Zhu, F. Qiu, L. Wang, X. Y. Yin, W. M. Zhao,et al., “High sensitivity coreless fiber surface plasmon resonance sensor based on Au nano biconical particles,”IEEE Sensors Journal, 2022, 22(1): 256–263.

[44] [44] A. Pathak, S. K. Mishra, and B. D. Gupta, “Fiber-optic ammonia sensor using Ag/SnO2 thin films: optimization of thickness of SnO2 film using electric field distribution and reaction factor,”Applied Optics, 2015, 54(29): 8712−8721.

[45] [45] K. Shah, N. K. Sharma, and V. Sajal, “Analysis of fiber optic SPR sensor utilizing platinum based nanocomposites,”Optical and Quantum Electronics, 2018, 50(6): 265.

[46] [46] S. Sharma, S. P. Usha, A. M. Shrivastav, and B. D. Gupta, “A novel method of SPR based SnO2: GNP nano-hybrid decorated optical fiber platform for hexachlorobenzene sensing,”Sensors and Actuators B: Chemical, 2017, 246: 927–936.

[47] [47] S. K. Dubey, A. Kumar, A. Kumar, A. Pathak, and S. K. Srivastava, “A study of highly sensitive D-shaped optical fiber surface plasmon resonance based refractive index sensor using grating structures of Ag-TiO2 and Ag-SnO2,”Optik, 2022, 252: 168527.

[48] [48] G. Lan, R. R. Zhu, W. F. Jin, P. Luo, R. Chen, J. M. Yi,et al., “Highly sensitive detection of Hg2+ employing SPR sensor modified with chitosan/poly (vinyl alcohol)/SnO2 film,”Analytical and Bioanalytical Chemistry, 2021, 413(23): 5703–5714.

[49] [49] C. Virginia, A. Khasanah, J. Jauhari, and I. Sriyanti, “Electrospinning and characterization nanofibers and nano particle of polyvinylpyrrolidone,” inIOP Conference Series: Materials Science and Engineering, Bandung, Republic of Indonesia, 2020, pp. 012039.

[50] [50] W. Yang, J. Gao, Z. Li, C. Li, Y. Cheng, Y. Huo,et al., “High performance D-type plastic fiber SPR sensor based on a hyperbolic metamaterial composed of Ag/MgF2,”Journal of Materials Chemistry C, 2021, 9(39): 13647–13658.

[51] [51] M. Sun, H. Wu, Y. Song, and Q. Wang, “Surface plasmon resonance alcohol sensor with Ni(OH)2 nanoflowers/Au structure,”Measurement, 2023, 210: 112564.

[52] [52] H. Xu, Y. Song, P. Zhu, W. Zhao, T. Liu, Q. Wang, and T. Zhao, “Alcohol sensor based on surface plasmon resonance of ZnO nanoflowers/Au structure,”Materials, 2021, 15(1): 189.

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SONG Hongyu, WU Haoyu, XU Yanpei, MA Shaowei, SUN Meng, WANG Qi. MSM Fiber Optic Surface Plasmon Resonance Glucose Sensor Based on SnO2 Nanofibers/Au Structure[J]. Photonic Sensors, 2025, 15(1): 250119

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Paper Information

Received: Oct. 15, 2023

Accepted: May. 13, 2025

Published Online: May. 13, 2025

The Author Email:

DOI:10.1007/s13320-024-0733-1

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