Anomalous Sensitivity Enhancement of D-Shaped Fiber-Based Sandwiched Structure Optofluidic Sensor

A novel mechanism of sensitivity enhancement of D-shaped fiber-based surface plasmon resonance (SPR) sensors for the optofluidic device has been proposed. The sandwiched structure optofluidic platform is developed with metal-coated D-shaped fiber as the sensing device, while another thin metal layer...

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Main Authors: Yatao Yang, Sankhyabrata Bandyopadhyay, Liyang Shao, Jiahao Jiang, Zeng Peng, Shuaiqi Liu, Jie Hu, Perry Ping Shum, Jiandong Hu, Xuming Zhang
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9107100/
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spelling doaj-7b36bc491fc145ec8b4d9504831a809d2021-03-30T02:56:52ZengIEEEIEEE Access2169-35362020-01-01810520710521610.1109/ACCESS.2020.29997339107100Anomalous Sensitivity Enhancement of D-Shaped Fiber-Based Sandwiched Structure Optofluidic SensorYatao Yang0Sankhyabrata Bandyopadhyay1Liyang Shao2https://orcid.org/0000-0003-1272-1959Jiahao Jiang3Zeng Peng4Shuaiqi Liu5Jie Hu6Perry Ping Shum7Jiandong Hu8Xuming Zhang9Department of Electrical and Electronic Engineering, Southern University of Science and Technology, Shenzhen, ChinaDepartment of Electrical and Electronic Engineering, Southern University of Science and Technology, Shenzhen, ChinaDepartment of Electrical and Electronic Engineering, Southern University of Science and Technology, Shenzhen, ChinaDepartment of Electrical and Electronic Engineering, Southern University of Science and Technology, Shenzhen, ChinaDepartment of Electrical and Electronic Engineering, Southern University of Science and Technology, Shenzhen, ChinaDepartment of Electrical and Electronic Engineering, Southern University of Science and Technology, Shenzhen, ChinaDepartment of Electrical and Electronic Engineering, Southern University of Science and Technology, Shenzhen, ChinaDepartment of Electrical and Electronic Engineering, Southern University of Science and Technology, Shenzhen, ChinaDepartment of Electrical Engineering, Henan Agricultural University, Zhengzhou, ChinaDepartment of Applied Physics, HongKong Polytechnic University, Hong KongA novel mechanism of sensitivity enhancement of D-shaped fiber-based surface plasmon resonance (SPR) sensors for the optofluidic device has been proposed. The sandwiched structure optofluidic platform is developed with metal-coated D-shaped fiber as the sensing device, while another thin metal layer is situated under the inner wall of the substrate as a second metal layer to construct the sandwiched microchannel. It has been found that the sensitivity of the D-type fiber SPR sensor is enhanced significantly with the sandwiched metal-coated structure of microchannel. In the proposed structure, the measurand analyte is considered as a sandwich channel layer between two thin metal layers. The sensitivity of the proposed structure is dependent on the volume of the measurand and the thickness of the metal layers. The computed sensitivity with a double metal layer and sandwich measurand layer concept is 4085 nm/RIU in the region of 1.33 to 1.36. The sensitivity is enhanced by more than a factor of `2.3' in comparison with the sensitivity of the normal D-shape fiber SPR sensor. It can be enhanced further up to ~12,500 nm/RIU by the deposition of higher RI polymeric overlay just above the second metal layer. The computed resolution of the proposed sensor with standard interrogation technique is ~1 &#x00D7; 10<sup>-7</sup> which is quite competitive within the optical fiber sensor domain. A detailed numerical analysis has been accomplished. This structure will be useful in distinct chemical and biological sensing applications where the volume of an analyte is critical. This new concept of enhancement of sensitivity with limited measurand volume will open a new designing methodology for optical fiber biosensors.https://ieeexplore.ieee.org/document/9107100/Optical fiber sensorschemical sensorsoptofluidicsurface plasmon resonance
collection DOAJ
language English
format Article
sources DOAJ
author Yatao Yang
Sankhyabrata Bandyopadhyay
Liyang Shao
Jiahao Jiang
Zeng Peng
Shuaiqi Liu
Jie Hu
Perry Ping Shum
Jiandong Hu
Xuming Zhang
spellingShingle Yatao Yang
Sankhyabrata Bandyopadhyay
Liyang Shao
Jiahao Jiang
Zeng Peng
Shuaiqi Liu
Jie Hu
Perry Ping Shum
Jiandong Hu
Xuming Zhang
Anomalous Sensitivity Enhancement of D-Shaped Fiber-Based Sandwiched Structure Optofluidic Sensor
IEEE Access
Optical fiber sensors
chemical sensors
optofluidic
surface plasmon resonance
author_facet Yatao Yang
Sankhyabrata Bandyopadhyay
Liyang Shao
Jiahao Jiang
Zeng Peng
Shuaiqi Liu
Jie Hu
Perry Ping Shum
Jiandong Hu
Xuming Zhang
author_sort Yatao Yang
title Anomalous Sensitivity Enhancement of D-Shaped Fiber-Based Sandwiched Structure Optofluidic Sensor
title_short Anomalous Sensitivity Enhancement of D-Shaped Fiber-Based Sandwiched Structure Optofluidic Sensor
title_full Anomalous Sensitivity Enhancement of D-Shaped Fiber-Based Sandwiched Structure Optofluidic Sensor
title_fullStr Anomalous Sensitivity Enhancement of D-Shaped Fiber-Based Sandwiched Structure Optofluidic Sensor
title_full_unstemmed Anomalous Sensitivity Enhancement of D-Shaped Fiber-Based Sandwiched Structure Optofluidic Sensor
title_sort anomalous sensitivity enhancement of d-shaped fiber-based sandwiched structure optofluidic sensor
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description A novel mechanism of sensitivity enhancement of D-shaped fiber-based surface plasmon resonance (SPR) sensors for the optofluidic device has been proposed. The sandwiched structure optofluidic platform is developed with metal-coated D-shaped fiber as the sensing device, while another thin metal layer is situated under the inner wall of the substrate as a second metal layer to construct the sandwiched microchannel. It has been found that the sensitivity of the D-type fiber SPR sensor is enhanced significantly with the sandwiched metal-coated structure of microchannel. In the proposed structure, the measurand analyte is considered as a sandwich channel layer between two thin metal layers. The sensitivity of the proposed structure is dependent on the volume of the measurand and the thickness of the metal layers. The computed sensitivity with a double metal layer and sandwich measurand layer concept is 4085 nm/RIU in the region of 1.33 to 1.36. The sensitivity is enhanced by more than a factor of `2.3' in comparison with the sensitivity of the normal D-shape fiber SPR sensor. It can be enhanced further up to ~12,500 nm/RIU by the deposition of higher RI polymeric overlay just above the second metal layer. The computed resolution of the proposed sensor with standard interrogation technique is ~1 &#x00D7; 10<sup>-7</sup> which is quite competitive within the optical fiber sensor domain. A detailed numerical analysis has been accomplished. This structure will be useful in distinct chemical and biological sensing applications where the volume of an analyte is critical. This new concept of enhancement of sensitivity with limited measurand volume will open a new designing methodology for optical fiber biosensors.
topic Optical fiber sensors
chemical sensors
optofluidic
surface plasmon resonance
url https://ieeexplore.ieee.org/document/9107100/
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