Theoretical Model and Design Considerations of U
A wide range of geometrical deformations of fiber optic sensors (FOSs) have been explored to improve their performance. In particular, fiber
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A wide range of geometrical deformations of fiber optic sensors (FOSs) have been explored to improve their performance. In particular, fiber
In this paper, a sensitivity-enhanced surface plasmon resonance fiber sensor modified with an overlayer of MoS 2 nanosheets is proposed and demonstrated.
This paper aims to provide researchers with guidelines on the factors to consider when choosing a material for bent fiber optic sensors depending on the application.
In this paper, we proposed a D-shaped fiber SPR sensor with a composite nanostructure of molybdenum disulfide (MoS2)-graphene to improve the sensor sensitivity. Compared with the
Abstract Here we design and fabricate the molybdenum disulfide (MoS 2)/graphene based hybrid sensor and evaluated the gas sensing performance of numerous kind of gases (Ethanol,
Due to the benefits of the high sensitivity, real-time response, no labeling requirement, and good selectivity, fiber optic sensors based on surface
Request PDF | Sensitivity-Enhanced Fiber Plasmonic Sensor Utilizing Molybdenum Disulfide Nanosheets | Molybdenum disulfide (MoS2), as a representative layered transition metal
It quantifies the material''s ability to absorb light across different photon energies, and its shape provides insight into the critical optical transitions
This paper is the second part of a review on U-shaped FOSs and discusses the sensing mechanisms, applications, possible improvements, and future scope of the U-shaped FOSs.
In terms of this model, an ultra-sensitive micro-displacement sensor of −1.2838nm/µm in a measurement range of 0–60 µm has been realized. The
Abstract A simple and low-cost fabrication method via polydopamine accelerated electroless plating (ELP) for an optical fiber surface plasmon resonance (SPR) sensor with
We propose a broadband absorber in the infrared band using a two-dimensional molybdenum disulfide with a patterned gold array. The light absorption enhancement effect of the
This letter presents and validates a simultaneous relative humidity (RH) and temperature (T) measurement system comprising a U-shaped microfiber interferometer covered with a thin film of
Abstract A high-sensitivity optical fiber relative humidity (RH) sensing probe consisting of a U-shaped microfiber interference coated with molybdenum disulfide (MoS2) films proposed and
Improved optic-fiber sensor performance by depositing sensitive films. A high-sensitivity optical fiber relative humidity (RH) sensing probe consisting of a U-shaped microfiber interference
Abstract We demonstrate an ultrafast humidity micro-fiber sensor based on molybdenum disulfide (MoS 2) cladding with three dimensional network structure. The high surface-to-volume
Intrinsic U-shaped fiber optic sensors (FOSs) are well established in the field. With greater penetration depth and evanescent power, these sensors exhibit profound sensitivity and have supported a wide
We investigate a D-shaped photonic crystal fiber sensor with Molybdenum disulfide (MoS2) as a bio-recognition layer. The proposed sensor works based on the principle of surface plasmon resonance.
Abstract Surface plasmon resonance based fiber optic sensor fabricated from gold and molybdenum disulfide is presented experimentally. Wavelength interrogation technique is used for the analysis of
The primary objective of this work is to design an inexpensive dip-coated U-bend fiber optic humidity sensor utilising molybdenum disulfide (MoS<inf>2</inf>) for enhanced sensitivity, high sensor
When ZnO was added to the silver-based sensor, a highest sensitivity, 4740.9 nm/RIU, was obtained. Graphene-based silver SPR exhibit
A novel near-field leakage-enhanced optical fiber surface plasmon resonance (NLF-SPR) sensor based on the synergistic sensitization of cuboid gold nan
Abstract Graphene, molybdenum disulfide (MoS2 ), and zinc oxide (ZnO) are proposed here to enhance the evanescent field of an opti-cal fiber surface plasmon resonance (SPR) sensor. Gold and silver
L-cysteine conjugated molybdenum disulphide (MoS 2) nanosheets have been covalently attached to a gold coated surface plasmon resonance (SPR) optical fiber to prepare a robust and