Abstract
An intensity modulated fiber-optic carbon monoxide (CO) sensor by integrating in-situ solvothermal-growth Ag/Co-MOF sensing film is fabricated and evaluated. The Michelson interference sensing structure is composed of single-mode fiber (SMF), enlarged taper, thin-core fiber (TCF), and Ag film as the reflector. Ag/Co-MOF was coated on the cladding of the TCF as the sensing material, and the enlarged taper is located between TCF and SMF as the coupler. The structure, morphology, compositions and thermal stability of the Ag/Co-MOF sensing film were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray photoelectron spectroscopy (XPS), thermogravimetric analysis (TGA), etc. The sensitivity of the sensor is 0.04515 dB/ppm, and the fitting parameter of the CO concentration is 0.99876. In addition, the sensor has the advantages of good selectivity, good signal and temperature stability, and it has potential application in trace CO detection.
Funding source: Banan District Science and Technology Bureau
Award Identifier / Grant number: 2020QC458
Funding source: Chongqing Municipal Education Commission
Award Identifier / Grant number: KJZD-M201901102
Funding source: Chongqing Human Resources and Social Security Bureau
Award Identifier / Grant number: CX2019092
Funding source: Chongqing University of Technology
Award Identifier / Grant number: 20203146
Funding source: Chongqing Science and Technology Bureau
Award Identifier / Grant number: CSTCCXLJRC201905
Funding source: Guangzhou Science and Technology Bureau
Award Identifier / Grant number: 202002030053
Funding source: National Natural Science Foundation of China
Award Identifier / Grant number: 51574054
Award Identifier / Grant number: 51904053
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Author contribution: All the authors have accepted responsibility for the entire content of this submitted manuscript and approved submission.
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Research funding: The research was partly supported by the National Natural Science Foundation of China (51574054, 51904053), Chongqing Municipal Education Commission (KJZD-M201901102), Chongqing Science and Technology Bureau (CSTCCXLJRC201905), Chongqing Human Resources and Social Security Bureau (CX2019092), Guangzhou Science and Technology Bureau (202002030053), Banan District Science and Technology Bureau (2020QC458), and Chongqing University of Technology (20203146).
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Conflict of interest statement: The authors declare no conflicts of interest.
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© 2021 Walter de Gruyter GmbH, Berlin/Boston
Articles in the same Issue
- Frontmatter
- General
- Simultaneous demodulation comparison of fiber-optic Fabry–Perot sensors connected in parallel and series
- An intensity modulated fiber-optic carbon monoxide sensor based on Ag/Co-MOF in-situ coated thin-core fiber
- Dynamical Systems & Nonlinear Phenomena
- Periodic and localized structures in dusty plasma with Kaniadakis distribution
- Study of optical guiding of the Hermite–Gaussian laser beam in preformed collisional parabolic plasma channel and second harmonic generation
- Stability analysis of a delayed predator–prey model with nonlinear harvesting efforts using imprecise biological parameters
- Hydrodynamics
- Gas–liquid two-phase flow pattern analysis based on multiscale symbolic transfer entropy
- Numerical treatment of squeezing unsteady nanofluid flow using optimized stochastic algorithm
- Solid State Physics & Materials Science
- Identification of thermo optical parameters in 4l-hexyloxy-4-cyanobyphenyl with dispersed ZnO nano particles
- The process of magnetic flux penetration into superconductors
Articles in the same Issue
- Frontmatter
- General
- Simultaneous demodulation comparison of fiber-optic Fabry–Perot sensors connected in parallel and series
- An intensity modulated fiber-optic carbon monoxide sensor based on Ag/Co-MOF in-situ coated thin-core fiber
- Dynamical Systems & Nonlinear Phenomena
- Periodic and localized structures in dusty plasma with Kaniadakis distribution
- Study of optical guiding of the Hermite–Gaussian laser beam in preformed collisional parabolic plasma channel and second harmonic generation
- Stability analysis of a delayed predator–prey model with nonlinear harvesting efforts using imprecise biological parameters
- Hydrodynamics
- Gas–liquid two-phase flow pattern analysis based on multiscale symbolic transfer entropy
- Numerical treatment of squeezing unsteady nanofluid flow using optimized stochastic algorithm
- Solid State Physics & Materials Science
- Identification of thermo optical parameters in 4l-hexyloxy-4-cyanobyphenyl with dispersed ZnO nano particles
- The process of magnetic flux penetration into superconductors