MFI zeolite coated optical fiber sensors have been developed for in situ detection of dissolved organics in water. The sensors operate by monitoring the optical reflectivity changes caused by the selective adsorption of organic molecules, i.e., 2-propanol or pentanoic acid in this study, from aqueous solutions in the zeolitic pores. Reversible and monotonic sensor signals were observed in response to the variation of 2-propanol concentration in water with fast response. However, the sensor exhibited a much slower response to pentanoic acid than to 2-propanol. It was also found that substitution of Si by Al in the MFI framework increased the adsorption of pentanoic acid that resulted in enhanced sensor responses
Zeolite thin films were synthesized on the claddingless multimode portion of a singlemode-multimode-...
The unique properties of microporous zeolites, including ion-exchange properties, adsorption, molecu...
Zeolite-coated optical fibers are useful as media to carry out asymmetric photochemical reactions an...
A fiber optic intrinsic Fabry-Perot interferometric (IFPI) chemical sensor wasdeveloped by fine-poli...
We report the development of a novel zeolite-incorporated optical fiber sensor and demonstrate its c...
Recently, we discovered that the nanoporous zeolite materials possess the unique combination of opti...
A zeolite thin film-coated long period fiber grating (LPFG) sensor was developed and tested for dire...
This paper reports the development of zeolite thin film-coated optical fiber sensor for directly mea...
Label-free optical fiber chemical sensors have provoked significant research interest in recent year...
Fiber optic interferometer (FOI) sensors have been fabricated by directly growing pure-silica MFI-ty...
Routine water quality monitoring is required in drinking and waste water management. A particular in...
Chemical sensor and zeolite-modified electrode (ZME) applica-tions have been one of the major drivin...
This study proposes a thinned-cladding zeolite coated long period fiber grating (LPFG) chemical sens...
A metal-organic framework thin-film (UiO-66) optical fiber platform is built up as a data processing...
This paper reports the development of a new zeolite thin film-coated long period fiber grating (LPFG...
Zeolite thin films were synthesized on the claddingless multimode portion of a singlemode-multimode-...
The unique properties of microporous zeolites, including ion-exchange properties, adsorption, molecu...
Zeolite-coated optical fibers are useful as media to carry out asymmetric photochemical reactions an...
A fiber optic intrinsic Fabry-Perot interferometric (IFPI) chemical sensor wasdeveloped by fine-poli...
We report the development of a novel zeolite-incorporated optical fiber sensor and demonstrate its c...
Recently, we discovered that the nanoporous zeolite materials possess the unique combination of opti...
A zeolite thin film-coated long period fiber grating (LPFG) sensor was developed and tested for dire...
This paper reports the development of zeolite thin film-coated optical fiber sensor for directly mea...
Label-free optical fiber chemical sensors have provoked significant research interest in recent year...
Fiber optic interferometer (FOI) sensors have been fabricated by directly growing pure-silica MFI-ty...
Routine water quality monitoring is required in drinking and waste water management. A particular in...
Chemical sensor and zeolite-modified electrode (ZME) applica-tions have been one of the major drivin...
This study proposes a thinned-cladding zeolite coated long period fiber grating (LPFG) chemical sens...
A metal-organic framework thin-film (UiO-66) optical fiber platform is built up as a data processing...
This paper reports the development of a new zeolite thin film-coated long period fiber grating (LPFG...
Zeolite thin films were synthesized on the claddingless multimode portion of a singlemode-multimode-...
The unique properties of microporous zeolites, including ion-exchange properties, adsorption, molecu...
Zeolite-coated optical fibers are useful as media to carry out asymmetric photochemical reactions an...