In this paper, we report a facile strategy to fabricate fluorescent porous thin film on the surface of U-bent poly(methyl methacrylate) optical fiber (U-bent POF) <i>in situ</i> via “click” polymerization for vapor phase sensing of explosives. Upon irradiation of evanescent UV light transmitting within the fiber under ambient condition, a porous film (POSS-thiol cross-linking film, PTCF) is synthesized on the side surface of the fiber by a thiol–ene “click” reaction of vinyl-functionalized polyhedral oligomeric silsesquioxanes (POSS-V8) and alkane dithiols. When vinyl-functionalized porphyrin, containing four allyl substituents at the periphery, is added into precursors for the polymerization, fluorescence porphyrin can be covalently bonde...
The Ph.D. project aims at developing novel fluorescent nanomaterials for fast, sensitive, selective,...
The objective of this study is to present an optical chemical sensor based on surface plasmon resona...
An electrospun nanofibrous explosive sensor was first constructed based on a newly developed fluores...
The performance of plastic optical fiber sensors in detecting nitro aromatic explosives 1,4-dinitrob...
The consistent explosive and hazardous material monitoring is among the demanding aspect of security...
There is an increasing demand for the efficient collection of fluorescent light emitted from a very ...
n this work the deposition of a tetrakis(4-sulfonatophenyl)porphyrin (TPPS) film onto optical fiber ...
The experimental platform to study optical fibers (OFs) functionally enhanced by layers of photoacti...
The integration of a tetrakis(4-sulfonatophenyl)porphyrin (TPPS) thin film with optical fiber techno...
Recent advances in miniaturization and analyte-sensitive fluorescent indicators make optical fiber b...
A new method for fabricating fluorescent nanofibers as sensing materials was developed via the elect...
A newly developed electrospun nanofibrous film sensor based on tetrakis(4-methoxylphenyl) porphyrin ...
Electrospun nanofibrous film doped with it fluorescent conjugated polymer P was developed as a senso...
In this work we report on preliminary analysis of a novel optoelectronic gas sensor based on an opti...
A conjugated polymer gelator is synthesized for fluorescence detection of trinitrotoluene (TNT) and ...
The Ph.D. project aims at developing novel fluorescent nanomaterials for fast, sensitive, selective,...
The objective of this study is to present an optical chemical sensor based on surface plasmon resona...
An electrospun nanofibrous explosive sensor was first constructed based on a newly developed fluores...
The performance of plastic optical fiber sensors in detecting nitro aromatic explosives 1,4-dinitrob...
The consistent explosive and hazardous material monitoring is among the demanding aspect of security...
There is an increasing demand for the efficient collection of fluorescent light emitted from a very ...
n this work the deposition of a tetrakis(4-sulfonatophenyl)porphyrin (TPPS) film onto optical fiber ...
The experimental platform to study optical fibers (OFs) functionally enhanced by layers of photoacti...
The integration of a tetrakis(4-sulfonatophenyl)porphyrin (TPPS) thin film with optical fiber techno...
Recent advances in miniaturization and analyte-sensitive fluorescent indicators make optical fiber b...
A new method for fabricating fluorescent nanofibers as sensing materials was developed via the elect...
A newly developed electrospun nanofibrous film sensor based on tetrakis(4-methoxylphenyl) porphyrin ...
Electrospun nanofibrous film doped with it fluorescent conjugated polymer P was developed as a senso...
In this work we report on preliminary analysis of a novel optoelectronic gas sensor based on an opti...
A conjugated polymer gelator is synthesized for fluorescence detection of trinitrotoluene (TNT) and ...
The Ph.D. project aims at developing novel fluorescent nanomaterials for fast, sensitive, selective,...
The objective of this study is to present an optical chemical sensor based on surface plasmon resona...
An electrospun nanofibrous explosive sensor was first constructed based on a newly developed fluores...