Highly functionalized materials at the nanoscale on optical fibers offer notable opportunities to construct "lab-on-fiber" functional devices with unusual properties. However, it is extremely difficult to fabricate nanostructures with special morphology on a thin cylindrical optical fiber surface using the commonly used physical lithography techniques. Meanwhile, it is vital to maintain the plasmonic properties of Ag-riched particles while improving their stability. Herein, we design a facile strategy for the fabrication of Au-Ag bimetallic nanorings (Au-Ag NRs) immobilized on optical fibers for enhanced plasmonic properties. Ag NPs are first grownin situon an optical fiber surface through chelation and redox of polydopamine (PDA) to metal ...
Composite noble metal-based nanorods for which the surface plasmon resonances can be tuned by compos...
Plasmonic metal nanoparticles, particularly Silver and Gold, have been extensively studied due to th...
Galvanic replacement is a versatile method of converting simple noble metallic nanoparticles into st...
Abstract — A novel optical fiber having its cladding doped with Au nano-particles was developed by m...
A specialty optical fiber incorporated with Au nano-particles (NPs) in the cladding has been develop...
We demonstrate a simple route for fabricating Au/Ag nanoring arrays with widely tunable surface plas...
*S Supporting Information ABSTRACT: Inspired by the concept of living polymerization reaction, we ar...
Since bimetallic nanomaterial was credited with far features beyond single metal nanomaterial and ha...
I believe that my research work on the plasmonic spectroscopy of metallic nanostructures has provide...
xvi, 110 pages : color illustrationsPolyU Library Call No.: [THS] LG51 .H577P AP 2017 BaoNoble metal...
Bimetallic Ag@Au nanoparticles (NPs) have received significant research interest because of their un...
The surface plasmon resonance of noble metals can be tuned by morphology and composition, offering i...
In the present work, the standard monometallic localized surface plasmon resonance (LSPR) biosensing...
Hollow bimetallic nanostructures have recently emerged as attractive plasmonic materials due to the ...
Optical nanomaterials have attracted tremendous interest from a large community of researchers becau...
Composite noble metal-based nanorods for which the surface plasmon resonances can be tuned by compos...
Plasmonic metal nanoparticles, particularly Silver and Gold, have been extensively studied due to th...
Galvanic replacement is a versatile method of converting simple noble metallic nanoparticles into st...
Abstract — A novel optical fiber having its cladding doped with Au nano-particles was developed by m...
A specialty optical fiber incorporated with Au nano-particles (NPs) in the cladding has been develop...
We demonstrate a simple route for fabricating Au/Ag nanoring arrays with widely tunable surface plas...
*S Supporting Information ABSTRACT: Inspired by the concept of living polymerization reaction, we ar...
Since bimetallic nanomaterial was credited with far features beyond single metal nanomaterial and ha...
I believe that my research work on the plasmonic spectroscopy of metallic nanostructures has provide...
xvi, 110 pages : color illustrationsPolyU Library Call No.: [THS] LG51 .H577P AP 2017 BaoNoble metal...
Bimetallic Ag@Au nanoparticles (NPs) have received significant research interest because of their un...
The surface plasmon resonance of noble metals can be tuned by morphology and composition, offering i...
In the present work, the standard monometallic localized surface plasmon resonance (LSPR) biosensing...
Hollow bimetallic nanostructures have recently emerged as attractive plasmonic materials due to the ...
Optical nanomaterials have attracted tremendous interest from a large community of researchers becau...
Composite noble metal-based nanorods for which the surface plasmon resonances can be tuned by compos...
Plasmonic metal nanoparticles, particularly Silver and Gold, have been extensively studied due to th...
Galvanic replacement is a versatile method of converting simple noble metallic nanoparticles into st...