The oblique angle deposition of Ag with different deposition rates and substrates was studied for surface-enhanced Raman spectroscopy (SERS) efficiency. The deposition rate for the Ag substrate with maximum SERS efficiency was optimized to 2.4 Å/s. We also analyzed the morphology of Ag nanorods deposited at the same rate on various substrates and compared their SERS intensities. Ag deposited on SiO2, sapphire, and tungsten showed straight nanorods shape and showed relatively high SERS efficiency. However, Ag deposited on graphene or plasma-treated SiO2 substrate was slightly or more aggregated (due to high surface energy) and showed low SERS efficiency
Surface-enhanced Raman spectroscopy (SERS) is a very promising analytical technique for the detectio...
There are ample methods for the production of substrates for surface-enhanced Raman spectroscopy (SE...
This study deals with the development of a novel technique for formation of advanced Ag nanostructur...
Surface Enhanced Raman Spectroscopy presents a rapid, non-destructive method to identify chemical an...
Surface Enhanced Raman Spectroscopy presents a rapid, non-destructive method to identify chemical an...
Ag nanorod arrays prepared by oblique angle vapor deposition (OAD) represent regular, large area sub...
We report the manufacture of ordered silver and copper nanorod arrays for surface-enhanced Raman sca...
We report the manufacture of ordered silver and copper nanorod arrays for surface-enhanced Raman sca...
We report the development of a novel SERS substrate prepared by the growth of silver nanorods direct...
Surface-enhanced Raman spectroscopy (SERS) substrates manufactured using complex nano-patterning tec...
Thin metallic films on dielectric nanospheres are demonstrated to have a high potential for the fabr...
The design of efficient substrates for surface-enhanced Raman spectroscopy (SERS) for large-scale fa...
We report a simple and robust method to fabricate highly sensitive and transparent silver nanorod (A...
The present investigation involves the in situ growth of Ag nanostructures (NSs) onto a rough Cu sur...
A fast and cost-effective approach for the synthesis of substrates used in surface enhanced Raman sc...
Surface-enhanced Raman spectroscopy (SERS) is a very promising analytical technique for the detectio...
There are ample methods for the production of substrates for surface-enhanced Raman spectroscopy (SE...
This study deals with the development of a novel technique for formation of advanced Ag nanostructur...
Surface Enhanced Raman Spectroscopy presents a rapid, non-destructive method to identify chemical an...
Surface Enhanced Raman Spectroscopy presents a rapid, non-destructive method to identify chemical an...
Ag nanorod arrays prepared by oblique angle vapor deposition (OAD) represent regular, large area sub...
We report the manufacture of ordered silver and copper nanorod arrays for surface-enhanced Raman sca...
We report the manufacture of ordered silver and copper nanorod arrays for surface-enhanced Raman sca...
We report the development of a novel SERS substrate prepared by the growth of silver nanorods direct...
Surface-enhanced Raman spectroscopy (SERS) substrates manufactured using complex nano-patterning tec...
Thin metallic films on dielectric nanospheres are demonstrated to have a high potential for the fabr...
The design of efficient substrates for surface-enhanced Raman spectroscopy (SERS) for large-scale fa...
We report a simple and robust method to fabricate highly sensitive and transparent silver nanorod (A...
The present investigation involves the in situ growth of Ag nanostructures (NSs) onto a rough Cu sur...
A fast and cost-effective approach for the synthesis of substrates used in surface enhanced Raman sc...
Surface-enhanced Raman spectroscopy (SERS) is a very promising analytical technique for the detectio...
There are ample methods for the production of substrates for surface-enhanced Raman spectroscopy (SE...
This study deals with the development of a novel technique for formation of advanced Ag nanostructur...