We report DNA-mediated simple synthetic methods to obtain anisotropic plasmonic nanostructures with a tailorable intra-nanogap distance ranging from 0.9 to 4.0 nm. Anisotropic half-shell structures with sub-1.0 nm intra-nanogaps showed a wavelength-independent surface-enhanced Raman scattering (SERS) intensity and a highly sensitive SERS response to NIR light. We found that the reaction conditions such as pH and NaCl concentration are responsible for the resulting shell structures and intra-nanogap distances. Three noticeable plasmonic nanostructures [i.e., half-shell with sub-1.0 nm nanogaps, closed-shell with a wide nanogap (2.1 nm) and star-shaped with an irregular nanogap (1.5-4.0 nm)] were synthesized, and solution-based and single par...
In this work, we report a simple strategy to obtain ultrasensitive SERS nanostructures by self-assem...
The understanding of the relationship between plasmonic and surface-enhanced Raman scattering (SERS)...
The programmable assembly of DNA strands is a promising tool for building tailored bottom-up nanostr...
The design, synthesis and control of plasmonic nanostructures, especially with ultrasmall plasmonica...
AbstractFabrication of nanoscale structures with localized surface plasmons allows for substantial i...
An ideal surface-enhanced Raman scattering (SERS) nanostructure for sensing and imaging applications...
Electromagnetic enhancement effects through localized surface plasmon resonance considerably amplify...
Plasmonic nanostructures are widely studied and used because of their useful size, shape, compositio...
The design, synthesis and control of plasmonic nanostructures, especially with ultrasmall plasmonica...
Plasmonic sensors are extremely promising candidates for label-free single-molecule analysis but req...
AbstractSurface-enhanced Raman scattering (SERS) is a promising technology owing to its single-molec...
Uniform silver-containing metal nanostructures with well-defined nanogaps hold great promise for ult...
DNA and amino acids are important biomolecules in living organisms. Probing such biomolecules with s...
DNA origami is a powerful approach for assembling plasmonic nanoparticle dimers and Raman...
Surface-enhanced Raman scattering (SERS)-based signal amplification and detection methods using plas...
In this work, we report a simple strategy to obtain ultrasensitive SERS nanostructures by self-assem...
The understanding of the relationship between plasmonic and surface-enhanced Raman scattering (SERS)...
The programmable assembly of DNA strands is a promising tool for building tailored bottom-up nanostr...
The design, synthesis and control of plasmonic nanostructures, especially with ultrasmall plasmonica...
AbstractFabrication of nanoscale structures with localized surface plasmons allows for substantial i...
An ideal surface-enhanced Raman scattering (SERS) nanostructure for sensing and imaging applications...
Electromagnetic enhancement effects through localized surface plasmon resonance considerably amplify...
Plasmonic nanostructures are widely studied and used because of their useful size, shape, compositio...
The design, synthesis and control of plasmonic nanostructures, especially with ultrasmall plasmonica...
Plasmonic sensors are extremely promising candidates for label-free single-molecule analysis but req...
AbstractSurface-enhanced Raman scattering (SERS) is a promising technology owing to its single-molec...
Uniform silver-containing metal nanostructures with well-defined nanogaps hold great promise for ult...
DNA and amino acids are important biomolecules in living organisms. Probing such biomolecules with s...
DNA origami is a powerful approach for assembling plasmonic nanoparticle dimers and Raman...
Surface-enhanced Raman scattering (SERS)-based signal amplification and detection methods using plas...
In this work, we report a simple strategy to obtain ultrasensitive SERS nanostructures by self-assem...
The understanding of the relationship between plasmonic and surface-enhanced Raman scattering (SERS)...
The programmable assembly of DNA strands is a promising tool for building tailored bottom-up nanostr...