An analytical platform suitable for trace detection using a small volume of analyte is pertinent to the field of toxin detection and criminology. Plasmonic nanostructures provide surface-enhanced Raman scattering (SERS) that can potentially achieve trace toxins and/or molecules detection. However, the detection of highly diluted, small volume samples remains a challenge. Here, we fabricate a superhydrophobic SERS platform by assembling Ag nanocubes that support strong surface plasmon and chemical functionalization for trace detection with sample volume of just 1 μL. Our strategy integrates the intense electromagnetic field confinement generated by Ag nanocubes with a superhydrophobic surface capable of analyte concentration to lower the mol...
We introduce a simple but robust method to fabricate an ultrahigh-density array of silver nanocluste...
Collecting highly diluted target analytes into specific hot spot regions is vital for ultrasensitive...
A sandwich structured substrate was designed for quantitative molecular detection using surface enha...
The aim of this paper is to expound on the rational design, fabrication and development of superhydr...
The aim of this paper is to expound on the rational design, fabrication and development of superhydr...
Technology transfer from laboratory into practical application needs to meet the demands of economic...
The fabrication and optimization of cost-effective, eco-friendly, uniform and flexible SERS platform...
We report on self-assembled nanocube-based plasmene nanosheets as new surface-enhanced Raman scatter...
A superhydrophobic substrate that combines the superhydrophobic condensation effect and high enhance...
The development of surface-enhanced Raman scattering (SERS) devices for detection of trace pesticide...
Early detection of diseases has great importance in terms of success of the disease treatment. In fa...
A highly efficient Surface Enhanced Raman Scattering (SERS) substrate was prepared using a nanoclust...
We report on self-assembled nanocube-based plasmene nanosheets as new surface-enhanced Raman scatter...
Making metal nanoparticle aggregates is a common way to improve surface-enhanced Raman scattering (S...
Multiwavelength width-graded nano-gratings have been shown to localize high electric fields and thus...
We introduce a simple but robust method to fabricate an ultrahigh-density array of silver nanocluste...
Collecting highly diluted target analytes into specific hot spot regions is vital for ultrasensitive...
A sandwich structured substrate was designed for quantitative molecular detection using surface enha...
The aim of this paper is to expound on the rational design, fabrication and development of superhydr...
The aim of this paper is to expound on the rational design, fabrication and development of superhydr...
Technology transfer from laboratory into practical application needs to meet the demands of economic...
The fabrication and optimization of cost-effective, eco-friendly, uniform and flexible SERS platform...
We report on self-assembled nanocube-based plasmene nanosheets as new surface-enhanced Raman scatter...
A superhydrophobic substrate that combines the superhydrophobic condensation effect and high enhance...
The development of surface-enhanced Raman scattering (SERS) devices for detection of trace pesticide...
Early detection of diseases has great importance in terms of success of the disease treatment. In fa...
A highly efficient Surface Enhanced Raman Scattering (SERS) substrate was prepared using a nanoclust...
We report on self-assembled nanocube-based plasmene nanosheets as new surface-enhanced Raman scatter...
Making metal nanoparticle aggregates is a common way to improve surface-enhanced Raman scattering (S...
Multiwavelength width-graded nano-gratings have been shown to localize high electric fields and thus...
We introduce a simple but robust method to fabricate an ultrahigh-density array of silver nanocluste...
Collecting highly diluted target analytes into specific hot spot regions is vital for ultrasensitive...
A sandwich structured substrate was designed for quantitative molecular detection using surface enha...