Quantum dot-DNA oligonucleotide (QD-DNA) conjugates have been used in many fields such as nucleic acid bioassays, intracellular probes, and drug delivery systems. A typical solid-phase method that achieves rapid loading of oligonucleotides on surfaces of QDs involves a two-step reaction and is performed in a batch-based approach. In contrast, droplet microfluidics offers many advantages that are unavailable when using batch processing, providing rapid and dense immobilized DNA oligonucleotides on QDs. The presented droplet microfluidic approach allows high-quality QD-DNA conjugates to be produced using one single device, which is designed to have two droplet generators, one droplet merger, and one mixer. One of the droplet generators coenca...
Owing to their unique optical properties, colloidal quantum dots (QDs) have attracted much attention...
Oligonucleotide-coated nanoparticles (NPs) have been used in numerous applications such as bioassays...
The potential for an electrokinetically driven, FRET-based microfluidic biosensor for SNP discrimina...
Quantum dots (QDs) provide opportunities for the development of bioassays, biosensors, and drug deli...
The use of microfluidic tools to develop two novel approaches to surface-based oligonucleotide hybri...
The work described herein has explored solid-phase transduction of nucleic acid hybridization on pla...
The research that is presented herein explores the development of a solid-phase DNA hybridization as...
The unique spectroscopic properties of quantum dots (QDs) are of interest for application in intrace...
Semiconductor quantum dots (QDs) have served as the basis for signal development in a variety of bio...
A paper-based platform was investigated in which the selective detection of oligonucleotide targets ...
The work described herein explored solution-phase and solid-phase transduction of nucleic acid hybri...
A multiplexed solid-phase nucleic acid hybridization assay on a paper-based platform is presented us...
Nanotechnology builds devices from the bottom up with atomic accuracy. Among the basic nano-componen...
Nanoscale vectors comprised of cationic polymers that condense DNA to form nanocomplexes are promisi...
A paper-based solid-phase assay is presented for transduction of nucleic acid hybridization using im...
Owing to their unique optical properties, colloidal quantum dots (QDs) have attracted much attention...
Oligonucleotide-coated nanoparticles (NPs) have been used in numerous applications such as bioassays...
The potential for an electrokinetically driven, FRET-based microfluidic biosensor for SNP discrimina...
Quantum dots (QDs) provide opportunities for the development of bioassays, biosensors, and drug deli...
The use of microfluidic tools to develop two novel approaches to surface-based oligonucleotide hybri...
The work described herein has explored solid-phase transduction of nucleic acid hybridization on pla...
The research that is presented herein explores the development of a solid-phase DNA hybridization as...
The unique spectroscopic properties of quantum dots (QDs) are of interest for application in intrace...
Semiconductor quantum dots (QDs) have served as the basis for signal development in a variety of bio...
A paper-based platform was investigated in which the selective detection of oligonucleotide targets ...
The work described herein explored solution-phase and solid-phase transduction of nucleic acid hybri...
A multiplexed solid-phase nucleic acid hybridization assay on a paper-based platform is presented us...
Nanotechnology builds devices from the bottom up with atomic accuracy. Among the basic nano-componen...
Nanoscale vectors comprised of cationic polymers that condense DNA to form nanocomplexes are promisi...
A paper-based solid-phase assay is presented for transduction of nucleic acid hybridization using im...
Owing to their unique optical properties, colloidal quantum dots (QDs) have attracted much attention...
Oligonucleotide-coated nanoparticles (NPs) have been used in numerous applications such as bioassays...
The potential for an electrokinetically driven, FRET-based microfluidic biosensor for SNP discrimina...