A combination of gold nanoparticles (AuNPs) and nucleic acids has been used in biosensing applications. However, there is a poor fundamental understanding of how gold nanoparticle surfaces influence the DNA hybridization process. Here, we measured the rate constants of the hybridization and dehybridization of DNA on gold nanoparticle surfaces to enable the determination of activation parameters using transition state theory. We show that the target bases need to be detached from the gold nanoparticle surfaces before zipping. This causes a shift of the rate-limiting step of hybridization to the mismatch-sensitive zipping step. Furthermore, our results propose that the binding of gold nanoparticles to the single-stranded DNA segments (commonl...
Gold nanoparticles have unique optoelectronic properties such as a large extinction coefficient that...
Abstract Gold nanoparticles (GNPs) are widely used to detect DNA. We studied the effect of pH on the...
The last 16 years have witnessed the landmark development of polyvalent thiolated DNA-functionalized...
A combination of gold nanoparticles (AuNPs) and nucleic acids has been used in biosensing applicatio...
In this thesis, we report the use of gold nanoparticles (AuNPs) to enhance the detection of single n...
Hybridization of single-stranded DNA immobilized on the surface of gold nanoparticles (GNPs) into do...
Gold nanoparticles are widely adopted in a variety of applications such as biomarkers in the diagnos...
Gold nanoparticles are widely adopted in a variety of applications such as biomarkers in the diagnos...
Optical biosensors that utilize unmodified Gold nanoparticles (GNPs) and nucleic acid probes are one...
Gold nanoparticles can be utilized in biomedical applications such as diagnostics, visual markers, a...
Gold nanoparticles can be utilized in biomedical applications such as diagnostics, visual markers, a...
Gold nanoparticles can be utilized in biomedical applications such as diagnostics, visual markers, a...
Hybridization of surface-immobilized oligonucleotides to their complementary counterparts is central...
The binding affinity of single stranded DNA (ssDNA) for gold nanoparticle surface is studied in this...
Gold nanoparticles have unique optoelectronic properties such as a large extinction coefficient that...
Gold nanoparticles have unique optoelectronic properties such as a large extinction coefficient that...
Abstract Gold nanoparticles (GNPs) are widely used to detect DNA. We studied the effect of pH on the...
The last 16 years have witnessed the landmark development of polyvalent thiolated DNA-functionalized...
A combination of gold nanoparticles (AuNPs) and nucleic acids has been used in biosensing applicatio...
In this thesis, we report the use of gold nanoparticles (AuNPs) to enhance the detection of single n...
Hybridization of single-stranded DNA immobilized on the surface of gold nanoparticles (GNPs) into do...
Gold nanoparticles are widely adopted in a variety of applications such as biomarkers in the diagnos...
Gold nanoparticles are widely adopted in a variety of applications such as biomarkers in the diagnos...
Optical biosensors that utilize unmodified Gold nanoparticles (GNPs) and nucleic acid probes are one...
Gold nanoparticles can be utilized in biomedical applications such as diagnostics, visual markers, a...
Gold nanoparticles can be utilized in biomedical applications such as diagnostics, visual markers, a...
Gold nanoparticles can be utilized in biomedical applications such as diagnostics, visual markers, a...
Hybridization of surface-immobilized oligonucleotides to their complementary counterparts is central...
The binding affinity of single stranded DNA (ssDNA) for gold nanoparticle surface is studied in this...
Gold nanoparticles have unique optoelectronic properties such as a large extinction coefficient that...
Gold nanoparticles have unique optoelectronic properties such as a large extinction coefficient that...
Abstract Gold nanoparticles (GNPs) are widely used to detect DNA. We studied the effect of pH on the...
The last 16 years have witnessed the landmark development of polyvalent thiolated DNA-functionalized...