Conjugates of DNA and gold nanoparticles (AuNPs) typically exploit the strong Au–S chemistry to self-assemble thiolated oligonucleotides at AuNPs. However, it remains challenging to precisely control the orientation and conformation of surface-tethered oligonucleotides and finely tune the hybridization ability. We herein report a novel strategy for spatially controlled functionalization of AuNPs with designed diblock oligonucleotides that are free of modifications. We have demonstrated that poly adenine (polyA) can serve as an effective anchoring block for preferential binding with the AuNP surface, and the appended recognition block adopts an upright conformation that favors DNA hybridization. The lateral spacing and surface density of DNA...
Fast modification of large gold nanoparticles with DNA is achieved by using DNA with a polycationic ...
Hybridization of surface-immobilized oligonucleotides to their complementary counterparts is central...
Fast modification of large gold nanoparticles with DNA is achieved by using DNA with a polycationic ...
Oligonucleotide-conjugated bio-hybrid nanomaterials with a dense DNA layer on the surface have been ...
DNA-decorated metal nanoparticles have found numerous applications, most of which rely on thiolated ...
The last 16 years have witnessed the landmark development of polyvalent thiolated DNA-functionalized...
We report a novel and multifaceted approach for the quick synthesis of highly stable single-stranded...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/143775/1/cpnc1200.pd
Gold nanoparticles have been used for colorimetric sensing due to its unique optical properties aris...
The hybridization of gold nanoparticles (AuNPs), along with other nanomaterials, has encouraged appl...
Here, we present a strategy to trigger monovalent attachments of thoilated hairpin DNA onto AuNP, as...
DNA-functionalized gold nanoparticles (DNA-NPs) have enormous potential as building blocks for mater...
Oligonucleotide-conjugated bio-hybrid nanomaterials with a dense DNA layer on the surface have been ...
The hybridization of gold nanoparticles (AuNPs), along with other nanomaterials, has encouraged appl...
DNA-modified gold nanoparticles (AuNPs) are useful signal-reporters for detecting diverse molecules ...
Fast modification of large gold nanoparticles with DNA is achieved by using DNA with a polycationic ...
Hybridization of surface-immobilized oligonucleotides to their complementary counterparts is central...
Fast modification of large gold nanoparticles with DNA is achieved by using DNA with a polycationic ...
Oligonucleotide-conjugated bio-hybrid nanomaterials with a dense DNA layer on the surface have been ...
DNA-decorated metal nanoparticles have found numerous applications, most of which rely on thiolated ...
The last 16 years have witnessed the landmark development of polyvalent thiolated DNA-functionalized...
We report a novel and multifaceted approach for the quick synthesis of highly stable single-stranded...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/143775/1/cpnc1200.pd
Gold nanoparticles have been used for colorimetric sensing due to its unique optical properties aris...
The hybridization of gold nanoparticles (AuNPs), along with other nanomaterials, has encouraged appl...
Here, we present a strategy to trigger monovalent attachments of thoilated hairpin DNA onto AuNP, as...
DNA-functionalized gold nanoparticles (DNA-NPs) have enormous potential as building blocks for mater...
Oligonucleotide-conjugated bio-hybrid nanomaterials with a dense DNA layer on the surface have been ...
The hybridization of gold nanoparticles (AuNPs), along with other nanomaterials, has encouraged appl...
DNA-modified gold nanoparticles (AuNPs) are useful signal-reporters for detecting diverse molecules ...
Fast modification of large gold nanoparticles with DNA is achieved by using DNA with a polycationic ...
Hybridization of surface-immobilized oligonucleotides to their complementary counterparts is central...
Fast modification of large gold nanoparticles with DNA is achieved by using DNA with a polycationic ...