DNA-conjugated gold nanoparticle (AuNP) is an attractive building block to construct elegant plasmonic nanomaterials by self-assembly but the complicated interaction between multivalent nanoconjugates governing the assembly process and the properties of assembled structures remains poorly understood. Herein, with an <i>in situ</i> kinetic single-particle imaging method, we report the dynamic interaction between single multivalent DNA-conjugated AuNPs quantitatively depends on the nucleic acid sequence in nanoconjugates. From the binding dynamics analysis, it was found that the binding of nanoconjugates with DNA length longer than nine bases is kinetically irreversible and the binding rate is dependent on both the sequence length and GC cont...
Traditional methods for the construction of nanoparticle arrays and lattices exploit Watson–Crick ba...
The use of deoxyribonucleic acid (DNA) oligonucleotides has proven to be a powerful and versatile st...
Much of the excitement regarding nanotechnology stems from the idea of bottom-up self-assembly: th...
The programmable assembly of functional nanomaterials has been extensively addressed; however, their...
DNA-decorated metal nanoparticles have found numerous applications, most of which rely on thiolated ...
Understanding the fundamental principles behind biomemetic nanoparticle self- assembly has been unde...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
The hybridization of gold nanoparticles (AuNPs), along with other nanomaterials, has encouraged appl...
Highly ordered nanoparticle arrays, or nanoparticle superlattices, are a sought after class of mater...
The hybridization of gold nanoparticles (AuNPs), along with other nanomaterials, has encouraged appl...
Atomic force microscopy has been used for direct visualization of the wrapping of DNA around 30-nm-s...
Base-pairing stability in DNA-gold nanoparticle (DNA-AuNP) multimers along with their dynamics under...
The last 16 years have witnessed the landmark development of polyvalent thiolated DNA-functionalized...
Gold nanoparticles (Au NPs) have become one of the building blocks for superior assembly and device ...
Traditional methods for the construction of nanoparticle arrays and lattices exploit Watson–Crick ba...
The use of deoxyribonucleic acid (DNA) oligonucleotides has proven to be a powerful and versatile st...
Much of the excitement regarding nanotechnology stems from the idea of bottom-up self-assembly: th...
The programmable assembly of functional nanomaterials has been extensively addressed; however, their...
DNA-decorated metal nanoparticles have found numerous applications, most of which rely on thiolated ...
Understanding the fundamental principles behind biomemetic nanoparticle self- assembly has been unde...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
The hybridization of gold nanoparticles (AuNPs), along with other nanomaterials, has encouraged appl...
Highly ordered nanoparticle arrays, or nanoparticle superlattices, are a sought after class of mater...
The hybridization of gold nanoparticles (AuNPs), along with other nanomaterials, has encouraged appl...
Atomic force microscopy has been used for direct visualization of the wrapping of DNA around 30-nm-s...
Base-pairing stability in DNA-gold nanoparticle (DNA-AuNP) multimers along with their dynamics under...
The last 16 years have witnessed the landmark development of polyvalent thiolated DNA-functionalized...
Gold nanoparticles (Au NPs) have become one of the building blocks for superior assembly and device ...
Traditional methods for the construction of nanoparticle arrays and lattices exploit Watson–Crick ba...
The use of deoxyribonucleic acid (DNA) oligonucleotides has proven to be a powerful and versatile st...
Much of the excitement regarding nanotechnology stems from the idea of bottom-up self-assembly: th...