DNA-decorated metal nanoparticles have found numerous applications, most of which rely on thiolated DNA (SH-DNA)-modified gold nanoparticles (AuNPs). Whereas silver nanoparticles (AgNPs) are known to have stronger plasmonic properties than AuNPs, modification of AgNPs with SH-DNA is technically challenging, partially due to the instability of Ag–S bonding. Here we demonstrate a facile approach to self-assemble unmodified DNA on AgNPs by exploiting intrinsic silver–cytosine (Ag–C) coordination. The strong Ag–C coordination allows for the ready formation of DNA-AgNP conjugates, which show favorable stability under conditions of high ionic strength and high temperature. These nanoconjugates possess much higher efficient molecular recognition c...
Metal ion interactions with DNA have far-reaching implications in biochemistry and DNA nanotechnolog...
Metal ion interactions with DNA have far-reaching implications in biochemistry and DNA nanotechnolog...
The programmable assembly of functional nanomaterials has been extensively addressed; however, their...
In this dissertation we focus on better understanding the interactions of silver with DNA, a topic w...
Conjugates between metal (silver and gold) nanoparticles (NP) and parallel stranded G-quadruplexes (...
The last 16 years have witnessed the landmark development of polyvalent thiolated DNA-functionalized...
In this dissertation we focus on better understanding the interactions of silver with DNA, a topic w...
Conjugates of DNA and gold nanoparticles (AuNPs) typically exploit the strong Au–S chemistry to self...
The goal of this project is to synthesize silver/gold (core/shell) nanoparticles and attach DNA stra...
Understanding the fundamental principles behind biomemetic nanoparticle self- assembly has been unde...
Colloidal silver nanoparticles were prepared by reducing silver nitrate with sodium borohydride. The...
We describe the preparation and properties of a stable conjugate between two 15 nm silver nanopartic...
Assays involving the controlled assembly of oligonucleotide-functionalised nanoparticles have been w...
DNA-protected silver clusters (AgN-DNA) possess unique fluorescence properties that depend on the sp...
The hybridization of gold nanoparticles (AuNPs), along with other nanomaterials, has encouraged appl...
Metal ion interactions with DNA have far-reaching implications in biochemistry and DNA nanotechnolog...
Metal ion interactions with DNA have far-reaching implications in biochemistry and DNA nanotechnolog...
The programmable assembly of functional nanomaterials has been extensively addressed; however, their...
In this dissertation we focus on better understanding the interactions of silver with DNA, a topic w...
Conjugates between metal (silver and gold) nanoparticles (NP) and parallel stranded G-quadruplexes (...
The last 16 years have witnessed the landmark development of polyvalent thiolated DNA-functionalized...
In this dissertation we focus on better understanding the interactions of silver with DNA, a topic w...
Conjugates of DNA and gold nanoparticles (AuNPs) typically exploit the strong Au–S chemistry to self...
The goal of this project is to synthesize silver/gold (core/shell) nanoparticles and attach DNA stra...
Understanding the fundamental principles behind biomemetic nanoparticle self- assembly has been unde...
Colloidal silver nanoparticles were prepared by reducing silver nitrate with sodium borohydride. The...
We describe the preparation and properties of a stable conjugate between two 15 nm silver nanopartic...
Assays involving the controlled assembly of oligonucleotide-functionalised nanoparticles have been w...
DNA-protected silver clusters (AgN-DNA) possess unique fluorescence properties that depend on the sp...
The hybridization of gold nanoparticles (AuNPs), along with other nanomaterials, has encouraged appl...
Metal ion interactions with DNA have far-reaching implications in biochemistry and DNA nanotechnolog...
Metal ion interactions with DNA have far-reaching implications in biochemistry and DNA nanotechnolog...
The programmable assembly of functional nanomaterials has been extensively addressed; however, their...