This work described for the first time the stem-directed growth of silver nanoclusters (AgNCs) with high brightness using the well-chosen hairpin DNA structure. In comparison with the corresponding double-stranded (ds) DNA capped AgNCs, the fluorescence emission of hairpin DNA structure templated AgNCs were lighted up with 12.5-fold enhancement fluorescent intensity by sequence modification with T-loop. It provided a new prospect for precise placement of nanoscale optical elements onto DNA scaffolds. And these DNA protected AgNCs exhibited the base sequence, strand length and microenvironment-dependent fluorescent properties. Benefiting from these properties, versatile logic gates (OR, NOT, INHIBIT, XNOR, IMPLICATION) were constructed using...
DNA serves as a versatile template for few-atom silver clusters and their organized self-assembly. T...
DNA-stabilized silver nanoclusters (AgNCs), the fluorescence emission of which can rival that of typ...
Over a decade of research on DNA-templated silver nanoclusters (DNA-AgNCs), this material has now be...
Besides being a passive carrier of genetic information, DNA can also serve as an architecture templa...
A DNA-encoding strategy is reported for the programmable regulation of the fluorescence properties o...
Precise organization of metallic nanoclusters on DNA scaffolds holds great interest for nanopatterne...
Greater understanding of the mutual influence between DNA and the associated nanomaterial on the pro...
Molecule-like silver nanoclusters (AgNCs) with few to tens of atoms are highly sensitive to the sequ...
DNA-templated silver nanoclusters (DNA-AgNCs) are fluorescent molecules containing few-atom clusters...
Silver has a long history of antibacterial effectiveness. The combination of atomically precise meta...
Atomically precise silver nanoclusters (AgNCs) are small nanostructures consisting of only a few ato...
DNA-protected silver clusters (AgN-DNA) possess unique fluorescence properties that depend on the sp...
Fluorescent silver clusters with unique rod-like geometries are stabilized by DNA. The sizes and col...
DNA-protected silver clusters (AgN-DNA) possess unique fluorescence properties that depend on the sp...
DNA-stabilized silver nanoclusters (AgNCs), the fluorescence emission of which can rival that of typ...
DNA serves as a versatile template for few-atom silver clusters and their organized self-assembly. T...
DNA-stabilized silver nanoclusters (AgNCs), the fluorescence emission of which can rival that of typ...
Over a decade of research on DNA-templated silver nanoclusters (DNA-AgNCs), this material has now be...
Besides being a passive carrier of genetic information, DNA can also serve as an architecture templa...
A DNA-encoding strategy is reported for the programmable regulation of the fluorescence properties o...
Precise organization of metallic nanoclusters on DNA scaffolds holds great interest for nanopatterne...
Greater understanding of the mutual influence between DNA and the associated nanomaterial on the pro...
Molecule-like silver nanoclusters (AgNCs) with few to tens of atoms are highly sensitive to the sequ...
DNA-templated silver nanoclusters (DNA-AgNCs) are fluorescent molecules containing few-atom clusters...
Silver has a long history of antibacterial effectiveness. The combination of atomically precise meta...
Atomically precise silver nanoclusters (AgNCs) are small nanostructures consisting of only a few ato...
DNA-protected silver clusters (AgN-DNA) possess unique fluorescence properties that depend on the sp...
Fluorescent silver clusters with unique rod-like geometries are stabilized by DNA. The sizes and col...
DNA-protected silver clusters (AgN-DNA) possess unique fluorescence properties that depend on the sp...
DNA-stabilized silver nanoclusters (AgNCs), the fluorescence emission of which can rival that of typ...
DNA serves as a versatile template for few-atom silver clusters and their organized self-assembly. T...
DNA-stabilized silver nanoclusters (AgNCs), the fluorescence emission of which can rival that of typ...
Over a decade of research on DNA-templated silver nanoclusters (DNA-AgNCs), this material has now be...