Precise organization of metallic nanoclusters on DNA scaffolds holds great interest for nanopatterned materials that may find uses in electronics, sensors, medicine, and many other fields. Herein, we report the site-specific growth of fluorescent silver nanoclusters by using a mismatched double-stranded DNA template. Few-atom, molecular-scale Ag clusters are found to localize at the mismatched site and the metallized DNA retains its integrity. The DNA-encapsulated nanoclusters can be utilized as functional biological probes to identify single-nucleotide polymorphisms by taking advantage of the very bright fluorescence and excellent photostability of the nanoclusters. This approach offers the possibility of constructing novel DNA-based nanom...
We show that DNA hairpins template the site-specific assembly of fluorescent few-atom Ag clusters on...
Fluorescent silver nanoclusters (Ag-NCs) are in prominence as novel sensing materials due to their b...
Greater understanding of the mutual influence between DNA and the associated nanomaterial on the pro...
Besides being a passive carrier of genetic information, DNA can also serve as an architecture templa...
DNA serves as a versatile template for few-atom silver clusters and their organized self-assembly. T...
DNA serves as a versatile template for few-atom silver clusters and their organized self-assembly. T...
DNA serves as a versatile template for few-atom silver clusters and their organized self-assembly. T...
Fluorescent silver clusters with unique rod-like geometries are stabilized by DNA. The sizes and col...
DNA-templated silver nanoclusters (DNA-AgNCs) are fluorescent molecules containing few-atom clusters...
DNA-protected silver clusters (AgN-DNA) possess unique fluorescence properties that depend on the sp...
Fluorescent silver nanoclusters (Ag-NCs) are in prominence as novel sensing materials due to their b...
This work described for the first time the stem-directed growth of silver nanoclusters (AgNCs) with ...
DNA-protected silver clusters (AgN-DNA) possess unique fluorescence properties that depend on the sp...
DNA-protected silver clusters (AgN-DNA) possess unique fluorescence properties that depend on the sp...
In this review, we discuss the synthesis and applications of DNA-templated fluorescent silver nanocl...
We show that DNA hairpins template the site-specific assembly of fluorescent few-atom Ag clusters on...
Fluorescent silver nanoclusters (Ag-NCs) are in prominence as novel sensing materials due to their b...
Greater understanding of the mutual influence between DNA and the associated nanomaterial on the pro...
Besides being a passive carrier of genetic information, DNA can also serve as an architecture templa...
DNA serves as a versatile template for few-atom silver clusters and their organized self-assembly. T...
DNA serves as a versatile template for few-atom silver clusters and their organized self-assembly. T...
DNA serves as a versatile template for few-atom silver clusters and their organized self-assembly. T...
Fluorescent silver clusters with unique rod-like geometries are stabilized by DNA. The sizes and col...
DNA-templated silver nanoclusters (DNA-AgNCs) are fluorescent molecules containing few-atom clusters...
DNA-protected silver clusters (AgN-DNA) possess unique fluorescence properties that depend on the sp...
Fluorescent silver nanoclusters (Ag-NCs) are in prominence as novel sensing materials due to their b...
This work described for the first time the stem-directed growth of silver nanoclusters (AgNCs) with ...
DNA-protected silver clusters (AgN-DNA) possess unique fluorescence properties that depend on the sp...
DNA-protected silver clusters (AgN-DNA) possess unique fluorescence properties that depend on the sp...
In this review, we discuss the synthesis and applications of DNA-templated fluorescent silver nanocl...
We show that DNA hairpins template the site-specific assembly of fluorescent few-atom Ag clusters on...
Fluorescent silver nanoclusters (Ag-NCs) are in prominence as novel sensing materials due to their b...
Greater understanding of the mutual influence between DNA and the associated nanomaterial on the pro...