Functional DNA nanotechnology is a rapidly growing area of research with many prospective photonic applications, including roles as wires and switches, logic operators, and smart biological probes and delivery vectors. Photonic wire constructs are one such example and comprise a Förster resonance energy transfer (FRET) cascade between fluorescent dyes arranged periodically along a DNA scaffold. To date, the majority of research on photonic wires has focused on setting new benchmarks for efficient energy transfer over more steps and across longer distances, using almost exclusively organic fluorescent dyes and strictly DNA structures. Here, we expand the range of materials utilized with DNA photonic wires by demonstrating the use of a lumin...
Heilemann M, Kasper R, Tinnefeld P, Sauer M. Dissecting and reducing the heterogeneity of excited-st...
Nucleic acid hybridization probes are sought after for numerous assay and imaging applications. Thes...
DNA is a promising material for use in nanotechnology; the persistence length of double stranded DNA...
Molecular logic devices (MLDs) constructed from DNA are promising for applications in bioanalysis, c...
Assembling DNA-based photonic wires around semiconductor quantum dots (QDs) creates optically active...
We demonstrate the synthesis and spectroscopic characterization of an unidirectional photonic wire b...
The extent of photon energy transfer through individual DNA-based molecular wires composed of five d...
DNA-based photonic wires that exploit Förster resonance energy transfer (FRET) between pendant fluor...
DNA-scaffolded molecular photonic wires (MPWs) displaying prearranged donor–acceptor chromophore pai...
DNA demonstrates a remarkable capacity for creating designer nanostructures and devices. A growing n...
The extent of photon energy transfer through individual DNA-based molecular wires composed of five d...
Sanchez-Mosteiro G, van Dijk EMHP, Hernando J, et al. DNA-based molecular wires: Multiple emission p...
An approach combining DNA nanoscaffolds with supramolecular polymers for the efficient and direction...
We demonstrate a label-free, sequence specific DNA sensor based on fluorescence resonant energy tran...
A significant amount of work has been done to improve design and fabrication of DNA constructs with ...
Heilemann M, Kasper R, Tinnefeld P, Sauer M. Dissecting and reducing the heterogeneity of excited-st...
Nucleic acid hybridization probes are sought after for numerous assay and imaging applications. Thes...
DNA is a promising material for use in nanotechnology; the persistence length of double stranded DNA...
Molecular logic devices (MLDs) constructed from DNA are promising for applications in bioanalysis, c...
Assembling DNA-based photonic wires around semiconductor quantum dots (QDs) creates optically active...
We demonstrate the synthesis and spectroscopic characterization of an unidirectional photonic wire b...
The extent of photon energy transfer through individual DNA-based molecular wires composed of five d...
DNA-based photonic wires that exploit Förster resonance energy transfer (FRET) between pendant fluor...
DNA-scaffolded molecular photonic wires (MPWs) displaying prearranged donor–acceptor chromophore pai...
DNA demonstrates a remarkable capacity for creating designer nanostructures and devices. A growing n...
The extent of photon energy transfer through individual DNA-based molecular wires composed of five d...
Sanchez-Mosteiro G, van Dijk EMHP, Hernando J, et al. DNA-based molecular wires: Multiple emission p...
An approach combining DNA nanoscaffolds with supramolecular polymers for the efficient and direction...
We demonstrate a label-free, sequence specific DNA sensor based on fluorescence resonant energy tran...
A significant amount of work has been done to improve design and fabrication of DNA constructs with ...
Heilemann M, Kasper R, Tinnefeld P, Sauer M. Dissecting and reducing the heterogeneity of excited-st...
Nucleic acid hybridization probes are sought after for numerous assay and imaging applications. Thes...
DNA is a promising material for use in nanotechnology; the persistence length of double stranded DNA...