Nanoantennae show potential for photosynthesis research for two reasons; first by spatially confining light for experiments which require high spatial resolution, and second by enhancing the photon emission of single light-harvesting complexes. For effective use of nanoantennae a detailed understanding of the interaction between the nanoantenna and the light-harvesting complex is required. Here we report how the excitation and emission of multiple purple bacterial LH2s (light-harvesting complex 2) are controlled by single gold nanorod antennae. LH2 complexes were chemically attached to such antennae, and the antenna length was systematically varied to tune the resonance with respect to the LH2 absorption and emission. There are three main f...
We demonstrate a strong, 5-fold enhancement of the radiative decay rate from highly efficient fluore...
The influence of plasmon excitations in spherical gold nanoparticles on the optical properties of a ...
Pairs of gold elliptical nanoparticles form antennae, resonant in the visible. A dye, embedded in a ...
Nanoantennae show potential for photosynthesis research for two reasons; first by spatially confinin...
\u3cp\u3eNanoantennae show potential for photosynthesis research for two reasons; first by spatially...
The nature of the highly efficient energy transfer in photosynthetic light-harvesting complexes is a...
The nature of the highly efficient energy transfer in photosynthetic light-harvesting complexes is a...
Fluorescence imaging of hybrid nanostructures composed of a bacterial light-harvesting complex LH2 a...
<p>Nanoantennas are well-known for their effective role in fluorescence enhancement, both in excitat...
Enhanced fluorescence is observed from dye molecules interacting with optical nanoantenna arrays. El...
We demonstrate a strong, 5-fold enhancement of the radiative decay rate from highly efficient fluore...
Plasmonic coupling of metallic nanoparticles and adjacent pigments can dramatically increase the bri...
Nanoantennas are well-known for their effective role in fluorescence enhancement, both in excitation...
Nanoantennas are well-known for their effective role in fluorescence enhancement, both in excitation...
Optical nanoantennas can affect the decay rates of nearby emitters by modifying the local density of...
We demonstrate a strong, 5-fold enhancement of the radiative decay rate from highly efficient fluore...
The influence of plasmon excitations in spherical gold nanoparticles on the optical properties of a ...
Pairs of gold elliptical nanoparticles form antennae, resonant in the visible. A dye, embedded in a ...
Nanoantennae show potential for photosynthesis research for two reasons; first by spatially confinin...
\u3cp\u3eNanoantennae show potential for photosynthesis research for two reasons; first by spatially...
The nature of the highly efficient energy transfer in photosynthetic light-harvesting complexes is a...
The nature of the highly efficient energy transfer in photosynthetic light-harvesting complexes is a...
Fluorescence imaging of hybrid nanostructures composed of a bacterial light-harvesting complex LH2 a...
<p>Nanoantennas are well-known for their effective role in fluorescence enhancement, both in excitat...
Enhanced fluorescence is observed from dye molecules interacting with optical nanoantenna arrays. El...
We demonstrate a strong, 5-fold enhancement of the radiative decay rate from highly efficient fluore...
Plasmonic coupling of metallic nanoparticles and adjacent pigments can dramatically increase the bri...
Nanoantennas are well-known for their effective role in fluorescence enhancement, both in excitation...
Nanoantennas are well-known for their effective role in fluorescence enhancement, both in excitation...
Optical nanoantennas can affect the decay rates of nearby emitters by modifying the local density of...
We demonstrate a strong, 5-fold enhancement of the radiative decay rate from highly efficient fluore...
The influence of plasmon excitations in spherical gold nanoparticles on the optical properties of a ...
Pairs of gold elliptical nanoparticles form antennae, resonant in the visible. A dye, embedded in a ...