International audienceThe photosensitive protein bacteriorhodopsin (bR) has been shown to be a promising material for optoelectronic applications, but it cannot effectively absorb and utilize light energy in the near-infrared (NIR) region of the optical spectrum. Semiconductor quantum dots (QDs) have two-photon absorption cross-sections two orders of magnitude larger than those of bR and can effectively transfer the up-converted energy of two NIR photons to bR via the Förster resonance energy transfer (FRET). In this study, we have engineered a photoelectrochemical cell based on a hybrid material consisting of QDs and bR-containing purple membranes (PMs) of Halobacterium salinarum and demonstrated that this cell can generate an electrical s...
Copyright © 2012 Mark H. Griep et al. This is an open access article distributed under the Creative ...
*S Supporting Information ABSTRACT: We present a route toward a radical improve-ment in solar cell e...
The integration of novel nanomaterials with highly-functional biological molecules has advanced mult...
AbstractIn this work we present the results of the resonance energy transfer study in bio-nanohybrid...
AbstractIn this work we present the results of the resonance energy transfer study in bio-nanohybrid...
We present a route toward a radical improvement in solar cell efficiency using resonant energy trans...
Nanoscale sensing arrays utilizing the unique properties of the optical protein bacteriorhodopsin an...
Harnessing the energy transfer interactions between the optical protein bacteriorhodopsin (bR) and C...
We present a route toward a radical improvement in solar cell efficiency using resonant energy trans...
Harnessing the energy transfer interactions between the optical protein bacteriorhodopsin (bR) and C...
Harnessing the energy transfer interactions between the optical protein bacteriorhodopsin (bR) and C...
Bacteriorhodopsin (bR) is one of the most attractive biomaterials used in bioelectronics. In this wo...
Copyright © 2012 Mark H. Griep et al. This is an open access article distributed under the Creative ...
Copyright © 2012 Mark H. Griep et al. This is an open access article distributed under the Creative ...
Quantum dots (QDs) can absorb ultraviolet and long-wavelength light energy much more efficiently tha...
Copyright © 2012 Mark H. Griep et al. This is an open access article distributed under the Creative ...
*S Supporting Information ABSTRACT: We present a route toward a radical improve-ment in solar cell e...
The integration of novel nanomaterials with highly-functional biological molecules has advanced mult...
AbstractIn this work we present the results of the resonance energy transfer study in bio-nanohybrid...
AbstractIn this work we present the results of the resonance energy transfer study in bio-nanohybrid...
We present a route toward a radical improvement in solar cell efficiency using resonant energy trans...
Nanoscale sensing arrays utilizing the unique properties of the optical protein bacteriorhodopsin an...
Harnessing the energy transfer interactions between the optical protein bacteriorhodopsin (bR) and C...
We present a route toward a radical improvement in solar cell efficiency using resonant energy trans...
Harnessing the energy transfer interactions between the optical protein bacteriorhodopsin (bR) and C...
Harnessing the energy transfer interactions between the optical protein bacteriorhodopsin (bR) and C...
Bacteriorhodopsin (bR) is one of the most attractive biomaterials used in bioelectronics. In this wo...
Copyright © 2012 Mark H. Griep et al. This is an open access article distributed under the Creative ...
Copyright © 2012 Mark H. Griep et al. This is an open access article distributed under the Creative ...
Quantum dots (QDs) can absorb ultraviolet and long-wavelength light energy much more efficiently tha...
Copyright © 2012 Mark H. Griep et al. This is an open access article distributed under the Creative ...
*S Supporting Information ABSTRACT: We present a route toward a radical improve-ment in solar cell e...
The integration of novel nanomaterials with highly-functional biological molecules has advanced mult...