The unique energy transfer interaction between the optical Utilizing the direct energy transfer mechanism existing between semiconductor quantum dots and the hydrogen ion protein pump bacteriorhodopsin, a multi-functional bioelectronics platform is demonstrated. Fluorescence resonance energy transfer coupled QD-bR systems have been proven in both aqueous and dried film states, allowing for the vast QD optical absorbance range to directly contribute energy to the bR proton pumping sequence. A nanoscale deposition technique was employed to construct hybrid QD-bR electrodes capable of harnessing the FRET phenomena and enhancing the bR electrical output by nearly 300%. A biosensing prototype system was created where the target molecule disrupts...
Utilization of light is crucial for the life cycle of many organisms. Also, many organisms can creat...
Bacteriorhodopsin (bR) is one of the most attractive biomaterials used in bioelectronics. In this wo...
Article publicat sota la llicència AuthorChoice de l'American Chemical Society: https://pubs.acs.org...
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...
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...
The integration of novel nanomaterials with highly-functional biological molecules has advanced mult...
The unique energy transfer interaction between the optical protein bacteriorhodopsin (bR) and CdSe/Z...
We present a route toward a radical improvement in solar cell efficiency using resonant energy trans...
The integration of novel nanomaterials with highly-functional biological molecules has advanced mult...
*S Supporting Information ABSTRACT: We present a route toward a radical improve-ment in solar cell e...
Nanoscale sensing arrays utilizing the unique properties of the optical protein bacteriorhodopsin an...
We present a route toward a radical improvement in solar cell efficiency using resonant energy trans...
Molecular sensors and molecular electronics are a major component of a recent research area known as...
Utilization of light is crucial for the life cycle of many organisms. Also, many organisms can creat...
Bacteriorhodopsin (bR) is one of the most attractive biomaterials used in bioelectronics. In this wo...
Article publicat sota la llicència AuthorChoice de l'American Chemical Society: https://pubs.acs.org...
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...
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...
The integration of novel nanomaterials with highly-functional biological molecules has advanced mult...
The unique energy transfer interaction between the optical protein bacteriorhodopsin (bR) and CdSe/Z...
We present a route toward a radical improvement in solar cell efficiency using resonant energy trans...
The integration of novel nanomaterials with highly-functional biological molecules has advanced mult...
*S Supporting Information ABSTRACT: We present a route toward a radical improve-ment in solar cell e...
Nanoscale sensing arrays utilizing the unique properties of the optical protein bacteriorhodopsin an...
We present a route toward a radical improvement in solar cell efficiency using resonant energy trans...
Molecular sensors and molecular electronics are a major component of a recent research area known as...
Utilization of light is crucial for the life cycle of many organisms. Also, many organisms can creat...
Bacteriorhodopsin (bR) is one of the most attractive biomaterials used in bioelectronics. In this wo...
Article publicat sota la llicència AuthorChoice de l'American Chemical Society: https://pubs.acs.org...