DocumentCode :
3229683
Title :
Multi-functional protein-QD hybrid substrates for photovoltaics and real-time biosensing
Author :
Griep, Mark ; Martin, Josh ; Rodriguez, Victor ; Winder, Eric ; Lueking, Donald ; Mackay, Raymond ; Friedrich, Craig ; Karna, Shashi P.
Author_Institution :
Weapons & Mater. Res. Directorate, US Army Res. Lab., Aberdeen Proving Ground, MD, USA
fYear :
2011
fDate :
15-18 Aug. 2011
Firstpage :
233
Lastpage :
236
Abstract :
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 the QD-bR FRET relationship and is signaled by an altered bR electrical output. With an integrated TiO2 electron generating substrate, the QD-bR hybrid functions as a sensitizer in a thin film bio solar cell design, which will be presented in more detail at the conference and in the full paper.
Keywords :
biosensors; fluorescence; photovoltaic effects; proteins; semiconductor quantum dots; FRET phenomena; bacteriorhodopsin; bioelectronics platform; direct energy transfer mechanism; fluorescence resonance energy transfer; optical absorbance range; photovoltaics; protein-QD hybrid substrate; real time biosensing; semiconductor quantum dots; Arrays; Electrodes; Energy exchange; Films; Nanobioscience; Proteins; Substrates;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nanotechnology (IEEE-NANO), 2011 11th IEEE Conference on
Conference_Location :
Portland, OR
ISSN :
1944-9399
Print_ISBN :
978-1-4577-1514-3
Electronic_ISBN :
1944-9399
Type :
conf
DOI :
10.1109/NANO.2011.6144575
Filename :
6144575
Link To Document :
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