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8 p, 4.3 MB Engineering a robust photovoltaic device with quantum dots and bacteriorhodopsin / Renugopalakrishnan, Venkatesan (Northeastern University. Department of Chemistry and Chemical Biology) ; Barbiellini, Bernardo (Northeastern University. Department of Chemistry and Chemical Biology) ; King, Chris (Northeastern University. Department of Mathematics) ; Molinari, Michael (Université de Reims Champagne-Ardenne. Laboratoire de Recherche en Nanosciences) ; Mochalov, Konstantin (Moscow Engineering Physics Institute) ; Sukhanova, Alyona (Université de Reims Champagne-Ardenne. Laboratoire de Recherche en Nanosciences) ; Nabiev, Igor (Université de Reims Champagne-Ardenne. Laboratoire de Recherche en Nanosciences) ; Fojan, Peter (Aalborg Universitet. Department of Physics and Nanotechnology) ; Tuller, Harry L. (Massachusetts Institute of Technology. Department of Materials Science and Engineering) ; Chin, Michael (Columbia University. Langmuir Center for Colloids and Interfaces) ; Somasundaran, Ponisseril (Columbia University. Langmuir Center for Colloids and Interfaces) ; Padrós, Esteve (Universitat Autònoma de Barcelona. Departament de Bioquímica i de Biologia Molecular) ; Ramakrishna, Seeram (National University of Singapore. Nanoscience and Nanotechnology Initiative)
We present a route toward a radical improvement in solar cell efficiency using resonant energy transfer and sensitization of semiconductor metal oxides with a light-harvesting quantum dot (QD)/bacteriorhodopsin (bR) layer designed by protein engineering. [...]
2014 - 10.1021/jp502885s
Journal of physical chemistry. C, Vol. 118, issue 30 (Jul. 2014) , p. 16710-16717  

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