Design Considerations for the Electrical Power Supply of Future Civil Aircraft with Active High-Lift Systems. Mueller, J., Bensmann, A., Bensmann, B., Fischer, T., Kadyk, T., Narjes, G., Kauth, F., Ponick, B., Seume, J., Krewer, U., Hanke-Rauschenbach, R., & Mertens, A. Energies, 11(2):179, January, 2018. Paper doi abstract bibtex This paper reviews the recent research progress in the incorporation of plasmonic nanostructures with photovoltaic devices and the potential for surface plasmon enhanced absorption. We first outline a variety of cell architectures incorporating metal nanostructures. We then review the experimental fabrication methods and measurements to date, as well as systematic theoretical studies of the optimal nanostructure shapes. Finally we discuss photovoltaic absorber materials that could benefit from surface plasmon enhanced absorption.
@article{mueller_design_2018,
title = {Design {Considerations} for the {Electrical} {Power} {Supply} of {Future} {Civil} {Aircraft} with {Active} {High}-{Lift} {Systems}},
volume = {11},
copyright = {All rights reserved},
issn = {1996-1073},
url = {http://www.mdpi.com/1996-1073/11/1/179},
doi = {10.3390/en11010179},
abstract = {This paper reviews the recent research progress in the incorporation of plasmonic nanostructures with photovoltaic devices and the potential for surface plasmon enhanced absorption. We first outline a variety of cell architectures incorporating metal nanostructures. We then review the experimental fabrication methods and measurements to date, as well as systematic theoretical studies of the optimal nanostructure shapes. Finally we discuss photovoltaic absorber materials that could benefit from surface plasmon enhanced absorption.},
number = {2},
journal = {Energies},
author = {Mueller, J.-K. and Bensmann, A. and Bensmann, B. and Fischer, T. and Kadyk, T. and Narjes, G. and Kauth, F. and Ponick, B. and Seume, J. and Krewer, U. and Hanke-Rauschenbach, R. and Mertens, A.},
month = jan,
year = {2018},
pmid = {20814916},
keywords = {photovoltaic devices, solar cells, surface plasmon resonance, thin films},
pages = {179},
}
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