Zobrazeno 1 - 6
of 6
pro vyhledávání: '"J. Kamire"'
Autor:
B. Van Baelenberghe, C. Raker, B. Cowburn, P. M. Musembi, A. Nussbaumer, J. Kamire, Michelle L. Taylor, M. Horions, Robert D. Sluka, V. Sindorf, Alex Rogers, D. Kohlmeier, D. Goebbels, Hfr Hereward
Publikováno v:
Atoll Research Bulletin. :1-45
Watamu Marine National Park (WMNP) is one of the oldest no-take Marine Protected Areas (MPAs) in the world. Since its establishment in 1968, it has been the subject of a number of scientific studies as well as suffering from a range of modern threats
Autor:
Kelly L. Materna, Gary W. Brudvig, Michael R. Wasielewski, Omar K. Farha, Brian T. Phelan, Joseph T. Hupp, William L. Hoffeditz, Rebecca J. Kamire, Julianne M. Thomsen
Publikováno v:
The Journal of Physical Chemistry C. 121:3752-3764
Improving stability and slowing charge recombination are some of the greatest challenges in the development of dye-sensitized photoelectrochemical cells (DSPECs) for solar fuels production. We have investigated the effect of encasing dye molecules in
Autor:
Omar K. Farha, Brian T. Phelan, Michael R. Wasielewski, Marek B. Majewski, William L. Hoffeditz, Joseph T. Hupp, Rebecca J. Kamire
Publikováno v:
Chemical Science. 8:541-549
The design of efficient hydrogen-evolving photocathodes for dye-sensitized photoelectrochemical cells (DSPECs) requires the incorporation of molecular light absorbing chromophores that are capable of delivering reducing equivalents to molecular proto
Autor:
Rita E. Cook, Marek B. Majewski, Rebecca J. Kamire, Michael R. Wasielewski, Brian T. Phelan, Ryan M. Young
Publikováno v:
The journal of physical chemistry. A. 121(8)
The use of multiple chromophores as photosensitizers for catalysts involved in energy-demanding redox reactions is often complicated by electronic interactions between the chromophores. These interchromophore interactions can lead to processes, such
Autor:
Rebecca J, Kamire, Marek B, Majewski, William L, Hoffeditz, Brian T, Phelan, Omar K, Farha, Joseph T, Hupp, Michael R, Wasielewski
Publikováno v:
Chemical Science
Photodriven charge transfer dynamics are described for an atomic layer deposition-stabilized, organic dye-sensitized photocathode architecture that produces hydrogen.
The design of efficient hydrogen-evolving photocathodes for dye-sensitized pho
The design of efficient hydrogen-evolving photocathodes for dye-sensitized pho
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