Ruthenium(ii)-polypyridyl zirconium(iv) metal-organic frameworks as a new class of sensitized solar cells
Maza, W A, Haring, A J, Ahrenholtz, S R, Epley, C C, Lin, S Y, Morris, A J
Published in Chemical science (Cambridge) (01.01.2016)
Published in Chemical science (Cambridge) (01.01.2016)
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Cooperative electrochemical water oxidation by Zr nodes and Ni–porphyrin linkers of a PCN-224 MOF thin film
Usov, P M, Ahrenholtz, SR, Maza, WA, Stratakes, B, Epley, C C, Kessinger, M C, Zhu, J, Morris, A J
Published in Journal of materials chemistry. A, Materials for energy and sustainability (01.01.2016)
Published in Journal of materials chemistry. A, Materials for energy and sustainability (01.01.2016)
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Corrigendum: Low power degradation of perfluorooctane sulfonate (PFOS) in water using a nanosecond pulsed atmospheric pressure plasma (2022 Plasma Sources Sci. Technol. 31 085001)
Johnson, M J, Maza, W A, Breslin, V M, Boris, D R, Petrova, Tz B, Walton, S G
Published in Plasma sources science & technology (01.09.2022)
Published in Plasma sources science & technology (01.09.2022)
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Ruthenium(ii)-polypyridyl zirconium(iv) metal-organic frameworks as a new class of sensitized solar cellsElectronic supplementary information (ESI) available: PXRD, TGA, BET, SEM, emission lifetimes, diffuse reflectance, steady state emission, and IPCE/diffuse reflectance overlay. See DOI: 10.1039/c5sc01565k
Maza, W. A, Haring, A. J, Ahrenholtz, S. R, Epley, C. C, Lin, S. Y, Morris, A. J
Year of Publication 14.12.2015
Year of Publication 14.12.2015
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Ruthenium(ii)-polypyridyl zirconium(iv) metal–organic frameworks as a new class of sensitized solar cells† †Electronic supplementary information (ESI) available: PXRD, TGA, BET, SEM, emission lifetimes, diffuse reflectance, steady state emission, and IPCE/diffuse reflectance overlay. See DOI: 10.1039/c5sc01565k
Maza, W. A., Haring, A. J., Ahrenholtz, S. R., Epley, C. C., Lin, S. Y., Morris, A. J.
Published in Chemical science (Cambridge) (16.10.2015)
Published in Chemical science (Cambridge) (16.10.2015)
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Cooperative electrochemical water oxidation by Zr nodes and Ni-porphyrin linkers of a PCN-224 MOF thin filmElectronic supplementary information (ESI) available. See DOI: 10.1039/c6ta05877a
Usov, P. M, Ahrenholtz, S. R, Maza, W. A, Stratakes, B, Epley, C. C, Kessinger, M. C, Zhu, J, Morris, A. J
Year of Publication 01.11.2016
Year of Publication 01.11.2016
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