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@article{1335106, author = {Krausko, Ján and Malongwe, Joseph K'ekuboni and Bičanová, Gabriela and Klán, Petr and Nachtigallová, Dana and Heger, Dominik}, article_number = {32}, doi = {http://dx.doi.org/10.1021/acs.jpca.5b00941}, keywords = {spectroscopy; DFT calculations; ice; show; naphthalene}, language = {eng}, issn = {1089-5639}, journal = {Journal of Physical Chemistry A}, title = {Spectroscopic Properties of Naphthalene on the Surface of Ice Grains Revisited: A Combined Experimental Computational Approach}, url = {http://pubs.acs.org/doi/abs/10.1021/acs.jpca.5b00941}, volume = {119}, year = {2015} }
TY - JOUR ID - 1335106 AU - Krausko, Ján - Malongwe, Joseph K'ekuboni - Bičanová, Gabriela - Klán, Petr - Nachtigallová, Dana - Heger, Dominik PY - 2015 TI - Spectroscopic Properties of Naphthalene on the Surface of Ice Grains Revisited: A Combined Experimental Computational Approach JF - Journal of Physical Chemistry A VL - 119 IS - 32 SP - 8565-8578 EP - 8565-8578 SN - 10895639 KW - spectroscopy KW - DFT calculations KW - ice KW - show KW - naphthalene UR - http://pubs.acs.org/doi/abs/10.1021/acs.jpca.5b00941 L2 - http://pubs.acs.org/doi/abs/10.1021/acs.jpca.5b00941 N2 - An experimental-computational method is used to investigate the spectroscopic behavior of naphthalene on the surface of ice grains. UV vis diffuse reflectance and fluorescence spectroscopies of naphthalene combined with DFT and ADC(2) calculations provide evidence for the occurrence of excited-state associates. The measured and calculated bathochromic shifts of the So S, electronic transitions related to naphthalene dimers or naphthalene ice interactions do not exceed 3 nm. The bands observed in the emission spectrum of frozen naphthalene solutions are assigned to excited dimers of different mutual orientations, naphthalene phosphorescence, and fluorescence of anthracene present as a trace impurity and populated by the energy transfer from excited naphthalene. Photochemical reactivity in/on ice and snow is dependent on the absorption properties and speciation of the compounds present in these media. Hence, within this study, we exploit frozen solutions of naphthalene to demonstrate both the absence of considerable bathochromic shift and a strong tendency to aggregate. ER -
KRAUSKO, Ján, Joseph K'ekuboni MALONGWE, Gabriela BIČANOVÁ, Petr KLÁN, Dana NACHTIGALLOVÁ a Dominik HEGER. Spectroscopic Properties of Naphthalene on the Surface of Ice Grains Revisited: A Combined Experimental Computational Approach. \textit{Journal of Physical Chemistry A}. 2015, roč.~119, č.~32, s.~8565-8578. ISSN~1089-5639. Dostupné z: https://dx.doi.org/10.1021/acs.jpca.5b00941.
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