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Publikationer

Institut for Kemi er et af de mest produktive institutter på Aarhus Universitet. Der udgives et væld af artikler i videnskabelige tidsskrifter, som du finder herunder.

Publikationer fra Institut for Kemi

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Pinatel, E. R., Rude, L. H., Corno, M., Kragelund, M., Ugliengo, P., Jensen, T. R. & Baricco, M. (2012). Thermodynamic Tuning of Calcium Hydride by Fluorine Substitution. Materials Research Society Symposium Proceedings, 1441, 5-16. https://doi.org/10.1557/opl.2012.943
Britz, D. & Nancollas, G. H. (1969). Thermodynamics of cation exchange of hydrous zirconia. Journal of Inorganic and Nuclear Chemistry, 31, 3861-3868.
Baptista, R. P., Pedersen, S. H., Cabrita, G. J. M., Otzen, D., Cabral, J. M. & Melo, E. P. (2008). Thermodynamics and mechanism of cutinase stabilization by trehalose. Biopolymers, 89, 538-547.
Amini, N., Pries, J., Cheng, Y., Persch, C., Wuttig, M., Stolpe, M. & Wei, S. (2021). Thermodynamics and kinetics of glassy and liquid phase-change materials. Materials Science in Semiconductor Processing, 135, Artikel 106094. https://doi.org/10.1016/j.mssp.2021.106094
Majzlan, J., Grevel, K. D., Kiefer, B., Nielsen, U. G., Grube, E., Dachs, E., Benisek, A., White, M. A. & Johnson, M. B. (2017). Thermodynamics and crystal chemistry of rhomboclase, (H5O2)Fe(SO4)2·2H2O, and the phase (H3O)Fe(SO4)2 and implications for acid mine drainage. American Mineralogist, 102(3), 643-654. https://doi.org/10.2138/am-2017-5909
Hyttinen, N., Elm, J., Malila, J., Calderón, S. M. & Prisle, N. L. (2020). Thermodynamic properties of isoprene-and monoterpene-derived organosulfates estimated with COSMOtherm. Atmospheric Chemistry and Physics, 20(9), 5679-5696. https://doi.org/10.5194/acp-20-5679-2020
Kunther, W., Dai, Z., Garzon, S. F., Herfort, J. & Skibsted, J. (2013). Thermodynamic modeling of Portland cement – metakaolin – limestone blends. I D. Stephan, H. V. Daake & G. Land (red.), Proceedings of the 1st International Conference on the Chemistry of Construction Materials, 7-9 October 2013, Berlin GDCh Division of Chemistry of Construction Chemicals.
Kunther, W., Dai, Z. & Skibsted, J. (2015). Thermodynamic modeling of Portland cement – metakaolin – limestone blends. I ICCC 2015 Beijing : the 14th international congress on the chemistry of cement, 13-16 October, 2015: 1 Abstract book (s. 108-114)
Kunther, W., Dai, Z. & Skibsted, J. (2015). Thermodynamic modeling of Portland cement - metakaolin - limestone blends. I K. Scrivener & A. Favier (red.), Calcined clays for sustainable concrete: Proceedings of the 1st International Conference on Calcined Clays for Sustainable Concrete (s. 143-149). Springer. https://doi.org/10.1007/978-94-017-9939-3_18
Nielsen, T. B., Hvidt, S., Keiding, S. R., Petersen, C., Westh, P. & Keiding, J. K. (2011). Thermodynamic investigations of methyl tert-butyl ether and water mixtures. Physical Chemistry Chemical Physics, 13(3), 1182-1188. https://doi.org/10.1039/c0cp00494d
Kold, D., Dauter, Z., Laustsen, A., M. Brzozowski, A., P. Turkenburg, J., D. Nielsen, A., Koldsø, H., Petersen, E., Schiøtt, B., De Maria, L., S. Wilson, K., Svendsen, A. & Wimmer, R. (2014). Thermodynamic and structural investigation of the specific SDS binding of humicola insolens cutinase. Protein Science, 23(8), 1023-1035. https://doi.org/10.1002/pro.2489
Holm, A. H., Yusta, L., Carlqvist, P., Brinck, T. & Daasbjerg, K. (2003). Thermochemistry of Arylselanyl Radicals and the Pertinent Ions in acetonitrile. Journal of the American Chemical Society, 125, 2148-2157.
Yin, H., Christensen, M., Pedersen, B. L., Nishibori, E., Aoyagi, S. & Iversen, B. B. (2010). Thermal Stability of Thermoelectric Zn4Sb3. Journal of Electronic Materials, 39(9), 1957-1959. https://doi.org/10.1007/s11664-009-1053-3
Cerretti, G., Schrade, M., Song, X., Balke, B., Lu, H., Weidner, T., Lieberwirth, I., Panthoefer, M., Norby, T. & Tremel, W. (2017). Thermal stability and enhanced thermoelectric properties of the tetragonal tungsten bronzes Nb8-xW9+xO47 (0 <x <5). Journal of Materials Chemistry A, 5(20), 9768-9774. https://doi.org/10.1039/c7ta01121k
Ravnsbæk, D., Filinchuk, Y., Cerny, R., Ley, M. B., Haase, D., Jakobsen, H. J., Skibsted, J. & Jensen, T. R. (2010). Thermal Polymorphism and Decomposition of Y(BH4)3. Inorganic Chemistry, 49, 3801-3809.
Dasgupta, T., Yin, H., de Boor, J., Stiewe, C., Iversen, B. B. & Müller, E. (2013). Thermal Instability of β-ZnSb: Insights from Transport and Structural Measurements. Journal of Electronic Materials, 42(7), 1988-1991. https://doi.org/10.1007/s11664-013-2490-6
Bentien, A., Christensen, M., Bryan, J. D., Sanchez, A., Paschen, S., Steglich, F., Stucky, G. D. & Iversen, B. B. (2004). Thermal conductivity of thermoelectric clathrates. Physical Review B, 69, 45107-45107.
Dam, S., Laursen, B. S., Ornfelt, J. H., Jochimsen, B., Stærfeldt, H. H., Friis, C., Nielsen, K., Goffard, N., Besenbacher, S., Krusell, L., Sato, S., Tabata, S., Thøgersen, I., Enghild, J. J. & Stougaard, J. (2009). The proteome of seed development in the model legume Lotus japonicus. Plant Physiology. https://doi.org/10.1104/pp.108.133405
Tundo, G. R., Sbardella, D., Santoro, A. M., Coletta, A., Oddone, F., Grasso, G., Milardi, D., Lacal, P. M., Marini, S., Purrello, R., Graziani, G. & Coletta, M. (2020). The proteasome as a druggable target with multiple therapeutic potentialities: Cutting and non-cutting edges. Pharmacology and Therapeutics, 213, Artikel 107579. https://doi.org/10.1016/j.pharmthera.2020.107579