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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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Steiner, E. M., Lyngsø, J., Guy, J. E., Bourenkov, G., Lindqvist, Y., Schneider, T. R., Pedersen, J. S., Schneider, G. & Schnell, R. (2018). The structure of the N-terminal module of the cell wall hydrolase RipA and its role in regulating catalytic activity. Proteins: Structure, Function and Bioinformatics, 86(9), 912-923. https://doi.org/10.1002/prot.25523
Lutz, H., Jaeger, V., Schmüser, L., Bonn, M., Pfaendtner, J. & Weidner, T. (2017). The Structure of the Diatom Silaffin Peptide R5 within Freestanding Two-Dimensional Biosilica Sheets. Angewandte Chemie International Edition, 56(28), 8277-8280. https://doi.org/10.1002/anie.201702707
Pedersen, J. S. & Gerstenberg, M. C. (2003). The structure of P85 Pluronic block copolymer micelles determined by small-angle neutron scattering. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 213, 175-187.
Filsø, M., Chaaban, I., Al Shehabi, A., Skibsted, J. & Lock, N. (2017). The structure-directing amine changes everything: Structures and optical properties of two-dimensional thiostannates. Acta Crystallographica Section B: Structural Science, Crystal Engineering and Materials, 73, 931-940. https://doi.org/10.1107/S2052520617010630
Lindgreen, H., Drits, V. A., Sakharov, B. A., Jakobsen, H. J., Salyn, A. L., Dainyak, L. G. & Krøyer, H. (2002). The structure and diagenetic transformation of illite-smectite and chlorite-smectite from North Sea Cretaceous-Tertiary chalk. Clay Minerals, 37, 429-450.
Chu, B. C. H., Otten, R., Krewulak, K. D., Mulder, F. A. A. & Vogel, H. J. (2014). The Solution Structure, Binding Properties, and Dynamics of the Bacterial Siderophore-binding Protein FepB. Journal of Biological Chemistry, 289(42), 29219-29234. https://doi.org/10.1074/jbc.M114.564021
Ogilby, P. R. (2016). The Sensitized Production of Singlet Oxygen Using Two-Photon Excitation. I S. Nonell & C. Flors (red.), Singlet Oxygen: Applications in Biosciences and Nanosciences (Bind 1, s. 145-161). Royal Society of Chemistry. https://doi.org/10.1039/9781782622208-00145
Eriksen, J. J., Solanko, L. M., Nåbo, L. J., Wüstner, D., Sauer, S. P. A. & Kongsted, J. (2014). The Second-Order Polarization Propagator Approximation (SOPPA) method coupled to the polarizable continuum model. Computational and Theoretical Chemistry, 1040-10471, 54-60. https://doi.org/10.1016/j.comptc.2014.02.034
Britz, D., Marques da Silva, B., Avaca, L. A. & Gonzales, E. R. (1990). The Saul'yev method of digital simulation under derivative boundary conditions. Analytica Chimica Acta, 239, 87-93.
Birkedal, H., Andersen, A. M. K., Arakcheeva, A., Chapuis, G., Norby, P. & Pattison, P. (2006). The Room-Temperature Superstructure of ZrP2O7 Is Orthorhombic: There are No Unusual 180o P-O-P Bond Angles. Inorganic Chemistry, 45(11), 4346-4351.
Ramsgaard, L., Englert, J. M., Tobolewski, J., Tomai, L., Fattman, C. L., Leme, A. S., Kaynar, A. M., Shapiro, S. D., Enghild, J. J. & Oury, T. D. (2010). The role of the receptor for advanced glycation end-products in a murine model of silicosis. PLoS One, 5(3), e9604. https://doi.org/10.1371/journal.pone.0009604
Zhang, R., Shen, J., Xie, H. B., Chen, J. & Elm, J. (2022). The role of organic acids in new particle formation from methanesulfonic acid and methylamine. Atmospheric Chemistry and Physics, 22(4), 2639-2650. https://doi.org/10.5194/acp-22-2639-2022
Carmona, F. J., Dal Sasso, G., Bertolotti, F., Ramírez-Rodríguez, G. B., Delgado-López, J. M., Pedersen, J. S., Masciocchi, N. & Guagliardi, A. (2020). The role of nanoparticle structure and morphology in the dissolution kinetics and nutrient release of nitrate-doped calcium phosphate nanofertilizers. Scientific Reports, 10(1), Artikel 12396. https://doi.org/10.1038/s41598-020-69279-2
Carlos, L., Pedersen, B. W., Ogilby, P. R. & Martire, D. O. (2011). The role of humic acid aggregation on the kinetics of photosensitized singlet oxygen production and decay. Photochemical & Photobiological Sciences, 10, 1080-1086.
Roldin, P., Ehn, M., Kurtén, T., Olenius, T., Rissanen, M. P., Sarnela, N., Elm, J., Rantala, P., Hao, L., Hyttinen, N., Heikkinen, L., Worsnop, D. R., Pichelstorfer, L., Xavier, C., Clusius, P., Öström, E., Petäjä, T., Kulmala, M., Vehkamäki, H. ... Boy, M. (2019). The role of highly oxygenated organic molecules in the Boreal aerosol-cloud-climate system. Nature Communications, 10(1), Artikel 4370. https://doi.org/10.1038/s41467-019-12338-8
Andersen, K., Oliveira, C. L. P. D., Larsen, K. L., Poulsen, F., Callisen, T., Westh, P., Pedersen, J. S. & Otzen, D. (2009). The role of decorated SDS micelles in sub-cmc protein denaturation and association. Journal of Molecular Biology, 391, 207-226.
Wilsens, C. H. R. M., Verhoeven, J. M. G. A., Noordover, B. A. J., Hansen, M. R., Auhl, D. & Rastogi, S. (2014). Thermotropic polyesters from 2,5-furandicarboxylic acid and vanillic acid: Synthesis, thermal properties, melt behavior, and mechanical performance. Macromolecules, 47(10), 3306-3316. https://doi.org/10.1021/ma500433e
Sun, P., Oeschler, N., Johnsen, S., Iversen, B. B. & Steglich, F. (2009). Thermoelectric properties of the narrow-gap semiconductors FeSb2 amd RuSb2: a comparative study. Journal of Physics: Conference Series, 150, 12049.
Zhao, K., Guan, M., Qiu, P., Blichfeld, A. B., Eikeland, E., Zhu, C., Ren, D., Xu, F., Iversen, B. B., Shi, X. & Chen, L. (2018). Thermoelectric properties of Cu2Se1-: XTex solid solutions. Journal of Materials Chemistry A, 6(16), 6977-6986. https://doi.org/10.1039/c8ta01313f
Zhao, K., Eikeland, E., He, D., Qiu, W., Jin, Z., Song, Q., Wei, T. R., Qiu, P., Liu, J., He, J., Iversen, B. B., He, J., Chen, L. & Shi, X. (2021). Thermoelectric materials with crystal-amorphicity duality induced by large atomic size mismatch. Joule, 5(5), 1183-1195. https://doi.org/10.1016/j.joule.2021.03.012
Stiewe, C., Dasgupta, T., Böttcher, L., Pedersen, B. L., Müller, E. & Iversen, B. B. (2010). Thermoelectric Characterization of Zone-Melted and Quenched Zn4Sb3. Journal of Electronic Materials, 39(9), 1975-1980. https://doi.org/10.1007/s11664-009-1044-4