Hintermair, Ulrich 照片

Hintermair, Ulrich

Dr

所属大学: University of Bath

所属学院: Department of Chemistry

个人主页:
http://www.bath.ac.uk/chemistry/contacts/academics/ulrich_hintermair/

近期论文

Naeem, A., Ting, V. P., Hintermair, U., Tian, M., Telford, R., Halim, S., Nowell, H., Ho?yńska, M., Teat, S. J., Scowen, I. J. and Nayak, S., 2016. Mixed-linker approach in designing porous zirconium-based metal-organic frameworks with high hydrogen storage capacity. Chemical Communications, 52 (50), pp. 7826-7829. Moir, J. W., Sackville, E. V., Hintermair, U. and Ozin, G. A., 2016. Kinetics versus Charge Separation:Improving the Activity of Stoichiometric and Non-Stoichiometric Hematite Photoanodes Using a Molecular Iridium Water Oxidation Catalyst. Journal of Physical Chemistry C, 120 (24), pp. 12999-13012. Franciò, G., Hintermair, U. and Leitner, W., 2015. Unlocking the potential of supported liquid phase catalysts with supercritical fluids:low temperature continuous flow catalysis with integrated product separation. Proceedings of the Royal Society A: Mathematical Physical and Engineering Sciences, 373 (2057), 1 - 26. Sheehan, S. W., Thomsen, J. M., Hintermair, U., Crabtree, R. H., Brudvig, G. W. and Schmuttenmaer, C. A., 2015. A molecular catalyst for water oxidation that binds to metal oxide surfaces. Nature Communications, 6, p. 6469. Thomsen, J.M., Sheehan, S.W., Hashmi, S.M., Campos, J., Hintermair, U., Crabtree, R.H. and Brudvig, G.W., 2014. Electrochemical activation of cp? iridium complexes for electrode-driven water-oxidation catalysis. Journal of the American Chemical Society, 136 (39), pp. 13826-13834. Wesselbaum, S., Vom Stein, T., Hintermair, U., Klankermayer, J. and Leitner, W., 2014. Continuous-flow hydrogenation of CO2 using molecular catalysts. Chemie Ingenieur Technik, 86 (9), p. 1428. Hintermair, Ulrich, 2014. Iridium Complexes for Electrocatalysis. US patent- 14/317,906, 27 June 2014. Campos, J., Hintermair, U., Brewster, T.P., Takase, M.K. and Crabtree, R.H., 2014. Catalyst activation by loss of cyclopentadienyl ligands in hydrogen transfer catalysis with Cp*IrIII complexes. ACS Catalysis, 4 (3), pp. 973-985. Ingram, A. J., Wolk, A. B., Flender, C., Zhang, J., Johnson, C. J., Hintermair, U., Crabtree, R. H., Johnson, M. A. and Zare, R. N., 2014. Modes of activation of organometallic iridium complexes for catalytic water and C–H oxidation. Inorganic Chemistry, 53 (1), pp. 423-433. Hintermair, U., Campos, J., Brewster, T. P., Pratt, L. M., Schley, N. D. and Crabtree, R. H., 2014. Hydrogen-transfer catalysis with Cp*IrIII complexes:The influence of the ancillary ligands. ACS Catalysis, 4 (1), pp. 99-108. Graeupner, J., Hintermair, U., Huang, D. L., Thomsen, J. M., Takase, M., Campos, J., Hashmi, S. M., Elimelech, M., Brudvig, G. W. and Crabtree, R. H., 2013. Probing the viability of oxo-coupling pathways in iridium-catalyzed oxygen evolution. Organometallics, 32 (19), 5384–5390. Hintermair, U., Sheehan, S. W., Parent, A. R., Ess, D. H., Richens, D. T., Vaccaro, P. H., Brudvig, G. W. and Crabtree, R. H., 2013. Precursor transformation during molecular oxidation catalysis with organometallic iridium complexes. Journal of the American Chemical Society, 135 (29), pp. 10837-10851. Hintermair, U., Franciò, G. and Leitner, W., 2013. A fully integrated continuous-flow system for asymmetric catalysis: Enantioselective hydrogenation with supported ionic liquid phase catalysts using supercritical CO2 as the mobile phase. Chemistry - A European Journal, 19 (14), pp. 4538-4547. Zhou, M., Hintermair, U., Hashiguchi, B. G., Parent, A. R., Hashmi, S. M., Elimelech, M., Periana, R. A., Brudvig, G. W. and Crabtree, R. H., 2013. Cp* iridium precatalysts for selective C–H oxidation with sodium periodate as the terminal oxidant. Organometallics, 32 (4), pp. 957-965. Wesselbaum, S., Hintermair, U. and Leitner, W., 2012. Continuous-flow hydrogenation of carbon dioxide to pure formic acid using an Integrated scCO2 process with immobilized catalyst and base. Angewandte Chemie-International Edition, 51 (34), pp. 8585-8588. Leitner, Walter, 2012. CO2 Hydrogenation Method for Producing Formic Acid. C07C51/083; C07C53/02- WO2012095345, 19 July 2012. Hintermair, U., Hashmi, S. M., Elimelech, M. and Crabtree, R. H., 2012. Particle formation during oxidation catalysis with Cp* iridium complexes. Journal of the American Chemical Society, 134 (23), pp. 9785-9795. Hintermair, U., Chinnusamy, T. and Leitner, W., 2012. Transition-metal complexes in supported liquid phase and supercritical fluids: A beneficial combination for selective continuous-flow catalysis with integrated product separation. In: Pignataro, B., ed. New Strategies in Synthesis and Catalysis. Weinheim: Wiley-VCH, pp. 273-297. Hintermair, U., Roosen, C., Kaever, M., Kronenberg, H., Thelen, R., Aey, S., Leitner, W. and Greiner, L., 2011. A versatile lab to pilot scale continuous reaction system for supercritical fluid processing. Organic Process Research & Development, 15 (6), pp. 1275-1280. Hintermair, U., Englert, U. and Leitner, W., 2011. Distinct reactivity of mono- and bis-NHC silver complexes:Carbene donors versus carbene–halide exchange reagents. Organometallics, 30 (14), pp. 3726-3731. Hintermair, U., Franciò, G. and Leitner, W., 2011. Continuous flow organometallic catalysis:New wind in old sails. Chemical Communications, 47 (13), pp. 3691-3701.