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New experimental and theoretical assessment of the dissociation energy of C 2
Visser, B., Beck, M., Bornhauser, P., Knopp, G., van Bokhoven, J. A., Radi, P., … Marquardt, R. (2019). New experimental and theoretical assessment of the dissociation energy of C 2. Molecular Physics. https://doi.org/10.1080/00268976.2018.1564849
Spray, combustion and soot of water-in-fuel (n-dodecane) emulsions in a constant volume combustion chamber; part II: effects of low temperature conditions and oxygen concentrations
Wuethrich, D., von Rotz, B., Herrmann, K., & Boulouchos, K. (2019). Spray, combustion and soot of water-in-fuel (n-dodecane) emulsions in a constant volume combustion chamber; part II: effects of low temperature conditions and oxygen concentrations. Fuel, 248, 104-116. https://doi.org/10.1016/j.fuel.2019.03.036
Experimental and Numerical Investigation of Fuel-Lean H<sub>2</sub>/CO/Air and H<sub>2</sub>/CH4/Air Catalytic Microreactors
Sui, R., Es-sebbar, Etouhami, Mantzaras, J., & Prasianakis, N. I. (2018). Experimental and Numerical Investigation of Fuel-Lean H2/CO/Air and H2/CH4/Air Catalytic Microreactors. Combustion Science and Technology, 190(2), 336-362. https://doi.org/10.1080/00102202.2017.1391231
Radical thermometers, thermochemistry, and photoelectron spectra: a photoelectron photoion coincidence spectroscopy study of the methyl peroxy radical
Voronova, K., Ervin, K. M., Torma, K. G., Hemberger, P., Bodi, A., Gerber, T., … Sztáray, B. (2018). Radical thermometers, thermochemistry, and photoelectron spectra: a photoelectron photoion coincidence spectroscopy study of the methyl peroxy radical. Journal of Physical Chemistry Letters, 9(3), 534-539. https://doi.org/10.1021/acs.jpclett.7b03145
Three-dimensional direct numerical simulations of turbulent fuel-lean H&lt;sub&gt;2&lt;/sub&gt;/air hetero-/homogeneous combustion over Pt with detailed chemistry&lt;br /&gt;  
Arani, B. O., Frouzakis, C. E., Mantzaras, J., & Boulouchos, K. (2017). Three-dimensional direct numerical simulations of turbulent fuel-lean H2/air hetero-/homogeneous combustion over Pt with detailed chemistry
 . Proceedings of the Combustion Institute, 36(3), 4355-4363. https://doi.org/10.1016/j.proci.2016.05.009
Potentials, costs and environmental assessment of electricity generation technologies. Final report in English with summaries in German and French
Bauer, C., Hirschberg, S., Bäuerle, Y., Biollaz, S., Calbry-Muzyka, A., Cox, B., … Tran, M. Q. (2017). Potentials, costs and environmental assessment of electricity generation technologies. Final report in English with summaries in German and French. Villigen PSI, Switzerland: Paul Scherrer Institut.
Rovibrational characterization of high-lying electronic states of Cu&lt;sub&gt;2&lt;/sub&gt; by double-resonant nonlinear spectroscopy
Beck, M., Visser, B., Bornhauser, P., Knopp, G., van Bokhoven, J. A., & Radi, P. P. (2017). Rovibrational characterization of high-lying electronic states of Cu2 by double-resonant nonlinear spectroscopy. Journal of Physical Chemistry A, 121(44), 8448-8452. https://doi.org/10.1021/acs.jpca.7b09838
Understanding the mechanism of catalytic fast pyrolysis by unveiling reactive intermediates in heterogeneous catalysis
Hemberger, P., Custodis, V. B. F., Bodi, A., Gerber, T., & van Bokhoven, J. A. (2017). Understanding the mechanism of catalytic fast pyrolysis by unveiling reactive intermediates in heterogeneous catalysis. Nature Communications, 8, 15946 (9 pp.). https://doi.org/10.1038/ncomms15946
Experimental and pore-level numerical investigation of water evaporation in gas diffusion layers of polymer electrolyte fuel cells
Safi, M. A., Prasianakis, N. I., Mantzaras, J., Lamibrac, A., & Büchi, F. N. (2017). Experimental and pore-level numerical investigation of water evaporation in gas diffusion layers of polymer electrolyte fuel cells. International Journal of Heat and Mass Transfer, 115, 238-249. https://doi.org/10.1016/j.ijheatmasstransfer.2017.07.050
A comparative experimental and numerical investigation of the heterogeneous and homogeneous combustion characteristics of fuel-rich methane mixtures over rhodium and platinum
Sui, R., Mantzaras, J., & Bombach, R. (2017). A comparative experimental and numerical investigation of the heterogeneous and homogeneous combustion characteristics of fuel-rich methane mixtures over rhodium and platinum. Proceedings of the Combustion Institute, 36(3), 4313-4320. https://doi.org/10.1016/j.proci.2016.06.001
Hetero-/homogeneous combustion of fuel-lean methane/oxygen/nitrogen mixtures over rhodium at pressures up to 12 bar
Sui, R., Mantzaras, J., Bombach, R., & Denisov, A. (2017). Hetero-/homogeneous combustion of fuel-lean methane/oxygen/nitrogen mixtures over rhodium at pressures up to 12 bar. Proceedings of the combustion institute: Vol. 36. . https://doi.org/10.1016/j.proci.2016.06.003
Homogeneous ignition during fuel-rich H<sub>2</sub>/O<sub>2</sub>/N<sub>2</sub> combustion in platinum-coated channels at elevated pressures
Sui, R., Es-sebbar, Etouhami, Mantzaras, J., & Bombach, R. (2017). Homogeneous ignition during fuel-rich H2/O2/N2 combustion in platinum-coated channels at elevated pressures. Combustion and Flame, 180, 184-195. https://doi.org/10.1016/j.combustflame.2017.02.033
Impact of Gaseous Chemistry in H<sub>2</sub>-O<sub>2</sub>-N<sub>2</sub> Combustion over Platinum at Fuel-Lean Stoichiometries and Pressures of 1.0-3.5 bar
Sui, R., Mantzaras, J., Es-Sebbar, E. T., Safi, M. A., & Bombach, R. (2017). Impact of Gaseous Chemistry in H2-O2-N2 Combustion over Platinum at Fuel-Lean Stoichiometries and Pressures of 1.0-3.5 bar. Energy and Fuels, 31(10), 11448-11459. https://doi.org/10.1021/acs.energyfuels.7b02011
CRF-PEPICO: Double velocity map imaging photoelectron photoion coincidence spectroscopy for reaction kinetics studies
Sztáray, B., Voronova, K., Torma, K. G., Covert, K. J., Bodi, A., Hemberger, P., … Osborn, D. L. (2017). CRF-PEPICO: Double velocity map imaging photoelectron photoion coincidence spectroscopy for reaction kinetics studies. Journal of Chemical Physics, 147(1), 13944. https://doi.org/10.1063/1.4984304
On-line liquid quench sampling and UV–Vis spectroscopy for tar measurements in wood gasification process gases
Edinger, P., Schneebeli, J., Struis, R. P. W. J., Biollaz, S. M. A., & Ludwig, C. (2016). On-line liquid quench sampling and UV–Vis spectroscopy for tar measurements in wood gasification process gases. Fuel, 184, 59-68. https://doi.org/10.1016/j.fuel.2016.06.127
Online detection of selenium and its retention in reducing gasification atmosphere
Edinger, P., Tarik, M., Hess, A., Testino, A., & Ludwig, C. (2016). Online detection of selenium and its retention in reducing gasification atmosphere. Energy and Fuels, 30(2), 1237-1247. https://doi.org/10.1021/acs.energyfuels.5b02608
First line shape analysis and spectroscopic parameters for the ν11 band of 12C2H4
Es-sebbar, Etouhami, Mantzaras, J., Benilan, Y., & Farooq, A. (2016). First line shape analysis and spectroscopic parameters for the ν11 band of 12C2H4. Journal of Quantitative Spectroscopy and Radiative Transfer, 184, 297-307. https://doi.org/10.1016/j.jqsrt.2016.07.021
Visualizing competing intersystem crossing and internal conversion with a complementary measurement
Liu, Y., Gerber, T., Qin, C., Jin, F., & Knopp, G. (2016). Visualizing competing intersystem crossing and internal conversion with a complementary measurement. Journal of Chemical Physics, 144(8), 84201. https://doi.org/10.1063/1.4942124
Correlating bubble size and velocity distribution in bubbling fluidized bed based on X-ray tomography
Maurer, S., Gschwend, D., Wagner, E. C., Schildhauer, T. J., Ruud van Ommen, J., Biollaz, S. M. A., & Mudde, R. F. (2016). Correlating bubble size and velocity distribution in bubbling fluidized bed based on X-ray tomography. Chemical Engineering Journal, 298, 17-25. https://doi.org/10.1016/j.cej.2016.02.012
Influence of interparticle forces on attrition and elutriation in bubbling fluidized beds
Maurer, S., Durán, S. R., Künstle, M., & Biollaz, S. M. A. (2016). Influence of interparticle forces on attrition and elutriation in bubbling fluidized beds. Powder Technology, 291, 473-486. https://doi.org/10.1016/j.powtec.2015.12.026
 

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