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Gas-phase preparation of the dibenzo[e,<em>l</em>]pyrene (C<sub>24</sub>H<sub>14</sub>) butterfly molecule <em>via</em> a phenyl radical-mediated ring annulation
Goettl, S. J., Turner, A. M., Sun, B. J., Chang, A. H. H., Hemberger, P., & Kaiser, R. I. (2024). Gas-phase preparation of the dibenzo[e,l]pyrene (C24H14) butterfly molecule via a phenyl radical-mediated ring annulation. Chemical Communications, 60(11), 1404-1407. https://doi.org/10.1039/d3cc05371g
Conformer-specific photoelectron spectroscopy of carbonic acid: H<sub>2</sub>CO<sub>3</sub>
Kanayama, K., Nakamura, H., Maruta, K., Bodi, A., & Hemberger, P. (2024). Conformer-specific photoelectron spectroscopy of carbonic acid: H2CO3. Journal of Physical Chemistry Letters, 2658-2664. https://doi.org/10.1021/acs.jpclett.4c00343
What a difference a chlorine makes: the remarkable unimolecular ion chemistry of phenyl formate and phenyl chloroformate
Lowe, B., Cardona, A. L., Salas, J., Bodi, A., Mayer, P. M., & Burgos Paci, M. A. (2024). What a difference a chlorine makes: the remarkable unimolecular ion chemistry of phenyl formate and phenyl chloroformate. Journal of Mass Spectrometry, 59(2), e5004 (9 pp.). https://doi.org/10.1002/jms.5004
The formation, reactivity and transformation pathways of formaldehyde in the methanol-to-hydrocarbon conversion
Paunović, V., Wu, X., Maggiulli, L., Ferri, D., Hemberger, P., Bodi, A., & van Bokhoven, J. A. (2024). The formation, reactivity and transformation pathways of formaldehyde in the methanol-to-hydrocarbon conversion. Catalysis Science and Technology, 14(5), 1216-1228. https://doi.org/10.1039/D3CY01786A
Gas phase ionization energy of heptacene
Wagner, M. S., Peisert, H., Chassé, T., Hemberger, P., & Bettinger, H. F. (2024). Gas phase ionization energy of heptacene. Journal of Physical Chemistry Letters, 15(9), 2332-2336. https://doi.org/10.1021/acs.jpclett.3c03580
CO cofeeding affects product distribution in CH<sub>3</sub>Cl coupling over ZSM-5 zeolite: pressure twists the plot
Zhang, Z., Vanni, M., Wu, X., Hemberger, P., Bodi, A., Mitchell, S., & Pérez-Ramírez, J. (2024). CO cofeeding affects product distribution in CH3Cl coupling over ZSM-5 zeolite: pressure twists the plot. Angewandte Chemie International Edition, e202401060 (7 pp.). https://doi.org/10.1002/anie.202401060
A combustion chemistry study of tetramethylethylene in a laminar premixed low-pressure hydrogen flame
Bierkandt, T., Hemberger, P., Oßwald, P., Gaiser, N., Hoener, M., Krüger, D., … Köhler, M. (2023). A combustion chemistry study of tetramethylethylene in a laminar premixed low-pressure hydrogen flame. Proceedings of the Combustion Institute, 39(2), 1699-1708. https://doi.org/10.1016/j.proci.2022.07.205
Branching ratios in the dissociative photoionization of iodomethane by photoelectron photoion coincidence
Bodi, A., Hafliðason, A., & Kvaran, Á. (2023). Branching ratios in the dissociative photoionization of iodomethane by photoelectron photoion coincidence. Physical Chemistry Chemical Physics, 25(10), 7383-7393. https://doi.org/10.1039/d2cp03339a
Five-membered ring compounds from the <em>ortho</em>-benzyne + methyl radical reaction under interstellar conditions
Bouwman, J., McCabe, M. N., Shingledecker, C. N., Wandishin, J., Jarvis, V., Reusch, E., … Bodi, A. (2023). Five-membered ring compounds from the ortho-benzyne + methyl radical reaction under interstellar conditions. Nature Astronomy, 7, 423-430. https://doi.org/10.1038/s41550-023-01893-2
Photoelectron photoion coincidence spectroscopy of biradicals
Fischer, I., & Hemberger, P. (2023). Photoelectron photoion coincidence spectroscopy of biradicals. ChemPhysChem, 24(16), e202300334 (16 pp.). https://doi.org/10.1002/cphc.202300334
Oxidation of linear and branched ethers: a comparative flow reactor study of OME<sub>2</sub> and trimethoxymethane
Gaiser, N., Bierkandt, T., Oßwald, P., Zinsmeister, J., Hemberger, P., Shaqiri, S., … Köhler, M. (2023). Oxidation of linear and branched ethers: a comparative flow reactor study of OME2 and trimethoxymethane. Proceedings of the Combustion Institute, 39(1), 685-693. https://doi.org/10.1016/j.proci.2022.08.112
Direct observation of the ethyl radical in the pyrolysis of ethane
Genossar-Dan, N., Atlas, S., Fux, D., Har Lavan, S., Zamir, U., Rozenberg, I., … Baraban, J. H. (2023). Direct observation of the ethyl radical in the pyrolysis of ethane. Angewandte Chemie International Edition, 62(32), e202305881 (6 pp.). https://doi.org/10.1002/anie.202305881
Photoelectron spectroscopy and dissociative photoionization of fulminic acid, HCNO
Gerlach, M., Mant, B., Preitschopf, T., Karaev, E., Mayer, D., Quitián-Lara, H. M., … Fischer, I. (2023). Photoelectron spectroscopy and dissociative photoionization of fulminic acid, HCNO. Journal of Chemical Physics, 158(13), 134303 (9 pp.). https://doi.org/10.1063/5.0142194
Gas-phase synthesis of coronene through stepwise directed ring annulation
Goettl, S. J., Tuli, L. B., Turner, A. M., Reyes, Y., Howlader, A. H., Wnuk, S. F., … Kaiser, R. I. (2023). Gas-phase synthesis of coronene through stepwise directed ring annulation. Journal of the American Chemical Society, 145(28), 15443-15455. https://doi.org/10.1021/jacs.3c03816
Photoion mass-selected threshold photoelectron spectroscopy to detect reactive intermediates in catalysis: from instrumentation and examples to peculiarities and a database
Hemberger, P., Pan, Z., Wu, X., Zhang, Z., Kanayama, K., & Bodi, A. (2023). Photoion mass-selected threshold photoelectron spectroscopy to detect reactive intermediates in catalysis: from instrumentation and examples to peculiarities and a database. Journal of Physical Chemistry C, 127(34), 16751-16763. https://doi.org/10.1021/acs.jpcc.3c03120
Activation effect of ozone and DME on the partial oxidation of natural gas surrogates and validation of pressure-dependent ozone decomposition
Kaczmarek, D., Bierkandt, T., Rudolph, C., Grimm, S., Shaqiri, S., Höner, M., … Kasper, T. (2023). Activation effect of ozone and DME on the partial oxidation of natural gas surrogates and validation of pressure-dependent ozone decomposition. Applications in Energy and Combustion Science, 13, 100107 (13 pp.). https://doi.org/10.1016/j.jaecs.2022.100107
Threshold photoelectron spectroscopy and dissociative photoionization of benzonitrile
Kamer, J., Schleier, D., Donker, M., Hemberger, P., Bodi, A., & Bouwman, J. (2023). Threshold photoelectron spectroscopy and dissociative photoionization of benzonitrile. Physical Chemistry Chemical Physics, 42(25), 29070-29079. https://doi.org/10.1039/d3cp03977c
Lutidyl radical photoelectron spectra reveal additive substituent effects on benzyl derivatives' ionization energy
Kanayama, K., Fernholz, C., Nakamura, H., Maruta, K., Bodi, A., & Hemberger, P. (2023). Lutidyl radical photoelectron spectra reveal additive substituent effects on benzyl derivatives' ionization energy. ChemPhysChem, 24(20), e202300359 (9 pp.). https://doi.org/10.1002/cphc.202300359
Bonding in low-coordinated organoarsenic and organoantimony compounds: a threshold photoelectron spectroscopic investigation
Karaev, E., Gerlach, M., Faschingbauer, L., Ramler, J., Krummenacher, I., Lichtenberg, C., … Fischer, I. (2023). Bonding in low-coordinated organoarsenic and organoantimony compounds: a threshold photoelectron spectroscopic investigation. Chemistry: A European Journal, 29(35), e202300637 (9 pp.). https://doi.org/10.1002/chem.202300637
A comprehensive experimental and kinetic modeling study of di-isobutylene isomers: part 1
Lokachari, N., Kukkadapu, G., Song, H., Vanhove, G., Lailliau, M., Dayma, G., … Curran, H. J. (2023). A comprehensive experimental and kinetic modeling study of di-isobutylene isomers: part 1. Combustion and Flame, 251, 112301 (17 pp.). https://doi.org/10.1016/j.combustflame.2022.112301
 

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