Tracking the ultraviolet-induced photochemistry of thiophenone during and after ultrafast ring opening
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Basile F. E. Curchod | B. Erk | D. Rolles | K. Prince | C. Callegari | A. Demidovich | O. Plekan | R. Squibb | Shashank Pathak | L. Giannessi | B. Curchod | R. Feifel | R. Forbes | R. Boll | R. Mason | D. Holland | M. Ashfold | Lea M. Ibele | A. Rouzée | R. Ingle | M. Di Fraia | J. Troß | C. Hansen | Jan Troß | Lea M Ibele
[1] W. Fang,et al. Real-time tracking of the entangled pathways in the multichannel photodissociation of acetaldehyde† , 2020, Chemical science.
[2] W. Fang,et al. Combined Quantum Trajectory Mean‐Field and Molecular Mechanical (QTMF/MM) Nonadiabatic Dynamics Simulations on the Photoinduced Ring‐Opening Reaction of 2(5H)‐Thiophenone , 2019, ChemPhotoChem.
[3] S. Boutet,et al. A deep UV trigger for ground-state ring-opening dynamics of 1,3-cyclohexadiene , 2019, Science Advances.
[4] S. Boutet,et al. Ultrafast X-ray scattering reveals vibrational coherence following Rydberg excitation , 2019, Nature chemistry.
[5] T. Martínez,et al. The photochemical ring-opening of 1,3-cyclohexadiene imaged by ultrafast electron diffraction , 2018, Nature Chemistry.
[6] K. Takatsuka,et al. Conical-intersection dynamics and ground-state chemistry probed by extreme-ultraviolet time-resolved photoelectron spectroscopy , 2018, Nature Communications.
[7] I. Vartanyants,et al. Seeded X-ray free-electron laser generating radiation with laser statistical properties , 2018, Nature Communications.
[8] D. Ding,et al. Light-driven transformable optical agent with adaptive functions for boosting cancer surgery outcomes , 2018, Nature Communications.
[9] E. Springate,et al. Mapping the Complete Reaction Path of a Complex Photochemical Reaction. , 2018, Physical review letters.
[10] A. Stolow,et al. Dynamics at Conical Intersections. , 2018, Annual review of physical chemistry.
[11] K. Prince,et al. Acetylacetone photodynamics at a seeded free-electron laser , 2018, Nature Communications.
[12] J. Nishitani,et al. Time-resolved photoelectron spectroscopy of polyatomic molecules using 42-nm vacuum ultraviolet laser based on high harmonics generation , 2017 .
[13] E. Vauthey,et al. Ultrafast Elementary Photochemical Processes of Organic Molecules in Liquid Solution. , 2017, Chemical reviews.
[14] E. Pedersoli,et al. Pulse Duration of Seeded Free-Electron Lasers , 2017 .
[15] Stephen R. Leone,et al. Femtosecond x-ray spectroscopy of an electrocyclic ring-opening reaction , 2017, Science.
[16] T. Taketsugu,et al. Structural dynamics of photochemical reactions probed by time-resolved photoelectron spectroscopy using high harmonic pulses. , 2016, Faraday discussions.
[17] T. Martínez,et al. Rich Athermal Ground-State Chemistry Triggered by Dynamics through a Conical Intersection. , 2016, Angewandte Chemie.
[18] M. Baudisch,et al. Ultrafast electron diffraction imaging of bond breaking in di-ionized acetylene , 2016, Science.
[19] M Sikorski,et al. Imaging Molecular Motion: Femtosecond X-Ray Scattering of an Electrocyclic Chemical Reaction. , 2015, Physical review letters.
[20] Daniele Cocco,et al. Recent results of PADReS, the Photon Analysis Delivery and REduction System, from the FERMI FEL commissioning and user operations. , 2015, Journal of synchrotron radiation.
[21] Marcello Coreno,et al. The Low Density Matter (LDM) beamline at FERMI: optical layout and first commissioning , 2015, Journal of synchrotron radiation.
[22] Jens Biegert,et al. Imaging an aligned polyatomic molecule with laser-induced electron diffraction , 2015, Nature Communications.
[23] S. Adachi,et al. Direct Observation of Ground-State Product Formation in a 1,3-Cyclohexadiene Ring-Opening Reaction. , 2015, The journal of physical chemistry letters.
[24] M. Ashfold,et al. Transient UV pump-IR probe investigation of heterocyclic ring-opening dynamics in the solution phase: the role played by nσ* states in the photoinduced reactions of thiophenone and furanone. , 2014, Physical chemistry chemical physics : PCCP.
[25] B. C. Arruda,et al. Ultrafast polyene dynamics: the ring opening of 1,3-cyclohexadiene derivatives. , 2014, Physical chemistry chemical physics : PCCP.
[26] Marcello Coreno,et al. A modular end-station for atomic, molecular, and cluster science at the low density matter beamline of FERMI@Elettra , 2013 .
[27] William A. Barletta,et al. Highly coherent and stable pulses from the FERMI seeded free-electron laser in the extreme ultraviolet , 2012, Nature Photonics.
[28] T. Martínez,et al. Transient X-ray fragmentation: probing a prototypical photoinduced ring opening. , 2012, Physical review letters.
[29] Toshinori Suzuki. Time-resolved photoelectron spectroscopy of non-adiabatic electronic dynamics in gas and liquid phases , 2012 .
[30] Toru Shiozaki,et al. Communication: extended multi-state complete active space second-order perturbation theory: energy and nuclear gradients. , 2011, The Journal of chemical physics.
[31] A. Granovsky,et al. Extended multi-configuration quasi-degenerate perturbation theory: the new approach to multi-state multi-reference perturbation theory. , 2011, The Journal of chemical physics.
[32] T. Martínez,et al. Ultrafast internal conversion in ethylene. I. The excited state lifetime. , 2011, The Journal of chemical physics.
[33] P. Weber,et al. The ultrafast pathway of photon-induced electrocyclic ring-opening reactions: the case of 1,3-cyclohexadiene. , 2011, Annual review of physical chemistry.
[34] Ivan S Ufimtsev,et al. Quantum Chemistry on Graphical Processing Units. 3. Analytical Energy Gradients, Geometry Optimization, and First Principles Molecular Dynamics. , 2009, Journal of chemical theory and computation.
[35] R. Fausto,et al. UV-induced unimolecular photochemistry of 2(5H)-furanone and 2(5H)-thiophenone isolated in low temperature inert matrices , 2009 .
[36] B. Feringa,et al. Light switching of molecules on surfaces. , 2009, Annual review of physical chemistry.
[37] P. Weber,et al. Ground state recovery and molecular structure upon ultrafast transition through conical intersections in cyclic dienes , 2009 .
[38] Ivan S Ufimtsev,et al. Quantum Chemistry on Graphical Processing Units. 1. Strategies for Two-Electron Integral Evaluation. , 2008, Journal of chemical theory and computation.
[39] Albert Stolow,et al. Ab initio molecular dynamics and time-resolved photoelectron spectroscopy of electronically excited uracil and thymine. , 2007, The journal of physical chemistry. A.
[40] Hans-Joachim Werner,et al. Matrix-formulated direct multiconfiguration self-consistent field and multiconfiguration reference configuration-interaction methods , 2007 .
[41] B. Roos. The Complete Active Space Self‐Consistent Field Method and its Applications in Electronic Structure Calculations , 2007 .
[42] B. Roos,et al. A modified definition of the zeroth-order Hamiltonian in multiconfigurational perturbation theory (CASPT2) , 2004 .
[43] Albert Stolow,et al. Femtosecond time-resolved photoelectron spectroscopy. , 2004, Chemical reviews.
[44] P. Lablanquie,et al. Complete two-electron spectra in double photoionization: the rare gases Ar, Kr, and Xe. , 2003, Physical review letters.
[45] V. Barone,et al. Toward reliable density functional methods without adjustable parameters: The PBE0 model , 1999 .
[46] H. Mutoh,et al. He I and He II photoelectron spectra of thiophenones , 1998 .
[47] J. Tully. Molecular dynamics with electronic transitions , 1990 .
[48] P. C. Hariharan,et al. The influence of polarization functions on molecular orbital hydrogenation energies , 1973 .
[49] J. Pople,et al. Self—Consistent Molecular Orbital Methods. XII. Further Extensions of Gaussian—Type Basis Sets for Use in Molecular Orbital Studies of Organic Molecules , 1972 .
[50] Chris J. Hammond,et al. time-resolved photoelectron spectroscopy , 2006 .
[51] H. Bock,et al. Gas-phase reactions. 29. Thioacrolein , 1982 .