Reconsideration of the excited-state double proton transfer (ESDPT) in 2-aminopyridine/acid systems: role of the intermolecular hydrogen bonding in excited states.
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Shuo Chai | Guang-Jiu Zhao | Peng Song | Jian-Yong Liu | Keli Han | G. Zhao | P. Song | Ke-Li Han | Song-Qiu Yang | Shuo Chai | Jian-Yong Liu | Song-Qiu Yang
[1] Jyh‐Chiang Jiang,et al. Charge-enhanced C–H–O interactions of a self-assembled triple helical spine probed by high-pressure , 2002 .
[2] D. Nesbitt,et al. Ab initio large-amplitude quantum-tunneling dynamics in vinyl radical: a vibrationally adiabatic approach. , 2008, Physical chemistry chemical physics : PCCP.
[3] A. C. Testa,et al. Fluorescence study of aminopyridines , 1968 .
[4] T. Ebata,et al. Structure and Photoinduced Excited State Keto−Enol Tautomerization of 7-Hydroxyquinoline-(CH3OH)n Clusters , 2002 .
[5] Jun Zeng,et al. Electronic excitations of green fluorescent proteins: Protonation states of chromophore model compound in solutions , 2005, J. Comput. Chem..
[6] Guang-Jiu Zhao,et al. Time‐dependent density functional theory study on hydrogen‐bonded intramolecular charge‐transfer excited state of 4‐dimethylamino‐benzonitrile in methanol , 2008, J. Comput. Chem..
[7] Timothy S. Zwier,et al. Electronic and Infrared Spectroscopy of Anthranilic Acid in a Supersonic Jet , 2003 .
[8] Filipp Furche,et al. Adiabatic time-dependent density functional methods for excited state properties , 2002 .
[9] Jyh‐Chiang Jiang,et al. High-pressure spectroscopic probe of hydrophobic hydration of the methyl groups in dimethyl sulfoxide , 2003 .
[10] Schettino,et al. Interaction between aromatic residues. Molecular dynamics and ab initio exploration of the potential energy surface of the tryptophan-histidine pair , 2000 .
[11] T. Tahara,et al. Excitation-wavelength dependence of the femtosecond fluorescence dynamics of 7-azaindole dimer: further evidence for the concerted double proton transfer in solution , 2001 .
[12] R. Ahlrichs,et al. Performance of parallel TURBOMOLE for density functional calculations , 1998, J. Comput. Chem..
[13] Guang-Jiu Zhao,et al. Site-selective photoinduced electron transfer from alcoholic solvents to the chromophore facilitated by hydrogen bonding: a new fluorescence quenching mechanism. , 2007, The journal of physical chemistry. B.
[14] H. Hamaguchi,et al. Picosecond Dynamics of Stepwise Double Proton-Transfer Reaction in the Excited State of the 2-Aminopyridine/Acetic Acid System† , 2002 .
[15] T. Zwier. THE SPECTROSCOPY OF SOLVATION IN HYDROGEN-BONDED AROMATIC CLUSTERS , 1996 .
[16] P. Weber,et al. Time‐delayed two‐color photoelectron spectra of aniline, 2‐aminopyridine, and 3‐aminopyridine: Snapshots of the nonadiabatic curve crossings , 1995 .
[17] P. Pyykkö,et al. Deuteron quadrupole coupling in benzene: librational corrections using a temperature-dependent Einstein model, and summary. The symmetries of electric field gradients and conditions for eta = 1. , 2008, Physical chemistry chemical physics : PCCP.
[18] Guang-Jiu Zhao,et al. Effects of hydrogen bonding on tuning photochemistry: concerted hydrogen-bond strengthening and weakening. , 2008, Chemphyschem : a European journal of chemical physics and physical chemistry.
[19] Hans Lischka,et al. Excited-state intramolecular proton transfer: a survey of TDDFT and RI-CC2 excited-state potential energy surfaces. , 2005, The journal of physical chemistry. A.
[20] K. Inuzuka,et al. Electronic properties and ultraviolet absorption and fluorescence spectra of 2-pyridinamine , 1986 .
[21] W. Domcke,et al. Computational studies of the photophysics of hydrogen-bonded molecular systems. , 2007, The journal of physical chemistry. A.
[22] Wei-Ping Hu,et al. Ground and Excited-State Acetic Acid Catalyzed Double Proton Transfer in 2-Aminopyridine† , 2003 .
[23] Noam Agmon. Elementary Steps in Excited-state Proton Transfer † , 2022 .
[24] F. Gai,et al. Solvation of 7-azaindole in alcohols and water : evidence for concerted, excited-state, double-proton transfer in alcohols , 1993 .
[25] Guang-Yue Li,et al. Photoinduced intramolecular charge transfer and S2 fluorescence in thiophene-pi-conjugated donor-acceptor systems: experimental and TDDFT studies. , 2008, Chemistry.
[26] Y. Iwasawa,et al. Energy-gaining formation and catalytic behavior of active structures in a SiO(2)-supported unsaturated Ru complex catalyst for alkene epoxidation by DFT calculations. , 2007, Physical chemistry chemical physics : PCCP.
[27] Guang-Jiu Zhao,et al. Ultrafast excited-state dynamics of tetraphenylethylene studied by semiclassical simulation. , 2007, The Journal of chemical physics.
[28] S. Wallace,et al. Solvation effects in jet-cooled 2-aminopyridine clusters: excited-state dynamics and two-color threshold photoionization spectroscopy , 1985 .
[29] M. Fujii,et al. Excited state hydrogen transfer in fluorophenol.ammonia clusters studied by two-color REMPI spectroscopy. , 2006, Physical chemistry chemical physics : PCCP.
[30] Guang-Jiu Zhao,et al. Novel infrared spectra for intermolecular dihydrogen bonding of the phenol-borane-trimethylamine complex in electronically excited state. , 2007, The Journal of chemical physics.
[31] Jun Zeng,et al. Hydrogen bonding and solvent effects on the lowest 1(n, π*) excitations of triazines in water , 2004, J. Comput. Chem..
[32] Jinfeng Sun,et al. Time-dependent density functional theory study on electronically excited States of coumarin 102 chromophore in aniline solvent: reconsideration of the electronic excited-state hydrogen-bonding dynamics. , 2008, The journal of physical chemistry. A.
[33] L. Adamowicz,et al. Density functional theory and ab-initio computational study of the 2- hydroxypyridine/2-pyridone system: A comparison with FT-IR data from matrix isolation experiments , 1999 .
[34] P. Procacci,et al. Comparing polarizable force fields to ab initio calculations reveals nonclassical effects in condensed phases. , 2005, The Journal of chemical physics.
[35] L. Adamowicz,et al. Relation between structure and tautomerism in diazinones and diazinethiones. An experimental matrix isolation and theoretical ab initio study , 1992 .
[36] Guang-Jiu Zhao,et al. Excited state electronic structures and photochemistry of heterocyclic annulated perylene (HAP) materials tuned by heteroatoms: S, Se, N, O, C, Si, and B. , 2009, The journal of physical chemistry. A.
[37] Nadia Balucani,et al. Crossed molecular beam reactive scattering: from simple triatomic to multichannel polyatomic reactions , 2006 .
[38] F. J. Luque,et al. Amino−Imino Tautomerism in Derivatives of Cytosine: Effect on Hydrogen-Bonding and Stacking Properties , 2001 .
[39] S. Grimme,et al. An improved method for density functional calculations of the frequency-dependent optical rotation , 2002 .
[40] R. Ahlrichs,et al. Efficient molecular numerical integration schemes , 1995 .
[41] H. Sekiya,et al. Excited-state double-proton transfer in the (3-methyl-7-azaindole)–(7-azaindole) hetero-dimer in the gas phase , 2005 .
[42] Andreas Müller,et al. Hydrogen bonding and tunneling in the 2-pyridone·2-hydroxypyridine dimer. Effect of electronic excitation , 2002 .
[43] Guang-Jiu Zhao,et al. Site-specific solvation of the photoexcited protochlorophyllide a in methanol: formation of the hydrogen-bonded intermediate state induced by hydrogen-bond strengthening. , 2008, Biophysical journal.
[44] I. Petkova,et al. Structure and photophysics of 2-(2'-pyridyl)benzindoles: the role of intermolecular hydrogen bonds. , 2007, The journal of physical chemistry. A.
[45] D. Huppert,et al. Transition in the temperature-dependence of GFP fluorescence: from proton wires to proton exit. , 2006, Biophysical journal.
[46] Sean C. Smith,et al. MODEL REAL-TIME QUANTUM DYNAMICAL SIMULATIONS OF PROTON TRANSFER IN THE GREEN FLUORESCENT PROTEIN (GFP) , 2007 .
[47] Hans W. Horn,et al. ELECTRONIC STRUCTURE CALCULATIONS ON WORKSTATION COMPUTERS: THE PROGRAM SYSTEM TURBOMOLE , 1989 .
[48] Guang-Jiu Zhao,et al. Early time hydrogen-bonding dynamics of photoexcited coumarin 102 in hydrogen-donating solvents: theoretical study. , 2007, The journal of physical chemistry. A.
[49] F. J. Luque,et al. Theoretical studies of d(A:T)-based parallel-stranded DNA duplexes. , 2001, Journal of the American Chemical Society.
[50] José M. Lluch,et al. Ab Initio Based Exploration of the Potential Energy Surface for the Double Proton Transfer in the First Excited Singlet Electronic State of the 7-Azaindole Dimer , 2001 .
[51] Wenzhen Lai,et al. High-pressure Raman studies on aqueous protonated thiazole: presence of charge-enhanced C-H...O hydrogen bonds. , 2005, The journal of physical chemistry. B.
[52] M. Suhm,et al. Concerted proton motion in hydrogen-bonded trimers: a spontaneous Raman scattering perspective. , 2006, Physical chemistry chemical physics : PCCP.
[53] M. Aida,et al. Photoinduced amino-imino tautomerism of 2-aminopyridine in a low-temperature argon matrix , 2005 .
[54] Keli Han,et al. Dynamic simulation study on ultrafast excited-state torsional dynamics of 9,9'-bianthryl (BA) in gas phase : Real-time observation of novel oscillation behavior with the torsional coordinate , 2008 .
[55] U. Wild,et al. Inversion of close-lying 1.pi.* and 1.pi..pi.* states in 2-aminopyridine by protonation. A CNDO study , 1981 .
[56] M. Suhm,et al. Raman jet spectroscopy of formic acid dimers: low frequency vibrational dynamics and beyond. , 2007, Physical chemistry chemical physics : PCCP.
[57] A. Schäfer,et al. Fully optimized contracted Gaussian basis sets of triple zeta valence quality for atoms Li to Kr , 1994 .