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Ultrafast excited state dynamics

Crespo-Hemandez CE, Cohen B, Hare PM, Kohler B (2004) Ultrafast excited-state dynamics in nucleic acids. Chem Rev 104 1977... [Pg.327]

Cohen B, Hare P, Kohler B (2003) Ultrafast excited-state dynamics of adenine and monomethy-lated adenines in solution implications for the nonradiative decay mechanism. J Am Chem Soc 125 13594... [Pg.330]

Bittner ER (2007) Frenkel exciton model of ultrafast excited state dynamics in AT DNA double helices. J Photochem Photobiol A 190 328-334... [Pg.337]

Hosoi H, Mizuno H, Miyawaki A, Tahara T (2006) Competition between energy and proton transfer in ultrafast excited-state dynamics of an oligomeric fluorescent protein red Kaede. J PhysChemB 110 22853-22860... [Pg.380]

Shu X, Kallio K, Shi X, Abbyad P, Kanchanawong P, Childs W, Boxer SG, Remington SJ (2007) Ultrafast excited-state dynamics in the green fluorescent protein variant S65T/ H148D. 1. Mutagenesis and structural studies. Biochemistry 46 12005-12013... [Pg.382]

Chattoraj, M., King, B. A., Bublitz, G. U. and Boxer, S. G. (1996). Ultrafast excited state dynamics in green fluorescent protein Multiple states and proton transfer. Proc. Natl. Acad. Sci. USA 93, 8362-7. [Pg.225]

Ultrafast excited state dynamics in the green fluorescent protein chromophore... [Pg.425]

The SHG intensity from interfaces is determined by the second-order nonlinear susceptibility and the Fresnel coefficients. The SHG spectra of the probe pulses change depending on the transient electronic population and the orientation of the chromophores through these physical quantities. Hohlfeld and coworkers have studied hot electron dynamics in thin metal films by this technique [21]. From the transient response of the SHG intensity, electronic temperature decay due to the electron-phonon coupling in the metal substrate is extracted. Eisenthal and coworkers have studied ultrafast excited state dynamics of dye molecules at liquid interfaces [22]. Particularly, the isomerization dynamics of an organic dye at the interfaces was found to become significantly slower than in the bulk. [Pg.58]

WangY., Asbury J. B. and Lian X. (2000), Ultrafast excited-state dynamics of Re(CO)3Cl(dcbpy) in solution and on nanocrystalline Xi02 and ZrOi thin films , J. Phys. Chem. A 104, 4291 299. [Pg.673]

Ultrafast excited-state dynamics in DNA and RNA polymers B. Cohen, C.-E. Crespo-Hemandez, P.-M. Hare and B. Kohler... [Pg.588]

Busby M, Hartl F, Matousek P et al (2008) Ultrafast excited state dynamics controlling photochemical isomerization of N-methyl4-[trans-2-(4-p5uidyl)ethenyl]pyridinium coordinated to a Re(CO)3(2,2 -bipyridine) chromophore. Chem Fur J 14 6912-6923... [Pg.147]

Burghardt I, Hynes IT, Gindensperger E, Cederbaum LS (2006) Ultrafast excited-state dynamics at a conical intersection the role of environmental effects. Phys Scr 73 C42... [Pg.272]

Gr goire, G., Dedonder-Lardeux, C., Jouvet, C., Desfran ois, C., 8c Fayeton, J. A. (2007). Ultrafast excited state dynamics in protonated GWG and... [Pg.1207]

Ultrafast Excited-state Dynamics in Nucleic Acids. [Pg.122]


See other pages where Ultrafast excited state dynamics is mentioned: [Pg.531]    [Pg.463]    [Pg.94]    [Pg.554]    [Pg.463]    [Pg.336]    [Pg.195]    [Pg.94]    [Pg.1371]    [Pg.178]   


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