1 |
Initial excited-state relaxation of the isolated 11-cis protonated Schiff base of retinal: Evidence for in-plane motion from ab initio quantum chemical simulation of the resonance Raman spectrum Garavelli M, Negri F, Olivucci M Journal of the American Chemical Society, 121(5), 1023, 1999 |
2 |
Quantitative determination of the protein catalytic efficiency for the retinal excited-state decay in bacteriorhodopsin Logunov SL, Masciangioli TM, El-Sayed MA Journal of Physical Chemistry B, 102(41), 8109, 1998 |
3 |
Chemical dynamics in proteins : The photoisomerization of retinal in bacteriorhodopsin Gai F, Hasson KC, McDonald JC, Anfinrud PA Science, 279(5358), 1886, 1998 |
4 |
Fourier-Transform Raman-Study of Retinal Isomeric Composition and Equilibration in Halorhodopsin Zimanyi L, Lanyi JK Journal of Physical Chemistry B, 101(10), 1930, 1997 |
5 |
Vibrational-Spectrum of K-590 Containing C-13(14,15) Retinal - Picosecond Time-Resolved Coherent Anti-Stokes-Raman Spectroscopy of the Room-Temperature Bacteriorhodopsin Photocycle Jager F, Ujj L, Atkinson GH, Sheves M, Livnah N, Ottolenghi M Journal of Physical Chemistry, 100(29), 12066, 1996 |
6 |
Vibrational Analysis of a Schiff-Base Based on Ab-Initio Molecular-Orbital Calculations - Effect of Electron Correlation on the C=n Stretching Force-Constant and the Origin of the Shift of the C=n Stretching Frequency upon Protonation and Hydrogen-Bond Formation Masuda S, Torii H, Tasumi M Journal of Physical Chemistry, 100(38), 15328, 1996 |
7 |
Vibrational Analysis of a Retinal Protonated Schiff-Base Analog Deng H, Huang L, Groesbeek M, Lugtenburg J, Callender RH Journal of Physical Chemistry, 98(18), 4776, 1994 |