The photochemical reaction process of bacteriorhodopsin in the nanosecond time range (-120–860 ns) was measured in the 1400–900 cm-1 region with an improved time resolved dispersive-type infrared spectrometer. The system is equipped with a newly developed detection unit whose instrumental response to a 5-ns laser pulse has a full width of the half-maximum of 60 ns. It provides highly accurate data that enabled us to extract a kinetic process one order of magnitude faster than the instrumental response. The spectral changes in the 1400–900 cm-1 region were analyzed by singular value decomposition and resolved into three components. These components were separated by fitting with 10- and 1000-ns exponential functions and a step function, whic...
The fluorescence spectrum of a distinct isometric and conformational intermediate formed on the 10(-...
AbstractNanosecond-to-microsecond time-resolved Fourier transform infrared (FTIR) spectroscopy in th...
The kinetic analysis of irreversible protein reactions requires an analytical technique that provide...
The photochemical reaction process of bacteriorhodopsin in the nanosecond time range (-120–860 ns) w...
The J−K transition of the bacteriorhodopsin photocycle was monitored by sub-picosecond time-resolved...
Picosecond infrared spectroscopy is developed and used for the first time to study the dynamics of p...
The photoinduced reaction cycle of bacteriorhodopsin (BR) has been studied by means of a recently de...
ABSTRACT The infrared emission observed below 2000 cm1 upon exciting retinal in bacteriorhodopsin (b...
Time-resolved vibrational spectroscopy is an important tool for understanding biological processes a...
AbstractThe infrared emission observed below 2000cm−1 upon exciting retinal in bacteriorhodopsin (bR...
Nanosecond time-resolved absorption measurements on the photolysis products of bacteriorhodopsin (BR...
The primary processes of the photochemical cycle of light-adapted bacteriorhodopsin (BR) were studie...
The primary processes of the photochemical cycle of light-adapted bacteriorhodopsin (BR) were studie...
Time-resolved vibrational spectra are used to elucidate the structural changes in the retinal chromo...
Picosecond transient absorption (PTA) in the 568–660-nm region is measured over the initial 80 ns of...
The fluorescence spectrum of a distinct isometric and conformational intermediate formed on the 10(-...
AbstractNanosecond-to-microsecond time-resolved Fourier transform infrared (FTIR) spectroscopy in th...
The kinetic analysis of irreversible protein reactions requires an analytical technique that provide...
The photochemical reaction process of bacteriorhodopsin in the nanosecond time range (-120–860 ns) w...
The J−K transition of the bacteriorhodopsin photocycle was monitored by sub-picosecond time-resolved...
Picosecond infrared spectroscopy is developed and used for the first time to study the dynamics of p...
The photoinduced reaction cycle of bacteriorhodopsin (BR) has been studied by means of a recently de...
ABSTRACT The infrared emission observed below 2000 cm1 upon exciting retinal in bacteriorhodopsin (b...
Time-resolved vibrational spectroscopy is an important tool for understanding biological processes a...
AbstractThe infrared emission observed below 2000cm−1 upon exciting retinal in bacteriorhodopsin (bR...
Nanosecond time-resolved absorption measurements on the photolysis products of bacteriorhodopsin (BR...
The primary processes of the photochemical cycle of light-adapted bacteriorhodopsin (BR) were studie...
The primary processes of the photochemical cycle of light-adapted bacteriorhodopsin (BR) were studie...
Time-resolved vibrational spectra are used to elucidate the structural changes in the retinal chromo...
Picosecond transient absorption (PTA) in the 568–660-nm region is measured over the initial 80 ns of...
The fluorescence spectrum of a distinct isometric and conformational intermediate formed on the 10(-...
AbstractNanosecond-to-microsecond time-resolved Fourier transform infrared (FTIR) spectroscopy in th...
The kinetic analysis of irreversible protein reactions requires an analytical technique that provide...