We report here depth-dependent solvent relaxation effects in the reverse micellar assembly using the deeply embedded probe NBD-cholesterol, a fluorescent cholesterol analogue in which the 7-nitrobenz-2-oxa-1,3-diazol-4-yl (NBD) group is covalently attached to the flexible acyl chain of cholesterol. Because of its deeper location, the NBD group of NBD-cholesterol is capable of reporting solvation dynamics in the deeper regions of the organized molecular assembly in which it is incorporated. NBD-cholesterol exhibits red edge excitation shift (REES) when incorporated into reverse micelles formed by sodium bis(2-ethylhexyl) sulfosuccinate (AOT) in isooctane with varying [water]/[surfactant] molar ratio (wo). Interestingly, the extent of REES in...
Chaotropes such as urea perturb the organization of molecular assemblies formed by the hydrophobic e...
Lateral diffusion of membrane constituents plays an important role in membrane organization and repr...
Reverse micelles (RM) are nanopools of water surrounded by surfactant molecules in a non-polar solve...
We report here depth-dependent solvent relaxation effects in the reverse micellar assembly using the...
Wavelength-selective fluorescence comprises a set of approaches based on the red edge effect in fluo...
Wavelength-selective fluorescence comprises a set of approaches based on the red edge effect in fluo...
Abstract Water confi ned on nanometer-length scales is found in many physical and biological environ...
Structural transition can be induced in charged micelles by increasing the ionic strength of the med...
The binding and rotational properties of an excited-state intramolecular proton transfer (ESIPT) flu...
The biological membrane is a highly organized anisotropic molecular assembly. While the center of th...
Fluorescent analogues of cholesterol offer a powerful approach for monitoring cholesterol behavior i...
Excitation wavelength dependence of solvation and rotational relaxation dynamics has been investigat...
Relaxation dynamics at the surface of biologically important macromolecules is important taking into...
We present here, a detailed photophysical and rotational relaxation dynamical study of three structu...
Membrane penetration depth represents an important parameter which can be used to define the conform...
Chaotropes such as urea perturb the organization of molecular assemblies formed by the hydrophobic e...
Lateral diffusion of membrane constituents plays an important role in membrane organization and repr...
Reverse micelles (RM) are nanopools of water surrounded by surfactant molecules in a non-polar solve...
We report here depth-dependent solvent relaxation effects in the reverse micellar assembly using the...
Wavelength-selective fluorescence comprises a set of approaches based on the red edge effect in fluo...
Wavelength-selective fluorescence comprises a set of approaches based on the red edge effect in fluo...
Abstract Water confi ned on nanometer-length scales is found in many physical and biological environ...
Structural transition can be induced in charged micelles by increasing the ionic strength of the med...
The binding and rotational properties of an excited-state intramolecular proton transfer (ESIPT) flu...
The biological membrane is a highly organized anisotropic molecular assembly. While the center of th...
Fluorescent analogues of cholesterol offer a powerful approach for monitoring cholesterol behavior i...
Excitation wavelength dependence of solvation and rotational relaxation dynamics has been investigat...
Relaxation dynamics at the surface of biologically important macromolecules is important taking into...
We present here, a detailed photophysical and rotational relaxation dynamical study of three structu...
Membrane penetration depth represents an important parameter which can be used to define the conform...
Chaotropes such as urea perturb the organization of molecular assemblies formed by the hydrophobic e...
Lateral diffusion of membrane constituents plays an important role in membrane organization and repr...
Reverse micelles (RM) are nanopools of water surrounded by surfactant molecules in a non-polar solve...