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  3. Molecular Arrangement of a Mixture of Organosulfur Surfactants at the Aqueous Solution–Vapor Interface Studied by Photoelectron Intensity and Angular Distribution Measurements and Molecular Dynamics Simulations
Molecular Arrangement of a Mixture of Organosulfur Surfactants at the  Aqueous Solution–Vapor Interface Studied by Photoelectron Intensity and  Angular Distribution Measurements and Molecular Dynamics Simulations

Molecular Arrangement of a Mixture of Organosulfur Surfactants at the Aqueous Solution–Vapor Interface Studied by Photoelectron Intensity and Angular Distribution Measurements and Molecular Dynamics Simulations

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Molecular Arrangement of a Mixture of Organosulfur Surfactants at the  Aqueous Solution–Vapor Interface Studied by Photoelectron Intensity and  Angular Distribution Measurements and Molecular Dynamics Simulations
Photoelectron angular distributions as sensitive probes of
Molecular Arrangement of a Mixture of Organosulfur Surfactants at the  Aqueous Solution–Vapor Interface Studied by Photoelectron Intensity and  Angular Distribution Measurements and Molecular Dynamics Simulations
Phys. Rev. B 86, 094413 (2012) - Noncollinear magnetism and single
Molecular Arrangement of a Mixture of Organosulfur Surfactants at the  Aqueous Solution–Vapor Interface Studied by Photoelectron Intensity and  Angular Distribution Measurements and Molecular Dynamics Simulations
Aqueous Supramolecular Assemblies of Photocontrolled Molecular
Molecular Arrangement of a Mixture of Organosulfur Surfactants at the  Aqueous Solution–Vapor Interface Studied by Photoelectron Intensity and  Angular Distribution Measurements and Molecular Dynamics Simulations
Photoelectron angular distributions as sensitive probes of
Molecular Arrangement of a Mixture of Organosulfur Surfactants at the  Aqueous Solution–Vapor Interface Studied by Photoelectron Intensity and  Angular Distribution Measurements and Molecular Dynamics Simulations
Selective Photoactivation: From a Single Unit Monomer Insertion
Molecular Arrangement of a Mixture of Organosulfur Surfactants at the  Aqueous Solution–Vapor Interface Studied by Photoelectron Intensity and  Angular Distribution Measurements and Molecular Dynamics Simulations
Dipole-driven interlude of mesomorphism in polyelectrolyte
Molecular Arrangement of a Mixture of Organosulfur Surfactants at the  Aqueous Solution–Vapor Interface Studied by Photoelectron Intensity and  Angular Distribution Measurements and Molecular Dynamics Simulations
Selective Photoactivation: From a Single Unit Monomer Insertion
Molecular Arrangement of a Mixture of Organosulfur Surfactants at the  Aqueous Solution–Vapor Interface Studied by Photoelectron Intensity and  Angular Distribution Measurements and Molecular Dynamics Simulations
The micellar and thermophysical studies of a surfactant, sodium
Molecular Arrangement of a Mixture of Organosulfur Surfactants at the  Aqueous Solution–Vapor Interface Studied by Photoelectron Intensity and  Angular Distribution Measurements and Molecular Dynamics Simulations
Molecular interactions between Pluronic F127 and saponin in
Molecular Arrangement of a Mixture of Organosulfur Surfactants at the  Aqueous Solution–Vapor Interface Studied by Photoelectron Intensity and  Angular Distribution Measurements and Molecular Dynamics Simulations
Phys. Rev. B 86, 094413 (2012) - Noncollinear magnetism and single
Molecular Arrangement of a Mixture of Organosulfur Surfactants at the  Aqueous Solution–Vapor Interface Studied by Photoelectron Intensity and  Angular Distribution Measurements and Molecular Dynamics Simulations
Molecular Arrangement of a Mixture of Organosulfur Surfactants at
Molecular Arrangement of a Mixture of Organosulfur Surfactants at the  Aqueous Solution–Vapor Interface Studied by Photoelectron Intensity and  Angular Distribution Measurements and Molecular Dynamics Simulations
Selective Photoactivation: From a Single Unit Monomer Insertion
Molecular Arrangement of a Mixture of Organosulfur Surfactants at the  Aqueous Solution–Vapor Interface Studied by Photoelectron Intensity and  Angular Distribution Measurements and Molecular Dynamics Simulations
Molecular Arrangement of a Mixture of Organosulfur Surfactants at
Molecular Arrangement of a Mixture of Organosulfur Surfactants at the  Aqueous Solution–Vapor Interface Studied by Photoelectron Intensity and  Angular Distribution Measurements and Molecular Dynamics Simulations
UV absorption spectrum and photodissociation dynamics of CH2OO

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