The synergistic interactions between certain ethoxylated polysorbate nonionic surfactants and the protein hydrophobin result in spontaneous self-assembly at the air–water interface to form layered surface structures. The surface structures are characterized using neutron reflectivity. The formation of the layered surface structures is promoted by the hydrophobic interaction between the polysorbate alkyl chain and the hydrophobic patch on the surface of the globular hydrophobin and the interaction between the ethoxylated sorbitan headgroup and hydrophilic regions of the protein. The range of the ethoxylated polysorbate concentrations over which the surface ordering occurs is a maximum for the more hydrophobic surfactant polyoxyethylene(8) so...
Hydrophobins are extracellular proteins produced by filamentous fungi. They show a variety of functi...
The fungal class I hydrophobin SC3 self-assembles into an amphipathic membrane at hydrophilic-hydrop...
The fungal class I hydrophobin SC3 self-assembles into an amphipathic membrane at hydrophilic-hydrop...
The synergistic interactions between certain ethoxylated polysorbate nonionic surfactants and the pr...
Neutron reflectivity measurements have been used to study the surface adsorption of the polyethylene...
Neutron reflectivity measurements have been used to study the surface adsorption of the polyethylene...
We use surface-specific vibrational sum-frequency generation spectroscopy (VSFG) to study the struct...
Hydrophobins are small fungal proteins that self-assemble at hydrophilic/hydrophobic interfaces into...
Hydrophobins are surface active proteins that are produced by filamentous fungi. They are interestin...
We use surface-specific vibrational sum-frequency generation spectroscopy (VSFG) to study the struct...
The class I hydrophobin EAS is part of a family of small, amphiphilic fungal proteins best known for...
Class II hydrophobins are amphiphilic proteins produced by filamentous fungi. One of their typical f...
AbstractHydrophobins are small fungal proteins that self-assemble at hydrophilic/hydrophobic interfa...
Hydrophobins are small surface active proteins that are produced by filamentous fungi. The surface a...
Hydrophobins are extracellular proteins produced by filamentous fungi. They show a variety of functi...
Hydrophobins are extracellular proteins produced by filamentous fungi. They show a variety of functi...
The fungal class I hydrophobin SC3 self-assembles into an amphipathic membrane at hydrophilic-hydrop...
The fungal class I hydrophobin SC3 self-assembles into an amphipathic membrane at hydrophilic-hydrop...
The synergistic interactions between certain ethoxylated polysorbate nonionic surfactants and the pr...
Neutron reflectivity measurements have been used to study the surface adsorption of the polyethylene...
Neutron reflectivity measurements have been used to study the surface adsorption of the polyethylene...
We use surface-specific vibrational sum-frequency generation spectroscopy (VSFG) to study the struct...
Hydrophobins are small fungal proteins that self-assemble at hydrophilic/hydrophobic interfaces into...
Hydrophobins are surface active proteins that are produced by filamentous fungi. They are interestin...
We use surface-specific vibrational sum-frequency generation spectroscopy (VSFG) to study the struct...
The class I hydrophobin EAS is part of a family of small, amphiphilic fungal proteins best known for...
Class II hydrophobins are amphiphilic proteins produced by filamentous fungi. One of their typical f...
AbstractHydrophobins are small fungal proteins that self-assemble at hydrophilic/hydrophobic interfa...
Hydrophobins are small surface active proteins that are produced by filamentous fungi. The surface a...
Hydrophobins are extracellular proteins produced by filamentous fungi. They show a variety of functi...
Hydrophobins are extracellular proteins produced by filamentous fungi. They show a variety of functi...
The fungal class I hydrophobin SC3 self-assembles into an amphipathic membrane at hydrophilic-hydrop...
The fungal class I hydrophobin SC3 self-assembles into an amphipathic membrane at hydrophilic-hydrop...