Nanoplasmonic sensors have emerged as a promising measurement approach to track biomacromolecular interactions involving lipid membrane interfaces. By taking advantage of nanoscale fabrication capabilities, it is possible to design sensing platforms with various architectural configurations. Such capabilities open the door to fabricating lipid membrane-coated nanoplasmonic sensors with varying degrees of membrane curvature in order to understand how biomacromolecular interaction processes are influenced by membrane curvature. Herein, we employed an indirect nanoplasmonic sensing approach to characterize the fabrication of supported lipid bilayers (SLBs) on silica-coated nanowell and nanodisk sensing platforms and to investigate how membrane...
Biosensors based on plasmonic nanostructures are widely used in various applications and benefit fro...
Tunable nanoplasmonic biosensing for lipid and protein applications is reported based on controlling...
The biochemical processes of cell membranes are sensitive to the geometry of the lipid bilayer. We s...
Nanoplasmonic sensors have emerged as a promising measurement approach to track biomacromolecular in...
The biochemical processes of cell membranes are sensitive to the geometry of the lipid bilayer. We s...
The integration of supported lipid membranes with surface-based nanoplasmonic arrays provides a powe...
The integration of supported lipid membranes with surface-based nanoplasmonic arrays provides a powe...
This chapter is dedicated to nanoplasmonic sensing systems made compatible with studies of artificia...
This chapter is dedicated to nanoplasmonic sensing systems made compatible with studies of artificia...
The design and application of surface-based nanoplasmonic sensors has spurred broad interest from th...
The design and application of surface-based nanoplasmonic sensors has spurred broad interest from th...
Biosensors based on plasmonic nanostructures are widely used in various applications and benefit fro...
Biosensors based on plasmonic nanostructures are widely used in various applications and benefit fro...
Biosensors based on plasmonic nanostructures are widely used in various applications and benefit fro...
Biosensors based on plasmonic nanostructures are widely used in various applications and benefit fro...
Biosensors based on plasmonic nanostructures are widely used in various applications and benefit fro...
Tunable nanoplasmonic biosensing for lipid and protein applications is reported based on controlling...
The biochemical processes of cell membranes are sensitive to the geometry of the lipid bilayer. We s...
Nanoplasmonic sensors have emerged as a promising measurement approach to track biomacromolecular in...
The biochemical processes of cell membranes are sensitive to the geometry of the lipid bilayer. We s...
The integration of supported lipid membranes with surface-based nanoplasmonic arrays provides a powe...
The integration of supported lipid membranes with surface-based nanoplasmonic arrays provides a powe...
This chapter is dedicated to nanoplasmonic sensing systems made compatible with studies of artificia...
This chapter is dedicated to nanoplasmonic sensing systems made compatible with studies of artificia...
The design and application of surface-based nanoplasmonic sensors has spurred broad interest from th...
The design and application of surface-based nanoplasmonic sensors has spurred broad interest from th...
Biosensors based on plasmonic nanostructures are widely used in various applications and benefit fro...
Biosensors based on plasmonic nanostructures are widely used in various applications and benefit fro...
Biosensors based on plasmonic nanostructures are widely used in various applications and benefit fro...
Biosensors based on plasmonic nanostructures are widely used in various applications and benefit fro...
Biosensors based on plasmonic nanostructures are widely used in various applications and benefit fro...
Tunable nanoplasmonic biosensing for lipid and protein applications is reported based on controlling...
The biochemical processes of cell membranes are sensitive to the geometry of the lipid bilayer. We s...