Revealing the nature of interaction between graphene oxide (GO) and lipid membrane is a crucial issue but still remains challenging. Here, we describe our recent effort toward this direction by studying the GO-induced vibrational changes of interfacial water and lipid membrane with surface-enhanced infrared absorption (SEIRA) spectroscopy. The experimental results provide evidence that overcoming the electrostatic repulsion of phosphate group, its hydrogen bonding attraction as well as the electrostatic and hydrophobic interaction of choline group are the driving forces for the effective adsorption of GO on lipid membrane. This work will open exciting new avenues to explore the use of SEIRA spectroscopy technique in probing nanobio interfac...
Surface-enhanced infrared absorption spectroscopy (SEIRAS) represents a variation of conventional in...
Graphene oxide (GO) membranes have been widely explored for molecular separation, but the molecular ...
AbstractSurface-enhanced infrared absorption (SEIRA) difference spectroscopy can probe reactions in ...
Revealing the nature of interaction between graphene oxide (GO) and lipid membrane is a crucial issu...
The graphene family, especially graphene oxide (GO), has captured increasing prospects in the biomed...
Proton transfer plays a crucial role in a variety of biological phenomena. The transformation of nan...
We have investigated the interaction between graphene oxide and lipid membranes, using both supporte...
AbstractSurface-enhanced infrared absorption spectroscopy (SEIRAS) represents a variation of convent...
This cumulative dissertation focuses on studying the potential of carbon nanomaterials in surface-en...
We have investigated the interaction of graphene oxide (GO) sheets with supported lipid membranes wi...
We have investigated the interaction between graphene oxide and lipid membranes, using both supporte...
We present a new methodology that enables studies of the molecular structure of graphene-liquid inte...
The nanoscale structure and dynamics of proteins on surfaces has been extensively studied using vari...
Ataka K, Heberle J. Bioenergetics at the gold surface: SEIRAS probes photosynthetic and respiratory ...
Hybridization of nucleic acids with graphene nanomaterials is of great interest due to its potential...
Surface-enhanced infrared absorption spectroscopy (SEIRAS) represents a variation of conventional in...
Graphene oxide (GO) membranes have been widely explored for molecular separation, but the molecular ...
AbstractSurface-enhanced infrared absorption (SEIRA) difference spectroscopy can probe reactions in ...
Revealing the nature of interaction between graphene oxide (GO) and lipid membrane is a crucial issu...
The graphene family, especially graphene oxide (GO), has captured increasing prospects in the biomed...
Proton transfer plays a crucial role in a variety of biological phenomena. The transformation of nan...
We have investigated the interaction between graphene oxide and lipid membranes, using both supporte...
AbstractSurface-enhanced infrared absorption spectroscopy (SEIRAS) represents a variation of convent...
This cumulative dissertation focuses on studying the potential of carbon nanomaterials in surface-en...
We have investigated the interaction of graphene oxide (GO) sheets with supported lipid membranes wi...
We have investigated the interaction between graphene oxide and lipid membranes, using both supporte...
We present a new methodology that enables studies of the molecular structure of graphene-liquid inte...
The nanoscale structure and dynamics of proteins on surfaces has been extensively studied using vari...
Ataka K, Heberle J. Bioenergetics at the gold surface: SEIRAS probes photosynthetic and respiratory ...
Hybridization of nucleic acids with graphene nanomaterials is of great interest due to its potential...
Surface-enhanced infrared absorption spectroscopy (SEIRAS) represents a variation of conventional in...
Graphene oxide (GO) membranes have been widely explored for molecular separation, but the molecular ...
AbstractSurface-enhanced infrared absorption (SEIRA) difference spectroscopy can probe reactions in ...