A biomimetic cell membrane bioelectronic transistor consisting of a supported phospholipid bilayer atop chemical vapor deposition (CVD) graphene or solution processed reduced graphene oxide on titanium dioxide (TiO2) has been successfully demonstrated for biosensing application. For the first time, a unique bonding interaction between titanium and carbon atom on graphene oxide has been experimentally identified by X-ray Photoelectron Spectroscopy (XPS). The covalent interaction acts as a strong surface anchorage in facilitating uniform adhesion and near to ideal surface coverage of spin coated graphene oxide on titanium bearing substrate using the in-situ solid-liquid phase exfoliation method. The liquid gated Reduced Graphene Oxide (RGO) b...
Graphene, one atom thick sheet of sp2 bonded carbon atoms, is being envisioned as the next generatio...
Owing to their unique thickness-dependent electronic properties, together with perfect flexibility a...
Graphene, a single-atom-thick and two-dimensional carbon material, has attracted great attention rec...
Graphene is an attractive material not only because of its electronic and optical properties, but al...
In our work we investigate the development of a novel electrochemical biosensor using graphene as tr...
Graduation date:2018Atomically-thin graphene sheets have unprecedented characteristics for biosensin...
In our work we investigate the development of a novel electrochemical biosensor using graphene as tr...
In our work we investigate the development of a novel electrochemical biosensor that integrates a gr...
In this work we investigate the use of graphene as transducer in a novel biosensor for biomedical us...
Bio-sensing and analysis is an important step in the lab-on-a-chip paradigm. We develop high-through...
Biosensing devices based on graphene and nanostructures facilitate label-free detection with sensiti...
This thesis is submitted in partial fulfilment of the requirements for the degree of Bachelor of Sci...
Recent research trends now offer new opportunities for developing the next generations of label‐free...
Thesis: S.M. in Materials Science and Engineering and in Technology and Policy, Massachusetts Instit...
The advantages conferred by the physical, optical and electrochemical properties of graphene-based n...
Graphene, one atom thick sheet of sp2 bonded carbon atoms, is being envisioned as the next generatio...
Owing to their unique thickness-dependent electronic properties, together with perfect flexibility a...
Graphene, a single-atom-thick and two-dimensional carbon material, has attracted great attention rec...
Graphene is an attractive material not only because of its electronic and optical properties, but al...
In our work we investigate the development of a novel electrochemical biosensor using graphene as tr...
Graduation date:2018Atomically-thin graphene sheets have unprecedented characteristics for biosensin...
In our work we investigate the development of a novel electrochemical biosensor using graphene as tr...
In our work we investigate the development of a novel electrochemical biosensor that integrates a gr...
In this work we investigate the use of graphene as transducer in a novel biosensor for biomedical us...
Bio-sensing and analysis is an important step in the lab-on-a-chip paradigm. We develop high-through...
Biosensing devices based on graphene and nanostructures facilitate label-free detection with sensiti...
This thesis is submitted in partial fulfilment of the requirements for the degree of Bachelor of Sci...
Recent research trends now offer new opportunities for developing the next generations of label‐free...
Thesis: S.M. in Materials Science and Engineering and in Technology and Policy, Massachusetts Instit...
The advantages conferred by the physical, optical and electrochemical properties of graphene-based n...
Graphene, one atom thick sheet of sp2 bonded carbon atoms, is being envisioned as the next generatio...
Owing to their unique thickness-dependent electronic properties, together with perfect flexibility a...
Graphene, a single-atom-thick and two-dimensional carbon material, has attracted great attention rec...