Graphene nanostructures, exhibiting tunable and nanoscale-confined mid-infrared (mid-IR) plasmons, prevail as a powerful spectroscopic platform for novel surface-enhanced molecular identification. Particularly, graphene shows exciting opportunities for biosensing applications due to its versatile functionalization methods with different biomolecular building blocks (e.g., enzymes, proteins, and DNA). Here, a quantitative bioassay based on the mid-IR localized surface plasmon resonance (LSPR) modulation in functionalized graphene nanostructures is demonstrated. Specifically, vitamin B12 (vB12) using the specific recognition elements on modified graphene nanoribbons (i.e., pyrene linkers via π − π stacking + anti-vB12 antibody fragments via a...
© 2020 Ming YeGraphene is the name given to a monolayer of carbon atoms arranged in a two-dimensiona...
In this study, a label-free multi-resonant graphene-based biosensor with periodic graphene nanoribbo...
Graphene plasmon has attracted extensive interest due to the unprecedented electromagnetic confineme...
Graphene nanostructures, exhibiting tunable and nanoscale-confined mid-infrared (mid-IR) plasmons, p...
Infrared spectroscopy is the technique of choice for chemical identification of biomolecules through...
Infrared spectroscopy is the technique of choice for chemical identification of biomolecules through...
Infrared spectroscopy provides chemical information of biomolecules by detecting their vibrational f...
Infrared spectroscopy provides chemical information of biomolecules by detecting their vibrational f...
We demonstrate a graphene infrared biosensor for chemical-specific label-free protein detection. Gra...
Tunable resonant surface plasmons (SPs) based on graphene nanoribbon are studied to detect nanoscale...
Tunable resonant surface plasmons (SPs) based on graphene nanoribbon are studied to detect nanoscale...
We study the tunable plasmons based on a graphene integrated gold grating structure to sense the vib...
We study the tunable plasmons based on a graphene integrated gold grating structure to sense the vib...
Biomolecule sensing plays an important role in both fundamental biological studies and medical diagn...
Graphene, as an optically transparent material, typically defies any attempt for mid-infrared (mid-I...
© 2020 Ming YeGraphene is the name given to a monolayer of carbon atoms arranged in a two-dimensiona...
In this study, a label-free multi-resonant graphene-based biosensor with periodic graphene nanoribbo...
Graphene plasmon has attracted extensive interest due to the unprecedented electromagnetic confineme...
Graphene nanostructures, exhibiting tunable and nanoscale-confined mid-infrared (mid-IR) plasmons, p...
Infrared spectroscopy is the technique of choice for chemical identification of biomolecules through...
Infrared spectroscopy is the technique of choice for chemical identification of biomolecules through...
Infrared spectroscopy provides chemical information of biomolecules by detecting their vibrational f...
Infrared spectroscopy provides chemical information of biomolecules by detecting their vibrational f...
We demonstrate a graphene infrared biosensor for chemical-specific label-free protein detection. Gra...
Tunable resonant surface plasmons (SPs) based on graphene nanoribbon are studied to detect nanoscale...
Tunable resonant surface plasmons (SPs) based on graphene nanoribbon are studied to detect nanoscale...
We study the tunable plasmons based on a graphene integrated gold grating structure to sense the vib...
We study the tunable plasmons based on a graphene integrated gold grating structure to sense the vib...
Biomolecule sensing plays an important role in both fundamental biological studies and medical diagn...
Graphene, as an optically transparent material, typically defies any attempt for mid-infrared (mid-I...
© 2020 Ming YeGraphene is the name given to a monolayer of carbon atoms arranged in a two-dimensiona...
In this study, a label-free multi-resonant graphene-based biosensor with periodic graphene nanoribbo...
Graphene plasmon has attracted extensive interest due to the unprecedented electromagnetic confineme...