In recent years, numerous aptamers have been physisorbed on graphene oxide (GO) to develop fluorescence resonance energy transfer-based aptasensors using the fluorescence quenching property of GO. However, physisorbed aptasensors show poor signal reversibility and reproducibility as well as nonspecific probe displacement, and thereby are not suitable for many analytical applications. To overcome these problems when working with complex biological samples, we developed a facile and robust covalent surface functionalization technique for GO-based fluorescent aptasensors using a well-studied adenosine triphosphate binding aptamer (ABA). In the scheme, GO is first modified with amino-silane, and further with glutaraldehyde to create available c...
International audienceThe controlled covalent functionalization of the graphene channel of a field e...
We report here a graphene oxide (GO)-based fluorescent aptasensor for adenosine detection by employi...
A new type of electrochemical aptasensor was reported here for highly sensitive detection of adenosi...
In recent years, numerous aptamers have been physisorbed on graphene oxide (GO) to develop fluoresce...
Aptamers are ssDNA/RNA that can bind to specific targets with high affinity and selectivity. Graphen...
Recently, a great variety of aggregation-induced emission (AIE)-active molecules has been utilized t...
Fluorescent aptamer probes physisorbed on graphene oxide (GO) have recently emerged as a useful sens...
Fluorescence resonance energy transfer, one of the most powerful phenomena for elucidating molecular...
Fluorescence resonance energy transfer, one of the most powerful phenomena for elucidating molecular...
Abstract A convenient, low-cost, and highly sensitive fluorescent aptasensor for detection of leukem...
Aptamers have been used as molecular recognition elements for sensor development in combination with...
A highly tunable layer-by-layer (LbL)-assembled graphene oxide (GO) array has been devised for high-...
This is an open access article published under an ACS AuthorChoice License. See Standard ACS AuthorC...
A specific graphene field-effect transistor (GFET)-based aptasensor was developed for the detection ...
The preparation of biorecognition layers on the surface of a sensing platform is a very crucial step...
International audienceThe controlled covalent functionalization of the graphene channel of a field e...
We report here a graphene oxide (GO)-based fluorescent aptasensor for adenosine detection by employi...
A new type of electrochemical aptasensor was reported here for highly sensitive detection of adenosi...
In recent years, numerous aptamers have been physisorbed on graphene oxide (GO) to develop fluoresce...
Aptamers are ssDNA/RNA that can bind to specific targets with high affinity and selectivity. Graphen...
Recently, a great variety of aggregation-induced emission (AIE)-active molecules has been utilized t...
Fluorescent aptamer probes physisorbed on graphene oxide (GO) have recently emerged as a useful sens...
Fluorescence resonance energy transfer, one of the most powerful phenomena for elucidating molecular...
Fluorescence resonance energy transfer, one of the most powerful phenomena for elucidating molecular...
Abstract A convenient, low-cost, and highly sensitive fluorescent aptasensor for detection of leukem...
Aptamers have been used as molecular recognition elements for sensor development in combination with...
A highly tunable layer-by-layer (LbL)-assembled graphene oxide (GO) array has been devised for high-...
This is an open access article published under an ACS AuthorChoice License. See Standard ACS AuthorC...
A specific graphene field-effect transistor (GFET)-based aptasensor was developed for the detection ...
The preparation of biorecognition layers on the surface of a sensing platform is a very crucial step...
International audienceThe controlled covalent functionalization of the graphene channel of a field e...
We report here a graphene oxide (GO)-based fluorescent aptasensor for adenosine detection by employi...
A new type of electrochemical aptasensor was reported here for highly sensitive detection of adenosi...