The interfacing of biomaterials to electronic devices is one of the most challenging research fields that has relevance to both fundamental studies and to the development of highly performing biosensors. Organic Electrochemical transistors, using an aqueous electrolyte solution, offer a unique set of advantages in the development of biosensor devices. In this paper, we report highly selective organic electrochemical transistor based immune-sensor by modifying the gate electrode with polyclonal anti-human Immunoglobulin G (anti-IgG) antibodies. Extremely low detection of Immunoglobulin G (IgG) at the femto-molar detection limit has been achieved
In this contribution, we propose a label-free immunosensor, based on a novel type of electrolyte-gat...
In this contribution, we propose a label-free immunosensor, based on a novel type of electrolyte-gat...
Cytokines are small proteins that play fundamental roles in inflammatory processes in the human body...
The interfacing of biomaterials to electronic devices is one of the most challenging research fields...
The interfacing of biomaterials to electronic devices is one of the most challenging research fields...
A novel biosensor for immunoglobulin G (IgG) detection based on an extended-gate type organic field...
The detection of protein biomarkers is of great importance in the early diagnosis of severe patholog...
The detection of protein biomarkers is of great importance in the early diagnosis of severe patholog...
The detection of protein biomarkers is of great importance in the early diagnosis of severe patholog...
Herein, we report on the fabrication of an extended-gated organic field-effect transistor (OFET)-bas...
Herein, we report on the fabrication of an extended-gated organic field-effect transistor (OFET)-bas...
The interfacing of biomaterials to electronic devices is one of the most challenging research fields...
The interfacing of biomaterials to electronic devices is one of the most challenging research fields...
The interfacing of biomaterials to electronic devices is one of the most challenging research fields...
In this contribution, we propose a label-free immunosensor, based on a novel type of electrolyte-gat...
In this contribution, we propose a label-free immunosensor, based on a novel type of electrolyte-gat...
In this contribution, we propose a label-free immunosensor, based on a novel type of electrolyte-gat...
Cytokines are small proteins that play fundamental roles in inflammatory processes in the human body...
The interfacing of biomaterials to electronic devices is one of the most challenging research fields...
The interfacing of biomaterials to electronic devices is one of the most challenging research fields...
A novel biosensor for immunoglobulin G (IgG) detection based on an extended-gate type organic field...
The detection of protein biomarkers is of great importance in the early diagnosis of severe patholog...
The detection of protein biomarkers is of great importance in the early diagnosis of severe patholog...
The detection of protein biomarkers is of great importance in the early diagnosis of severe patholog...
Herein, we report on the fabrication of an extended-gated organic field-effect transistor (OFET)-bas...
Herein, we report on the fabrication of an extended-gated organic field-effect transistor (OFET)-bas...
The interfacing of biomaterials to electronic devices is one of the most challenging research fields...
The interfacing of biomaterials to electronic devices is one of the most challenging research fields...
The interfacing of biomaterials to electronic devices is one of the most challenging research fields...
In this contribution, we propose a label-free immunosensor, based on a novel type of electrolyte-gat...
In this contribution, we propose a label-free immunosensor, based on a novel type of electrolyte-gat...
In this contribution, we propose a label-free immunosensor, based on a novel type of electrolyte-gat...
Cytokines are small proteins that play fundamental roles in inflammatory processes in the human body...