The possibilities and limitations of a direct electrical detection of charged macromolecules using a field-effect-based sensor platform is evaluated, mainly focusing on capacitive EIS (electrolyte-insulator-semiconductor) devices. The experimentally obtained results on the detection of DNA immobilisation and hybridisation as well as the monitoring of layer-by-layer adsorbed charged polyelectrolyte (PE) multilayers have been discussed by using two basic possible mechanisms of signal generation, namely the intrinsic charge of the macromolecules and the charge redistribution within the intermolecular spaces or in the multilayer. The effects of the layer-by-layer adsorption conditions (unbuffered and pH buffer solution), and the number and pola...
Field-effect capacitive EIS (electrolyte-insulator-semiconductor) sensors have been utilised for a l...
www.rsc.org/nanoscale Gating capacitive field-effect sensors by the charge of nanoparticle/molecule ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Field-effect-based capacitive electrolyte-insulator-semiconductor (EIS) sensors have been utilised f...
Capacitive EIS (electrolyte-insulator-semiconductor) sensors and ISFETs (ion-sensitive field-effect ...
Field-effect EIS (electrolyte-insulator-semiconductor) sensors modified with a positively charged we...
AbstractField-effect capacitive electrolyte-insulator-semiconductor (EIS) sensors functionalised wit...
AbstractCapacitive field-effect electrolyte-insulator-semiconductor sensors consisting of an Al-p-Si...
Miniaturized setup, compatibility with advanced micro- and nanotechnologies, and ability to detect b...
The possibility of a label-free electrical detection of layer-by-layer adsorbed polyelectrolyte (PE)...
The possibility of a label-free electrical detection of layer-by-layer adsorbed polyelectrolyte (PE)...
The possibility of a label-free electrical detection of layer-by-layer adsorbed polyelectrolyte (PE)...
The possibility of a label-free electrical detection of layer-by-layer adsorbed polyelectrolyte (PE)...
The possibility of a label-free electrical detection of layer-by-layer adsorbed polyelectrolyte (PE)...
The semiconductor field-effect platform represents a powerful tool for detecting the adsorption and ...
Field-effect capacitive EIS (electrolyte-insulator-semiconductor) sensors have been utilised for a l...
www.rsc.org/nanoscale Gating capacitive field-effect sensors by the charge of nanoparticle/molecule ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Field-effect-based capacitive electrolyte-insulator-semiconductor (EIS) sensors have been utilised f...
Capacitive EIS (electrolyte-insulator-semiconductor) sensors and ISFETs (ion-sensitive field-effect ...
Field-effect EIS (electrolyte-insulator-semiconductor) sensors modified with a positively charged we...
AbstractField-effect capacitive electrolyte-insulator-semiconductor (EIS) sensors functionalised wit...
AbstractCapacitive field-effect electrolyte-insulator-semiconductor sensors consisting of an Al-p-Si...
Miniaturized setup, compatibility with advanced micro- and nanotechnologies, and ability to detect b...
The possibility of a label-free electrical detection of layer-by-layer adsorbed polyelectrolyte (PE)...
The possibility of a label-free electrical detection of layer-by-layer adsorbed polyelectrolyte (PE)...
The possibility of a label-free electrical detection of layer-by-layer adsorbed polyelectrolyte (PE)...
The possibility of a label-free electrical detection of layer-by-layer adsorbed polyelectrolyte (PE)...
The possibility of a label-free electrical detection of layer-by-layer adsorbed polyelectrolyte (PE)...
The semiconductor field-effect platform represents a powerful tool for detecting the adsorption and ...
Field-effect capacitive EIS (electrolyte-insulator-semiconductor) sensors have been utilised for a l...
www.rsc.org/nanoscale Gating capacitive field-effect sensors by the charge of nanoparticle/molecule ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...