This work describes the construction of a sensitive, stable, and label-free sensor based on a dual-gate field-effect transistor (DG FET), in which uniformly distributed and size-controlled silicon nanowire (SiNW) arrays by nanoimprint lithography act as conductor channels. Compared to previous DG FETs with a planar-type silicon channel layer, the constructed SiNW DG FETs exhibited superior electrical properties including a higher capacitive-coupling ratio of 18.0 and a lower off-state leakage current under high-temperature stress. In addition, while the conventional planar single-gate (SG) FET- and planar DG FET-based pH sensors showed the sensitivities of 56.7 mV/pH and 439.3 mV/pH, respectively, the SiNW DG FET-based pH sensors showed not...
International audienceIn this work, we demonstrate a wafer-scale fabrication of biologically sensiti...
Biosensors based on nano-scale electronic devices have the potential to achieve exquisite sensitivit...
We describe the fabrication, electrical and electrochemical characterization of silicon nanowire arr...
We have fabricated Si nanowire (SiNW) based ion-sensitive field effect transistors (ISFETs) for bios...
The authors present a combined, p- and n-type fabrication process for silicon nanowire field-effect ...
We present a novel approach for large-scale silicon nanowire (SiNW) array fabrication for bioelectro...
Owing to their two-dimensional confinements, silicon nanowires display remarkable optical, magnetic,...
Owing to their two-dimensional confinements, silicon nanowires display remarkable optical, magnetic,...
International audienceIn this work, we demonstrate a wafer-scale fabrication of biologically sensiti...
Owing to their two-dimensional confinements, silicon nanowires display remarkable optical, magnetic,...
In this dissertation, I present methods to improve the sensitivity and specificity of Silicon nanowi...
International audienceIn this work, we demonstrate a wafer-scale fabrication of biologically sensiti...
Biosensors based on nano-scale electronic devices have the potential to achieve exquisite sensitivit...
Silicon nanowire field effect transistor (FET) sensors have demonstrated their ability for rapid and...
International audienceIn this work, we demonstrate a wafer-scale fabrication of biologically sensiti...
International audienceIn this work, we demonstrate a wafer-scale fabrication of biologically sensiti...
Biosensors based on nano-scale electronic devices have the potential to achieve exquisite sensitivit...
We describe the fabrication, electrical and electrochemical characterization of silicon nanowire arr...
We have fabricated Si nanowire (SiNW) based ion-sensitive field effect transistors (ISFETs) for bios...
The authors present a combined, p- and n-type fabrication process for silicon nanowire field-effect ...
We present a novel approach for large-scale silicon nanowire (SiNW) array fabrication for bioelectro...
Owing to their two-dimensional confinements, silicon nanowires display remarkable optical, magnetic,...
Owing to their two-dimensional confinements, silicon nanowires display remarkable optical, magnetic,...
International audienceIn this work, we demonstrate a wafer-scale fabrication of biologically sensiti...
Owing to their two-dimensional confinements, silicon nanowires display remarkable optical, magnetic,...
In this dissertation, I present methods to improve the sensitivity and specificity of Silicon nanowi...
International audienceIn this work, we demonstrate a wafer-scale fabrication of biologically sensiti...
Biosensors based on nano-scale electronic devices have the potential to achieve exquisite sensitivit...
Silicon nanowire field effect transistor (FET) sensors have demonstrated their ability for rapid and...
International audienceIn this work, we demonstrate a wafer-scale fabrication of biologically sensiti...
International audienceIn this work, we demonstrate a wafer-scale fabrication of biologically sensiti...
Biosensors based on nano-scale electronic devices have the potential to achieve exquisite sensitivit...
We describe the fabrication, electrical and electrochemical characterization of silicon nanowire arr...