Single-electron transistors would represent an approach to developing less power–consuming microelectronic devices if room temperature operation and industry-compatible fabrication were possible. We present a concept based on stripes of small, self-assembled, colloidal, metal nanoparticles on a back-gate device architecture, which leads to well-defined and well-controllable transistor characteristics. This Coulomb transistor has three main advantages. By using the scalable Langmuir-Blodgett method, we combine high-quality chemically synthesized metal nanoparticles with standard lithography techniques. The resulting transistors show on/off ratios above 90%, reliable and sinusoidal Coulomb oscillations, and room temperature operation. Further...
We report on the fabrication of a dual-gated single-electron transistor (SET) based on a quantum dot...
The single-electron transistor (SET) is one of the best candidates for future nano electronic circui...
International audienceThis work describes self-assemblies of ultra-small platinum nanoparticles, the...
Single-electron transistors (SET) rely for their functionality on extreme control of lithography and...
Single charge electronics offer a way for disruptive technology in nanoelectronics. Coulomb blockade...
International audienceThe single-electron transistor (SET) has tremendous importance in the microele...
International audienceThe single-electron transistor (SET) has tremendous importance in the microele...
Dynamic ionic gradients of counterions in films of metal nanoparticles functionalized with charged o...
International audienceThe single-electron transistor (SET) has tremendous importance in the microele...
[[abstract]]In this study, single-electron transistors and memory cells with Au colloidal islands li...
International audienceTuning Coulomb blockade at room temperature in nanoparticle self-assemblies ca...
The biggest attraction of building nanometer structures is the emergence of novel properties and phe...
The biggest attraction of building nanometer structures is the emergence of novel properties and phe...
The biggest attraction of building nanometer structures is the emergence of novel properties and phe...
Novel single-electron transistors with sidewall depletion gates on a silicon-on-insulator nano-wire ...
We report on the fabrication of a dual-gated single-electron transistor (SET) based on a quantum dot...
The single-electron transistor (SET) is one of the best candidates for future nano electronic circui...
International audienceThis work describes self-assemblies of ultra-small platinum nanoparticles, the...
Single-electron transistors (SET) rely for their functionality on extreme control of lithography and...
Single charge electronics offer a way for disruptive technology in nanoelectronics. Coulomb blockade...
International audienceThe single-electron transistor (SET) has tremendous importance in the microele...
International audienceThe single-electron transistor (SET) has tremendous importance in the microele...
Dynamic ionic gradients of counterions in films of metal nanoparticles functionalized with charged o...
International audienceThe single-electron transistor (SET) has tremendous importance in the microele...
[[abstract]]In this study, single-electron transistors and memory cells with Au colloidal islands li...
International audienceTuning Coulomb blockade at room temperature in nanoparticle self-assemblies ca...
The biggest attraction of building nanometer structures is the emergence of novel properties and phe...
The biggest attraction of building nanometer structures is the emergence of novel properties and phe...
The biggest attraction of building nanometer structures is the emergence of novel properties and phe...
Novel single-electron transistors with sidewall depletion gates on a silicon-on-insulator nano-wire ...
We report on the fabrication of a dual-gated single-electron transistor (SET) based on a quantum dot...
The single-electron transistor (SET) is one of the best candidates for future nano electronic circui...
International audienceThis work describes self-assemblies of ultra-small platinum nanoparticles, the...