Low-temperature electronics operating in below zero temperatures or even below the lower limit of the common −65 to 125 °C temperature range are essential in medical diagnostics, in space exploration and aviation, in processing and storage of food and mainly in scientific research, like superconducting materials engineering and their applications—superconducting magnets, superconducting energy storage, and magnetic levitation systems. Such electronic devices demand special approach to the materials used in passive elements and sensors. The main goal of this work was the implementation of a fully transparent, flexible cryogenic temperature sensor with graphene structures as sensing element. Electrodes were made of transparent ITO (Indium Tin...
This work presents a complete temperature sensing solution based on a conformal laser-reduced graphe...
Four different graphene-based temperature sensors were prepared, and their temperature and humidity ...
Four different graphene-based temperature sensors were prepared, and their temperature and humidity ...
Low-temperature electronics operating in below zero temperatures or even below the lower limit of th...
Graphene is typically grown using thermal chemical vapor deposition (CVD) on metallic substrates suc...
The thermal responsivity of monolayer epitaxial graphene grown on the Si-face surface of semi-insula...
Flexible electronics, which can be distributed on any surface we need, are highly demanded in the de...
Body temperature is an essential physiological index reflecting human health. Accurate measurements ...
This is the final version. Available on open access from the American Chemical Society via the DOI i...
Graphene membranes act as temperature sensors in nanoelectromechanical devices due to their excellen...
A simple, cost-effective approach to realize a sensitive temperature sensor based on IR laser reduce...
In austere environments, for example, in outer space, on surfaces of extra-terrestrial bodies (Moon...
The paper presents a comprehensive review of the use of graphene to develop wearable temperature sen...
Development of electronic devices which are capable of operating in harsh environments is a key enab...
Micro-fabricated single-layer graphenes (SLGs) on a silicon dioxide (SiO2)/Si substrate, a silicon n...
This work presents a complete temperature sensing solution based on a conformal laser-reduced graphe...
Four different graphene-based temperature sensors were prepared, and their temperature and humidity ...
Four different graphene-based temperature sensors were prepared, and their temperature and humidity ...
Low-temperature electronics operating in below zero temperatures or even below the lower limit of th...
Graphene is typically grown using thermal chemical vapor deposition (CVD) on metallic substrates suc...
The thermal responsivity of monolayer epitaxial graphene grown on the Si-face surface of semi-insula...
Flexible electronics, which can be distributed on any surface we need, are highly demanded in the de...
Body temperature is an essential physiological index reflecting human health. Accurate measurements ...
This is the final version. Available on open access from the American Chemical Society via the DOI i...
Graphene membranes act as temperature sensors in nanoelectromechanical devices due to their excellen...
A simple, cost-effective approach to realize a sensitive temperature sensor based on IR laser reduce...
In austere environments, for example, in outer space, on surfaces of extra-terrestrial bodies (Moon...
The paper presents a comprehensive review of the use of graphene to develop wearable temperature sen...
Development of electronic devices which are capable of operating in harsh environments is a key enab...
Micro-fabricated single-layer graphenes (SLGs) on a silicon dioxide (SiO2)/Si substrate, a silicon n...
This work presents a complete temperature sensing solution based on a conformal laser-reduced graphe...
Four different graphene-based temperature sensors were prepared, and their temperature and humidity ...
Four different graphene-based temperature sensors were prepared, and their temperature and humidity ...