This research presents a comparative analysis of water-gated thin film transistors based on a copper oxide (CuO) semiconductor in the form of a smooth film and a nanostructured surface. A smooth CuO film was deposited through reactive magnetron sputtering followed by annealing in atmosphere at a temperature of 280 (Formula presented.) C. Copper oxide nanostructures were obtained by hydrothermal synthesis on a preliminary magnetron sputtered 2 nm thick CuO precursor followed by annealing at 280 (Formula presented.) C. An X-ray diffraction (XRD) analysis of the samples revealed the presence of a tenorite (CuO) phase with a predominant orientation of (002). Scanning electron microscopy (SEM) and atomic force microscopy (AFM) studies of the sam...
With great potential in various applications including nano-electronics, photovoltaic, sensor, coppe...
The experimental research carried out and described in this paper aimed to obtain thin films from co...
Flexible and soft conductive thin film using pure Cu and Cu-based oxide nanostructures equally benef...
This work was funded by the Portuguese Science Foundation (FCT-MCTES) through projects PTDC/CTM/7394...
Nanostructures of Cu2O/CuO hydroxide suitable for the electrochemical determination of glucose are o...
The basic necessities to sustain life are – air, water and food. Although the harmful effects due to...
Copper sulphide (CuS) is one of the most important semiconductor materials used in many applications...
Solution sensors are required to detect analytes in liquids with high sensitivity and response speed...
Cuprous oxide, a narrow bandgap p-type semiconductor, has been known as a potential material for app...
In this thesis, cuprous oxide Cu2O was investigated concerning its ability to function as p-type cha...
In the present work, we report a simple experimental strategy for the one-step electrochemical synth...
This study focuses on the integration of copper oxide nanoparticles forming inorganic p-channel thin...
Oxide semiconductors are considered to be one of the forefront candidates for the new generation, hi...
Large-area and aligned copper oxide nanowires have been synthesized by thermal annealing of copper t...
Glucose sensors are widely applied in society as an effective way to diagnose and control diabetes b...
With great potential in various applications including nano-electronics, photovoltaic, sensor, coppe...
The experimental research carried out and described in this paper aimed to obtain thin films from co...
Flexible and soft conductive thin film using pure Cu and Cu-based oxide nanostructures equally benef...
This work was funded by the Portuguese Science Foundation (FCT-MCTES) through projects PTDC/CTM/7394...
Nanostructures of Cu2O/CuO hydroxide suitable for the electrochemical determination of glucose are o...
The basic necessities to sustain life are – air, water and food. Although the harmful effects due to...
Copper sulphide (CuS) is one of the most important semiconductor materials used in many applications...
Solution sensors are required to detect analytes in liquids with high sensitivity and response speed...
Cuprous oxide, a narrow bandgap p-type semiconductor, has been known as a potential material for app...
In this thesis, cuprous oxide Cu2O was investigated concerning its ability to function as p-type cha...
In the present work, we report a simple experimental strategy for the one-step electrochemical synth...
This study focuses on the integration of copper oxide nanoparticles forming inorganic p-channel thin...
Oxide semiconductors are considered to be one of the forefront candidates for the new generation, hi...
Large-area and aligned copper oxide nanowires have been synthesized by thermal annealing of copper t...
Glucose sensors are widely applied in society as an effective way to diagnose and control diabetes b...
With great potential in various applications including nano-electronics, photovoltaic, sensor, coppe...
The experimental research carried out and described in this paper aimed to obtain thin films from co...
Flexible and soft conductive thin film using pure Cu and Cu-based oxide nanostructures equally benef...