In this study, a simple method for synthesizing graphene layer directly on a quartz crystal microbalance (QCM) using a laser was developed. This laser-induced graphene (LIG) was used for sensing surface to simultaneously measure changes in the adsorbed mass, film stiffness, and electrical resistance during water adsorption. The developed LIG-QCM is convenient because its fabrication process is free of any tedious masking and vacuuming steps. A thin layer of polyimide (PI) film was spin-coated on one side of a quartz crystal microresonator, and interdigitated electrodes (IDE) were patterned on the PI surface using a laser engraver. The adsorption of water molecules on the sensing surface induced changes in mass, stiffness, and electrical con...
This paper investigated the effect of electrode materials on the performance of quartz crystal micro...
The application of graphene oxide (GO)-based membranes combined with a quartz crystal microbalance (...
Graphene is known to be highly conductive and sensitive to adsorbed molecules thus make it suitable ...
We have synthesized a laser induced graphene (LIG) layer directly on a quartz crystal microresonator...
Humidity is a vital physical quantity which is extremely important to production quality control, re...
Laser scribing, by far proposed as a method for efficiently transforming graphene oxide into reduced...
The authors report quartz crystal microbalance (QCM) integrated with hexagonal boron nitride-graphen...
Humidity sensing is fundamental in some applications, as humidity can be a strong interferent in the...
This thesis is focused on potential use of graphene in relative humidity sensing. The effect of wate...
In this Letter, we experimentally determined the mass density of graphene using quartz crystal micro...
Graphene has numerous potential applications in ultrathin electronics. There an electrode should fun...
Humidity sensing is important to a variety of technologies and industries, ranging from environmenta...
This paper reports a fast and highly sensitive all-graphene humidity sensor working in a novel alter...
In this study, the screen-printed flexible humidity sensor and supercapacitor structures from a susp...
Ultra-thin, flexible, stretchable, and non-toxic sensors attract more and more attention as the need...
This paper investigated the effect of electrode materials on the performance of quartz crystal micro...
The application of graphene oxide (GO)-based membranes combined with a quartz crystal microbalance (...
Graphene is known to be highly conductive and sensitive to adsorbed molecules thus make it suitable ...
We have synthesized a laser induced graphene (LIG) layer directly on a quartz crystal microresonator...
Humidity is a vital physical quantity which is extremely important to production quality control, re...
Laser scribing, by far proposed as a method for efficiently transforming graphene oxide into reduced...
The authors report quartz crystal microbalance (QCM) integrated with hexagonal boron nitride-graphen...
Humidity sensing is fundamental in some applications, as humidity can be a strong interferent in the...
This thesis is focused on potential use of graphene in relative humidity sensing. The effect of wate...
In this Letter, we experimentally determined the mass density of graphene using quartz crystal micro...
Graphene has numerous potential applications in ultrathin electronics. There an electrode should fun...
Humidity sensing is important to a variety of technologies and industries, ranging from environmenta...
This paper reports a fast and highly sensitive all-graphene humidity sensor working in a novel alter...
In this study, the screen-printed flexible humidity sensor and supercapacitor structures from a susp...
Ultra-thin, flexible, stretchable, and non-toxic sensors attract more and more attention as the need...
This paper investigated the effect of electrode materials on the performance of quartz crystal micro...
The application of graphene oxide (GO)-based membranes combined with a quartz crystal microbalance (...
Graphene is known to be highly conductive and sensitive to adsorbed molecules thus make it suitable ...