Surface acoustic wave (SAW) devices are generally fabricated on rigid substrates that support the propagation of waves efficiently. Although very challenging, the realisation of SAW devices on bendable and flexible substrates can lead to new generation SAW devices for wearable technologies. In this paper, we report flexible acoustic wave devices based on ZnO thin films coated on various substrates consisting of thin layers of metal (e.g., Ni/Cu/Ni) and/or polymer (e.g., polyethylene terephthalate, PET). We comparatively characterise the fabricated SAW devices and demonstrate their sensing applications for temperature and ultraviolet (UV) light. We also investigate their acoustofluidic capabilities on different substrates. Our results show t...
AbstractThis paper reports the development of flexible and transparent (FT) surface acoustic wave (S...
Flexible and transparent (FT) ZnO thin film based surface acoustic wave (SAW) devices using indium t...
Flexible surface acoustic wave (SAW) strain sensors made on ZnO/ultrathin glass (100 μm) substrates ...
Surface acoustic wave (SAW) devices are generally fabricated on rigid substrates that support the pr...
Flexible and bendable devices have become the key elements in the development of next-generation poi...
Flexible and bendable devices have become the key elements in the development of next-generation poi...
Flexible electronics are a very promising technology for various applications. Several types of flex...
Flexible ultraviolet (UV) light sensor was developed using ZnO thin film based surface acoustic wave...
The development of wearable technology increasingly requires bendable sensing devices operating acro...
The development of wearable technology increasingly requires bendable sensing devices operating acro...
Bendable surface acoustic wave (SAW) devices were fabricated using high quality c-axis orientation ...
Bendable surface acoustic wave (SAW) devices were fabricated using high quality c-axis orientation ...
Flexible ZnO thin film on aluminium foil-based SAW devices have been investigated for the first time...
AbstractThis paper reports the development of flexible and transparent (FT) surface acoustic wave (S...
ZnO thin film based flexible SAW devices were fabricated on commercial aluminum foils. The frequency...
AbstractThis paper reports the development of flexible and transparent (FT) surface acoustic wave (S...
Flexible and transparent (FT) ZnO thin film based surface acoustic wave (SAW) devices using indium t...
Flexible surface acoustic wave (SAW) strain sensors made on ZnO/ultrathin glass (100 μm) substrates ...
Surface acoustic wave (SAW) devices are generally fabricated on rigid substrates that support the pr...
Flexible and bendable devices have become the key elements in the development of next-generation poi...
Flexible and bendable devices have become the key elements in the development of next-generation poi...
Flexible electronics are a very promising technology for various applications. Several types of flex...
Flexible ultraviolet (UV) light sensor was developed using ZnO thin film based surface acoustic wave...
The development of wearable technology increasingly requires bendable sensing devices operating acro...
The development of wearable technology increasingly requires bendable sensing devices operating acro...
Bendable surface acoustic wave (SAW) devices were fabricated using high quality c-axis orientation ...
Bendable surface acoustic wave (SAW) devices were fabricated using high quality c-axis orientation ...
Flexible ZnO thin film on aluminium foil-based SAW devices have been investigated for the first time...
AbstractThis paper reports the development of flexible and transparent (FT) surface acoustic wave (S...
ZnO thin film based flexible SAW devices were fabricated on commercial aluminum foils. The frequency...
AbstractThis paper reports the development of flexible and transparent (FT) surface acoustic wave (S...
Flexible and transparent (FT) ZnO thin film based surface acoustic wave (SAW) devices using indium t...
Flexible surface acoustic wave (SAW) strain sensors made on ZnO/ultrathin glass (100 μm) substrates ...