Surface acoustic wave device with c-axis-oriented aluminum nitride (AlN) piezoelectric thin films on polymer substrates can be potentially used for development of flexible sensors, flexible microfluidic applications, microsystems, and lab-on-chip systems. In this work, the AlN films have been successfully deposited on polymer substrates using the DC reactive magnetron-sputtering method at room temperature, and the XRD, SEM, and AFM methods reveal that low deposition pressure is beneficial to the highly c-axis-oriented AlN film on polymer substrates. Studies toward the development of AlN thin film-based flexible surface acoustic wave devices on the polymer substrates are initiated and the experimental and simulated results demonstrate the de...
[[abstract]]Y-128° LiNbO3 is used extensively for the development of surface acoustic wave (SAW) dev...
Recently, the enormous growth in personal communications systems (PCS), satellite communication and ...
Generation of surface acoustic waves (SAW) on polycrystalline piezoelectric materials is gaining pop...
Aluminum Nitride (AlN) is explored as a thin film material for piezoelectric MEMS applications. A pu...
Aluminum Nitride (AlN) is explored as a thin film material for piezoelectric MEMS applications. A pu...
The development of wearable technology increasingly requires bendable sensing devices operating acro...
The development of wearable technology increasingly requires bendable sensing devices operating acro...
During the last decades, sensors technology has been increasingly developed. The widespread use of s...
[[abstract]]Y-128� LiNbO3 is used extensively for the development of surface acoustic wave (SAW) dev...
This work presents a promising ultrasound wearable technology based on a piezoelectric transducer, r...
Aluminum nitride (AlN) piezoelectric thin films with c-axis crystal orientation on polymer substrate...
Aluminum nitride (AlN) piezoelectric thin films with c-axis crystal orientation on polymer substrate...
Aluminum nitride (AlN) piezoelectric thin films with c-axis crystal orientation on polymer substrate...
Reactively sputtered piezoelectric aluminum nitride (AlN) films for flexural plate wave (FPW) electr...
Aluminum nitride films deposited by reactive RF magnetron sputtering onto silicon substrates for sur...
[[abstract]]Y-128° LiNbO3 is used extensively for the development of surface acoustic wave (SAW) dev...
Recently, the enormous growth in personal communications systems (PCS), satellite communication and ...
Generation of surface acoustic waves (SAW) on polycrystalline piezoelectric materials is gaining pop...
Aluminum Nitride (AlN) is explored as a thin film material for piezoelectric MEMS applications. A pu...
Aluminum Nitride (AlN) is explored as a thin film material for piezoelectric MEMS applications. A pu...
The development of wearable technology increasingly requires bendable sensing devices operating acro...
The development of wearable technology increasingly requires bendable sensing devices operating acro...
During the last decades, sensors technology has been increasingly developed. The widespread use of s...
[[abstract]]Y-128� LiNbO3 is used extensively for the development of surface acoustic wave (SAW) dev...
This work presents a promising ultrasound wearable technology based on a piezoelectric transducer, r...
Aluminum nitride (AlN) piezoelectric thin films with c-axis crystal orientation on polymer substrate...
Aluminum nitride (AlN) piezoelectric thin films with c-axis crystal orientation on polymer substrate...
Aluminum nitride (AlN) piezoelectric thin films with c-axis crystal orientation on polymer substrate...
Reactively sputtered piezoelectric aluminum nitride (AlN) films for flexural plate wave (FPW) electr...
Aluminum nitride films deposited by reactive RF magnetron sputtering onto silicon substrates for sur...
[[abstract]]Y-128° LiNbO3 is used extensively for the development of surface acoustic wave (SAW) dev...
Recently, the enormous growth in personal communications systems (PCS), satellite communication and ...
Generation of surface acoustic waves (SAW) on polycrystalline piezoelectric materials is gaining pop...