Gallium nitride (GaN) is a compound semiconductor which has advantages to generate new functionalities and applications due to its piezoelectric, pyroelectric, and piezo-resistive properties. Recently, surface acoustic wave (SAW) based acoustic tweezers were developed as an efficient and versatile tool to manipulate nano- and micro-particles aiming for patterning, separating and mixing biological and chemical components. Conventional piezoelectric materials to fabricate SAW devices such as lithium niobate suffers from its low thermal conductivity and incapability of fabricating multiphysical and integrated devices. This work piloted the development of a GaN-based Acoustic Tweezer (GaNAT) and its application in manipulating micro-particles a...
Gallium nitride (GaN) is an excellent choice of semiconductor material due to its optoelectronic, me...
Wide bangap GaN-based heterostructure devices are capable of delivering superior performance under e...
Acoustic tweezers for microparticle non-contact manipulation have attracted attention in the biomedi...
Gallium nitride (GaN) is a compound semiconductor which has advantages to generate new functionaliti...
Gallium nitride (GaN) is a compound semiconductor which has advantages to generate new functionaliti...
Gallium nitride (GaN) is a compound semiconductor which shows advantages in new functionalities and ...
Gallium nitride (GaN) is a compound semiconductor which shows advantages in new functionalities and ...
Gallium nitride (GaN) is an excellent choice of semiconductor material due to its optoelectronic, me...
This work describes a novel architecture to realize high-performance gallium nitride (GaN) bulk acou...
In recent years, semiconductors have aroused great interest in connecting, observing and influencing...
Acoustic wave sensors have numerous applications in physical, chemical and biological sensing. Among...
ISBN: 1-4244-0107-0In this paper, we present the modeling of the mechanical part of a MEMS (microele...
peer reviewedWe present acoustic charge transport in GaN nanowires (GaN NWs). The GaN NWs were grown...
International audienceIn our previous research we already demonstrated micro acoustic devices, such ...
This paper covers various sensors and microsystems based on gallium nitride (GaN) micro mechanical (...
Gallium nitride (GaN) is an excellent choice of semiconductor material due to its optoelectronic, me...
Wide bangap GaN-based heterostructure devices are capable of delivering superior performance under e...
Acoustic tweezers for microparticle non-contact manipulation have attracted attention in the biomedi...
Gallium nitride (GaN) is a compound semiconductor which has advantages to generate new functionaliti...
Gallium nitride (GaN) is a compound semiconductor which has advantages to generate new functionaliti...
Gallium nitride (GaN) is a compound semiconductor which shows advantages in new functionalities and ...
Gallium nitride (GaN) is a compound semiconductor which shows advantages in new functionalities and ...
Gallium nitride (GaN) is an excellent choice of semiconductor material due to its optoelectronic, me...
This work describes a novel architecture to realize high-performance gallium nitride (GaN) bulk acou...
In recent years, semiconductors have aroused great interest in connecting, observing and influencing...
Acoustic wave sensors have numerous applications in physical, chemical and biological sensing. Among...
ISBN: 1-4244-0107-0In this paper, we present the modeling of the mechanical part of a MEMS (microele...
peer reviewedWe present acoustic charge transport in GaN nanowires (GaN NWs). The GaN NWs were grown...
International audienceIn our previous research we already demonstrated micro acoustic devices, such ...
This paper covers various sensors and microsystems based on gallium nitride (GaN) micro mechanical (...
Gallium nitride (GaN) is an excellent choice of semiconductor material due to its optoelectronic, me...
Wide bangap GaN-based heterostructure devices are capable of delivering superior performance under e...
Acoustic tweezers for microparticle non-contact manipulation have attracted attention in the biomedi...