In this work, detection of live cell biological activity has been confirmed for label-free AlGaN/GaN based biosensors. Live cells were seeded in solution onto the exposed gate region of packaged AlGaN/GaN field effect transistor (FET) devices and subsequently subjected to various chemical changes in the solution. Cell depolarisation with KCl was used to induce biological signals. Significant optimisation of experimental parameters was performed, including environmental conditions and cell seeding concentration. Selectivity towards biological activity was improved by buffering with 30 mM 4-(2-hydroxyethyl)-1-piperazineethanesulfonic acid (HEPES). Reproducible calcium concentration-dependent responses were observed with saturation at the norm...
The aim of this research work is to analyze the surface characteristics of an improved AlGaN/GaN HEM...
AlGaN/GaN high electron mobility transistor (HEMT) was successfully fabricated by complementary meta...
AbstractThis work presents a novel, label-free and highly sensitive detection method based on the im...
Recently, the ability to create bio-semiconductor hybrid devices has gained much interest for cell a...
With the aim of developing a highly sensitive, mass producible biosensor, we have investigated the g...
Among the various techniques of biosensing, field effect transistor (FET) based detection of biologi...
Rapid and accurate molecular analysis of biological samples is essential for disease diagnosis and m...
AlGaN/GaN pH sensitive devices were functionalized and passivated for the use as selective biosensor...
Novel nanosensors based on aluminium gallium nitrides (AlGaN/GaN) high electron mobility transistors...
In recent years, semiconductors have aroused great interest in connecting, observing and influencing...
AlGaN/GaN pH sensitive devices were functionalized and passivated for the use as selective bio-senso...
In this research, we have realized a rapid extracellular vesicle (EV) quantification methodology usi...
In this paper, we propose an AlGaN/GaN high electron mobility transistor (HEMT)-based biosensor for ...
Gateless AlGaN/GaN high electron mobility transistor(HEMT) structures exhibit large changes in sourc...
There is an increasing interest in the integration of hybrid bio-semiconductor systems for the non-i...
The aim of this research work is to analyze the surface characteristics of an improved AlGaN/GaN HEM...
AlGaN/GaN high electron mobility transistor (HEMT) was successfully fabricated by complementary meta...
AbstractThis work presents a novel, label-free and highly sensitive detection method based on the im...
Recently, the ability to create bio-semiconductor hybrid devices has gained much interest for cell a...
With the aim of developing a highly sensitive, mass producible biosensor, we have investigated the g...
Among the various techniques of biosensing, field effect transistor (FET) based detection of biologi...
Rapid and accurate molecular analysis of biological samples is essential for disease diagnosis and m...
AlGaN/GaN pH sensitive devices were functionalized and passivated for the use as selective biosensor...
Novel nanosensors based on aluminium gallium nitrides (AlGaN/GaN) high electron mobility transistors...
In recent years, semiconductors have aroused great interest in connecting, observing and influencing...
AlGaN/GaN pH sensitive devices were functionalized and passivated for the use as selective bio-senso...
In this research, we have realized a rapid extracellular vesicle (EV) quantification methodology usi...
In this paper, we propose an AlGaN/GaN high electron mobility transistor (HEMT)-based biosensor for ...
Gateless AlGaN/GaN high electron mobility transistor(HEMT) structures exhibit large changes in sourc...
There is an increasing interest in the integration of hybrid bio-semiconductor systems for the non-i...
The aim of this research work is to analyze the surface characteristics of an improved AlGaN/GaN HEM...
AlGaN/GaN high electron mobility transistor (HEMT) was successfully fabricated by complementary meta...
AbstractThis work presents a novel, label-free and highly sensitive detection method based on the im...