The negative epoxy-based SU-8 photoresist has a wide variety of applications within the semiconductor industry, photonics and lab-on-a-chip devices, and it is emerging as an alternative to silicon-based devices for sensing purposes. In the present work, biotinylation of the SU-8 polymer surface promoted by light is reported. As a result, a novel, efective, and low-cost material, focusing on the immobilization of bioreceptors and consequent biosensing, is developed. This material allows the spatial discrimination depending on the irradiation of desired areas. The most salient feature is that the photobiotin may be directly incorporated into the SU-8 curing process, consequently reducing time and cost. The potential use of this sub...
SU-8 is an epoxy-novolac resin and a well-established negative photoresist for microfabrication and ...
The development of label-free biosensors with high sensitivity and specificity is of significant int...
The present project investigated and proved the concept of developing a novel BioMEMS glucose micro...
SU-8 is a popular epoxy based negative photoresist developed by IBM. It has been widely used as stru...
SU-8 is an epoxy-based, negative-tone photoresist that has been extensively utilized to fabricate my...
SU-8, an epoxy based negative photoresist polymer has found wide range of applications in the field ...
This paper presents a simple process of bio-functionalizing the surface of UV crosslinked SU-8 surfa...
n this Ph. D. Dissertation research on lithographic methods for the fabrication of micrometric and n...
SU-8, an epoxy based negative photoresist, has emerged as a structural material for microfabricated ...
[EN] A methodology to modify Blu-ray disk (BD) surfaces by spin-coating an SU-8 epoxy photoresist is...
The negative photoresist SU-8 has found widespread use as a material in the fabrication of microelec...
Cost-effective SU-8 micro-structures on a silicon substrate were developed using 248 nm excimer lase...
Biosensors which are based on BioMEMS combine developments in micro-nanotechnology and biological re...
SU-8 has been primarily used for structural elements and microfludics components in MEMS. Microsyste...
SU-8 epoxy-based negative photoresist has been extensively employed as a structural material for fab...
SU-8 is an epoxy-novolac resin and a well-established negative photoresist for microfabrication and ...
The development of label-free biosensors with high sensitivity and specificity is of significant int...
The present project investigated and proved the concept of developing a novel BioMEMS glucose micro...
SU-8 is a popular epoxy based negative photoresist developed by IBM. It has been widely used as stru...
SU-8 is an epoxy-based, negative-tone photoresist that has been extensively utilized to fabricate my...
SU-8, an epoxy based negative photoresist polymer has found wide range of applications in the field ...
This paper presents a simple process of bio-functionalizing the surface of UV crosslinked SU-8 surfa...
n this Ph. D. Dissertation research on lithographic methods for the fabrication of micrometric and n...
SU-8, an epoxy based negative photoresist, has emerged as a structural material for microfabricated ...
[EN] A methodology to modify Blu-ray disk (BD) surfaces by spin-coating an SU-8 epoxy photoresist is...
The negative photoresist SU-8 has found widespread use as a material in the fabrication of microelec...
Cost-effective SU-8 micro-structures on a silicon substrate were developed using 248 nm excimer lase...
Biosensors which are based on BioMEMS combine developments in micro-nanotechnology and biological re...
SU-8 has been primarily used for structural elements and microfludics components in MEMS. Microsyste...
SU-8 epoxy-based negative photoresist has been extensively employed as a structural material for fab...
SU-8 is an epoxy-novolac resin and a well-established negative photoresist for microfabrication and ...
The development of label-free biosensors with high sensitivity and specificity is of significant int...
The present project investigated and proved the concept of developing a novel BioMEMS glucose micro...