We demonstrate a polymer resonator microfluidic biosensor that overcomes the complex manufacturing procedures required to fabricate traditional devices. In this new format, we show that a gapless light coupling photonic configuration, fabricated in SU8 polymer, can achieve high sensitivity, label-free chemical sensing in solution and high sensitivity biological sensing, at visible wavelengths
A monolithic active optical resonator biosensor is fabricated for label-free sensing. The all-polyme...
Currently, biosensing devices operate in the communication wavelength band between λ = 1300 – 1550 n...
Currently, biosensing devices operate in the communication wavelength band between λ = 1300 – 1550 n...
We demonstrate a polymer resonator microfluidic biosensor that overcomes the complex manufacturing p...
In this work, we demonstrate the potential of fabricated dual microring resonator polymer waveguide ...
In this work, we demonstrate the potential of fabricated dual microring resonator polymer waveguide ...
With optical biosensors based on planar optical waveguides, much progress was achieved in the last d...
Planar integrated optical biosensors are becoming more and more important as they facilitate label-f...
Planar integrated optical biosensors are becoming more and more important as they facilitate label-f...
With optical biosensors based on planar optical waveguides, much progress was achieved in the last d...
Optically resonant devices are promising as label-free biomolecular sensors due to their ability to ...
In this paper, SU8 polymer was used to fabricate a waveguide and microring resonator for optical bio...
Planar integrated optical biosensors are becoming more and more important as they facilitate label-f...
Planar integrated optical biosensors are becoming more and more important as they facilitate label-f...
Planar integrated optical biosensors are becoming more and more important as they facilitate label-f...
A monolithic active optical resonator biosensor is fabricated for label-free sensing. The all-polyme...
Currently, biosensing devices operate in the communication wavelength band between λ = 1300 – 1550 n...
Currently, biosensing devices operate in the communication wavelength band between λ = 1300 – 1550 n...
We demonstrate a polymer resonator microfluidic biosensor that overcomes the complex manufacturing p...
In this work, we demonstrate the potential of fabricated dual microring resonator polymer waveguide ...
In this work, we demonstrate the potential of fabricated dual microring resonator polymer waveguide ...
With optical biosensors based on planar optical waveguides, much progress was achieved in the last d...
Planar integrated optical biosensors are becoming more and more important as they facilitate label-f...
Planar integrated optical biosensors are becoming more and more important as they facilitate label-f...
With optical biosensors based on planar optical waveguides, much progress was achieved in the last d...
Optically resonant devices are promising as label-free biomolecular sensors due to their ability to ...
In this paper, SU8 polymer was used to fabricate a waveguide and microring resonator for optical bio...
Planar integrated optical biosensors are becoming more and more important as they facilitate label-f...
Planar integrated optical biosensors are becoming more and more important as they facilitate label-f...
Planar integrated optical biosensors are becoming more and more important as they facilitate label-f...
A monolithic active optical resonator biosensor is fabricated for label-free sensing. The all-polyme...
Currently, biosensing devices operate in the communication wavelength band between λ = 1300 – 1550 n...
Currently, biosensing devices operate in the communication wavelength band between λ = 1300 – 1550 n...