Chip based particle sensing using 3D capillary fill microfluidics integrated with monolithically integrated lasers and photodetectors is used to demonstrate the feasibility of true chip scale photonic measurements of fluids. The approach is scalable and manufactured using industry standard compound semiconductor fabrication tools. The need for fluid speed regulation via external pumps is removed by measuring local particle velocity at the point of interrogation and particle position within the fluid flow is derived from multiple time resolved forward scattered light signals. Particle size discrimination of 10 and 15 μm polystyrene microbeads is used as an example
We have shown the design and fabrication of a microfluidic flow cytometer. The microfluidic flow cyt...
Micro-electro-mechanical systems (MEMS) and micro-fluidic technologies offer a potential route towa...
AbstractA compact, robust and portable system for optical particle detection in liquid suspensions, ...
Chip based particle sensing using 3D capillary fill microfluidics integrated with monolithically int...
The development of a novel photonic integrated platform with three dimensional (3D) capillary flow a...
Integration and miniaturisation in electronics has undoubtedly revolutionised the modern world. In ...
This work proposes a multi-objective polydimethylsiloxane (PDMS) micro-optofluidic (MoF) device suit...
This paper was presented at the 4th Micro and Nano Flows Conference (MNF2014), which was held at Uni...
While the microfluidic device itself may be small, often the equipment required to control fluidics ...
The integration of particle counters within lab-on-chip (LOC) microfluidic devices creates a range o...
My thesis research has focused on means of integrating optical systems into microfluidic chips, spec...
We present an optofluidic chip with integrated polymer interferometers for measuring both the microf...
Microfluidics represents the science and technology that processes or manipulates a small amount of ...
This paper examines the recent emergence of miniaturized optical fiber based sensing and actuating d...
We show the capabilities of the applications of microlithography techniques optimized for the microe...
We have shown the design and fabrication of a microfluidic flow cytometer. The microfluidic flow cyt...
Micro-electro-mechanical systems (MEMS) and micro-fluidic technologies offer a potential route towa...
AbstractA compact, robust and portable system for optical particle detection in liquid suspensions, ...
Chip based particle sensing using 3D capillary fill microfluidics integrated with monolithically int...
The development of a novel photonic integrated platform with three dimensional (3D) capillary flow a...
Integration and miniaturisation in electronics has undoubtedly revolutionised the modern world. In ...
This work proposes a multi-objective polydimethylsiloxane (PDMS) micro-optofluidic (MoF) device suit...
This paper was presented at the 4th Micro and Nano Flows Conference (MNF2014), which was held at Uni...
While the microfluidic device itself may be small, often the equipment required to control fluidics ...
The integration of particle counters within lab-on-chip (LOC) microfluidic devices creates a range o...
My thesis research has focused on means of integrating optical systems into microfluidic chips, spec...
We present an optofluidic chip with integrated polymer interferometers for measuring both the microf...
Microfluidics represents the science and technology that processes or manipulates a small amount of ...
This paper examines the recent emergence of miniaturized optical fiber based sensing and actuating d...
We show the capabilities of the applications of microlithography techniques optimized for the microe...
We have shown the design and fabrication of a microfluidic flow cytometer. The microfluidic flow cyt...
Micro-electro-mechanical systems (MEMS) and micro-fluidic technologies offer a potential route towa...
AbstractA compact, robust and portable system for optical particle detection in liquid suspensions, ...