AbstractThe T-sensor is a microfluidic analytical device that operates at low Reynolds numbers to ensure entirely laminar flow. Diffusion of molecules between streams flowing side by side may be observed directly. The pressure-driven velocity profile in the duct-shaped device influences diffusive transport in ways that affect the use of the T-sensor to measure molecular properties. The primary effect is a position-dependent variation in the extent of diffusion that occurs due to the distribution of residence time among different fluid laminae. A more detailed characterization reveals that resultant secondary concentration gradients yield variations in the scaling behavior between diffusive displacement and elapsed time in different regions ...
A transport model for the fluid flow of two immiscible fluids in a microchannel is presented. The fl...
The chemical imaging sensor is a device to visualize the spatial distribution of chemical species ba...
ABSTRACT: Using numerical simulation of diffusion inside diffusive gradients in thin films (DGT) sam...
AbstractQuantitative analysis of molecular diffusion is a necessity for the efficient design of most...
Microfluidic devices could find applications in many areas, such as BioMEMs, miniature fuel cells an...
We developed a procedure to measure diffusion coefficients using microfluidic devices that contribut...
AbstractWe compare models in two and three spatial dimensions for describing the interplay of convec...
A new method for diffusion coefficient measurement applicable to micro-fluidics is pre- sented. The...
Aim of the present work is to investigate the reaction–diffusion process of a two species system und...
A theoretical description of the convection-diffusion process in a homogeneous system enabling estim...
To explore the applicability of a laminar fluid diffusion interface (LFDI) for the controlled feedin...
We are working towards building a CAD tool (NetFlow) for microfluidic systems. To support the develo...
This letter quantifies both experimentally and theoretically the diffusion of low-molecular-weight s...
Numerical simulations are made of thermal field flow fractionation (TFFF) to illustrate and quantify...
Texto completo: acesso restrito. p. 591-602An experimental tool for determination of the near wall t...
A transport model for the fluid flow of two immiscible fluids in a microchannel is presented. The fl...
The chemical imaging sensor is a device to visualize the spatial distribution of chemical species ba...
ABSTRACT: Using numerical simulation of diffusion inside diffusive gradients in thin films (DGT) sam...
AbstractQuantitative analysis of molecular diffusion is a necessity for the efficient design of most...
Microfluidic devices could find applications in many areas, such as BioMEMs, miniature fuel cells an...
We developed a procedure to measure diffusion coefficients using microfluidic devices that contribut...
AbstractWe compare models in two and three spatial dimensions for describing the interplay of convec...
A new method for diffusion coefficient measurement applicable to micro-fluidics is pre- sented. The...
Aim of the present work is to investigate the reaction–diffusion process of a two species system und...
A theoretical description of the convection-diffusion process in a homogeneous system enabling estim...
To explore the applicability of a laminar fluid diffusion interface (LFDI) for the controlled feedin...
We are working towards building a CAD tool (NetFlow) for microfluidic systems. To support the develo...
This letter quantifies both experimentally and theoretically the diffusion of low-molecular-weight s...
Numerical simulations are made of thermal field flow fractionation (TFFF) to illustrate and quantify...
Texto completo: acesso restrito. p. 591-602An experimental tool for determination of the near wall t...
A transport model for the fluid flow of two immiscible fluids in a microchannel is presented. The fl...
The chemical imaging sensor is a device to visualize the spatial distribution of chemical species ba...
ABSTRACT: Using numerical simulation of diffusion inside diffusive gradients in thin films (DGT) sam...