Computational Modelling — Large-area synthesis of nanoscopic catalyst-decorated conductive MOF film using microfluidic-based solution shearing

Measurement evidence

Computational Modelling

Large-area synthesis of nanoscopic catalyst-decorated conductive MOF film using microfluidic-based solution shearing · Kim J.-O., Koo W.-T., Kim H. et al. · Nature Communications · 2021 · 4294

1 measurement group · 2 results

Reported values remain attached to the sample, method, conditions, extraction quality and source location that produced them.

COMSOL Multiphysics v5.5 FEM

MiCS serpentine-channel CFD model · Model

Steady-state laminar flow and mass-transfer model of the MiCS serpentine blade; DMSO density 1.1 g/mL and viscosity 2 mPa s

Geometry
microfluidic blade channel
Context
process model
Measurement source
6 · Methods · Fig. 2e; Supplementary Fig. 6
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Solution residence time in microfluidic channel at optimised flow200 msText
Exact Reported
3 · Results · Supplementary Fig. 6
Flow-rate threshold for full mixing in 15 cyclesflow rate exceeded 220 uL/min; 15 cycles sufficient to fully mixText
Approximate
3 · Results · Fig. 2e; Supplementary Tables 2-5