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What is “tunable” and why?
Nanoparticle suspensions are complex systems. Characterising them fully
requires an optimised setup, which involves tuning the applied stretch,
pressure and voltage. When a particle passes through the nanopore, it
creates a temporary decrease in the baseline current, which results in
a blockade event. Each blockade event corresponds to a single particle
translocating through the nanopore, from the upper to lower fluid cell.
Blockade magnitude and frequency can be controlled using three parameters:
FORCES
EXPLANATION
NOTES
Applied Stretch,
S (mm)
Optimise the blockade
magnitude (dI) and sample
resolution by adjusting the
nanopore size (stretch)
Applied Pressure,
P (mbar)
Optimise the particle rate
(blockade frequency, (f)
and blockade duration
by adjusting the pressure
applied by the VPM.
Applied Voltage,
V (V)
Optimise the signal-
to-noise ratio of the
system by increasing the
electrophoretic force acting
on charged particles.
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