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since the primary measurement element

since the primary measurement element M3Gwo
since the primary measurement element of colorimetric sensor array technology is chemo indicators, the overall performance of the sensor also depends on the chemical and physical properties of the printing substrate and the ink formulation. so as to create a more repeatable colorimetric sensor array, all components of the ink composition ought to not react with each other and the indicator properties need to be chemically compatible with the substrate. in addition, the substrate must provide extraordinary print quality in terms of spot uniformity, size, and consistency for greater repeatable sensor responses. more consistent spots can reduce noise because of change and print variation and efficaciously increase the signal-to-noise ratio, which is critical for low-signal intensities analytes. additionally, disposable colorimetric sensor arrays have to be comprised of cost-effective printing surfaces. To print the colorimetric sensor array, as mentioned earlier, various substrates were used, including silica gel plates, glass slides, cellulose-based membranes, polymeric microporous membranes, and so forth. consistent with a recent report on the effects of substrates and ink formulations on the performance of the colorimetric sensor array, the cellulose-based colorimetric sensor arrays had large incompatible spots that frequently overlapped with adjacent spots. Impermeable substrates, inclusive of glass or PET, led to small dense spots that had a much slower response time. Polymeric microporous membranes display superior performance among the studied substrates. especially, PVDF membranes are compatible with most ink formulations and offer the best overall sensor performance. unfortunately, PVDF membranes are not chemically well suited with ink formulations that require strong alkaline conditions. because of this, Patil and co-workers have developed nanoparticle-packed porous substrates with low-cost and high chemical resistance. these PFA polymer-coated substrates showed better chemical resistance to strong alkalis and had pretty uniform nanoporous structures that considerably improved the printability of a colorimetric sensor array. then 20 indicators which include various sets of chemically responsive dyes which have been sensitive to H₂S, NH₃, NO₂, and SO₂ printed on this PFA polymer-coated substrate were evaluated for the detection under their permissible exposure limits.
since
the primary measurement element of colorimetric sensor
array
technology is chemo indicators, the
overall
performance
of the sensor
also
depends on the chemical and physical properties of the printing substrate and the
ink
formulation
.
so as to
create a more repeatable colorimetric sensor
array
, all components of the
ink
composition ought to not react with each other and the indicator properties need to be
chemically
compatible with the substrate.
in
addition, the substrate
must
provide extraordinary print quality in terms of
spot
uniformity, size, and consistency for greater repeatable sensor responses.
more
consistent
spots
can
reduce
noise
because
of
change
and print variation and
efficaciously
increase the signal-to-noise ratio, which is critical for low-signal intensities analytes.
additionally
, disposable colorimetric sensor
arrays
have to
be comprised
of cost-effective printing surfaces. To print the colorimetric sensor
array
, as mentioned earlier, various substrates were
used
, including silica gel plates, glass slides, cellulose-based
membranes
, polymeric microporous
membranes
, and
so
forth.
consistent
with a recent report on the effects of substrates and
ink
formulations
on the
performance
of the colorimetric sensor
array
, the cellulose-based colorimetric sensor
arrays
had large incompatible
spots
that
frequently
overlapped with adjacent
spots
. Impermeable substrates, inclusive of glass or PET, led to
small
dense
spots
that had a much slower response time. Polymeric microporous
membranes
display superior
performance
among the studied substrates.
especially
,
PVDF
membranes
are compatible with most
ink
formulations
and offer the best
overall
sensor
performance
.
unfortunately
,
PVDF
membranes
are not
chemically
well suited with
ink
formulations
that require strong alkaline conditions.
because
of this,
Patil
and co-workers have developed nanoparticle-packed porous substrates with low-cost and high chemical resistance.
these
PFA polymer-coated substrates
showed
better chemical resistance to strong alkalis and had pretty uniform
nanoporous
structures that
considerably
improved
the
printability
of a colorimetric sensor
array
.
then
20 indicators which include various sets of
chemically
responsive dyes which have been sensitive to H₂S, NH₃, NO₂, and
SO
₂ printed on this PFA polymer-coated substrate
were evaluated
for the detection under their permissible exposure limits.
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IELTS essay since the primary measurement element

Essay
  American English
1 paragraphs
335 words
5.5
Overall Band Score
Coherence and Cohesion: 5.0
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Lexical Resource: 5.0
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Grammatical Range: 6.5
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Task Achievement: 5.0
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    Present relevant ideas
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