Sensors,
Journal Year:
2024,
Volume and Issue:
24(21), P. 7011 - 7011
Published: Oct. 31, 2024
We
are
proposing
a
novel
self-assembled
monolayer
(SAM)
functionalized
ZnO
nanowires
(NWs)-based
conductometric
sensor
for
the
selective
detection
of
hydrogen
(H
Materials,
Journal Year:
2025,
Volume and Issue:
18(2), P. 451 - 451
Published: Jan. 19, 2025
Hydrogen
has
emerged
as
a
prominent
candidate
for
future
energy
sources,
garnering
considerable
attention.
Given
its
explosive
nature,
the
efficient
detection
of
hydrogen
(H2)
in
environment
using
H2
sensors
is
paramount.
Chemoresistive
sensors,
particularly
those
based
on
noble-metal-decorated
metal
oxide
semiconductors
(MOSs),
have
been
extensively
researched
owing
to
their
high
responsiveness,
low
limits,
and
other
favorable
characteristics.
Despite
numerous
recent
studies
reviews
reporting
advancements
this
field,
comprehensive
review
focusing
rational
design
sensing
materials
enhance
overall
performance
chemoresistive
MOFs
lacking.
This
aims
address
gap
by
examining
principles,
applications,
challenges
with
specific
focus
Pd-decorated
Pt-decorated
MOSs-based
materials.
The
observations
explanations
strategies
employed
literature,
within
last
three
years,
analyzed
provide
insights
into
latest
research
directions
developments
domain.
understanding
essential
designing
fabricating
highly
sensors.