Advances in healthcare information systems and administration book series,
Год журнала:
2024,
Номер
unknown, С. 255 - 284
Опубликована: Сен. 20, 2024
Tactile,
sensors
and
nanosensors
technologies
have
emerged
as
a
burgeoning
area
of
study
in
both
academic
industrial
realms.
Recent
progress
has
showcased
the
practical
application
tactile
biomedical
engineering,
unlocking
possibilities
for
development
versatile
electronic
skin
(e-skin)
that
mimics
human
sense
touch
medical
purposes.
The
current
smart
sensing
technology
offers
notable
advantages
including
high
performance,
cost-effectiveness,
time
efficiency
ease
fabrication.
capacity
to
detect
analyze
physical
impulses
through
is
known
sensing,
recent
developments
sensor
opened
up
new
avenues
creative
uses
industry.
This
chapter
provides
an
in-depth
exploration
its
transformative
role
applications.
Materials Today Electronics,
Год журнала:
2023,
Номер
5, С. 100055 - 100055
Опубликована: Авг. 11, 2023
As
personal
portable
devices,
wearable
sensors
supply
a
leading-edge
pathway
to
diagnose
various
diseases
through
actuating
biological,
physical,
and
chemical
sensing
capabilities.
This
could
be
commonly
carried
out
via
recording
continuous
real-time
of
the
patient's
physiological
statuses,
as
well
pathophysiological
information.
Although
sensor
technology
is
in
infancy
stage,
tremendous
attempts
have
been
devoted
approaching
flexible
polymeric
sensors.
Among
polymer
candidates
applicable
for
synthesizing
sensors,
bio-based
ones
piqued
more
interest
due
their
biocompatibility,
biodegradability,
eco-friendly
features,
cost-effectiveness.
Additionally,
several
fabrication
techniques
professed
architect
efficient
frameworks,
such
films,
hydrogels,
aerogels,
ferrogels,
3D
layers,
electrospun
mats,
textiles.
In
this
review,
different
mechanisms
declared
engineer
are
overviewed.
Then,
regarding
advantages
observed
polymers,
focused
studies
on
natural-based
described.
Notably,
cellulose,
chitosan,
silk,
gelatin,
alginate's
role
functionality
highlighted.
Accordingly,
review
has
opened
new
window
ahead
opportunities
based
natural
polymers.
It
hoped
that
generation
will
launched
by
combining
emerging
achievements
obtained
from
employing
sustainable
green
elements
miniaturized
structures.
Nano-Micro Letters,
Год журнала:
2024,
Номер
16(1)
Опубликована: Фев. 27, 2024
Abstract
Flexible
sensors
based
on
MXene-polymer
composites
are
highly
prospective
for
next-generation
wearable
electronics
used
in
human–machine
interfaces.
One
of
the
motivating
factors
behind
progress
flexible
is
steady
arrival
new
conductive
materials.
MXenes,
a
family
2D
nanomaterials,
have
been
drawing
attention
since
last
decade
due
to
their
high
electronic
conductivity,
processability,
mechanical
robustness
and
chemical
tunability.
In
this
review,
we
encompass
fabrication
MXene-based
polymeric
nanocomposites,
structure–property
relationship,
applications
sensor
domain.
Moreover,
our
discussion
not
only
limited
design,
mechanism,
various
modes
sensing
platform,
but
also
future
perspective
market
throughout
world.
With
article,
intend
fortify
bond
between
matrices
MXenes
thus
promoting
swift
advancement
MXene-sensors
technologies.
Sensors,
Год журнала:
2025,
Номер
25(5), С. 1377 - 1377
Опубликована: Фев. 24, 2025
The
development
of
wearable
sensor
devices
brings
significant
benefits
to
patients
by
offering
real-time
healthcare
via
wireless
body
area
networks
(WBANs).
These
have
gained
traction
due
advantageous
features,
including
their
lightweight
nature,
comfortable
feel,
stretchability,
flexibility,
low
power
consumption,
and
cost-effectiveness.
Wearable
play
a
pivotal
role
in
healthcare,
defence,
sports,
health
monitoring,
disease
detection,
subject
tracking.
However,
the
irregular
nature
human
poses
challenge
design
such
systems.
This
manuscript
provides
comprehensive
review
recent
advancements
flexible
smart
that
can
support
next
generation
devices.
Further,
direct
ink
writing
(DIW)
(DW)
methods
has
revolutionised
new
high-resolution
integrated
structures,
enabling
next-generation
soft,
flexible,
stretchable
Recognising
importance
keeping
academia
industry
informed
about
cutting-edge
technology
time-efficient
fabrication
tools,
this
also
thorough
overview
latest
progress
various
for
utilised
WBAN
evaluation
using
phantoms.
An
emerging
challenges
future
research
directions
is
discussed
conclusion.
Materials Today Electronics,
Год журнала:
2023,
Номер
6, С. 100067 - 100067
Опубликована: Окт. 1, 2023
Quantum
electronic
sensing
(QES),
on
the
cusp
of
a
revolution,
is
opening
up
new,
possibly
cutting-edge
possibilities
to
take
advantage
complex
quantum
mechanical
variables
make
incredibly
sensitive
assessments
an
array
parameters.
Concurrently,
there
are
now
prospects
for
be
used
enhance
processes
involved
in
creating,
distributing,
and
utilizing
energy.
To
use
technology
carefully
efficiently,
it
necessary
handle
issues
with
material
stability
operation,
reliable
monitoring,
precision
assessment.
Here
overview
existing
new
materials
methods,
along
related
frameworks
that
have
been
created
support
their
use.
Regarding
advanced
technologies
specifically,
realization
previously
unheard-of
degree
sensitivity
made
possible
using
methods
materials.
The
review's
discussion
high-value
implementations
bio-electronics
industry
still-existing
impediments
sensor
deployment
wrap
review.
More
we
address
how
may
lead
greater
efficiency
while
highlighting
established
developing
materials,
platforms.
potential
chances
implement
follows
summary
remaining
obstacles
difficulties
deployment.
Journal of Applied Polymer Science,
Год журнала:
2024,
Номер
141(20)
Опубликована: Март 5, 2024
Abstract
Adding
graphite
nanoplatelets
(GNP)
into
silicone
rubber
(SR)
composites
have
shown
significant
potential
for
wearable
electronics,
where
electrical,
mechanical,
and
tribological
properties
play
a
crucial
role.
This
study
investigates
the
effects
of
incorporating
SR
their
impact
on
these
key
properties.
Solution
mixing
GNP
was
performed
to
confirm
good
dispersion
within
matrix.
The
results
showed
improved
tensile
strength
modulus
while
stabilizing
flexibility
stretchability
required
electronics.
For
example,
0.86
MPa
(control)
increased
1.18
(5
part
per
hundred
[phr]
GNP),
1.55
(15
phr
GNP).
Similarly,
177
%
190
184
Moreover,
electro‐mechanical
tests
were
studied
output
voltage
samples
0.28
milli‐volt
(mV)
0.31
mV
generation
through
human
motions.
obtained
from
biomechanical
motions
such
as
thumb
pressing
0.7
2.7
finds
GNP‐SR
multifunctional
materials
Overall,
this
research
guides
development
advanced
devices,
soft
robotics,
bio‐inspired
electronics
with
performance
durability.