Materials,
Journal Year:
2024,
Volume and Issue:
17(23), P. 5983 - 5983
Published: Dec. 6, 2024
The
development
of
skin-protective
materials
that
prevent
the
adhesion
cnidarian
nematocysts
and
enhance
mechanical
strength
these
is
crucial
for
addressing
issue
jellyfish
stings.
This
study
aimed
to
construct
superhydrophobic
nanomaterials
capable
creating
a
surface
inhibits
nematocyst
adhesion,
therefore
preventing
We
investigated
wettability
on
four
different
surfaces:
gelatin,
polydimethylsiloxane
(PDMS),
dodecyl
trichlorosilane
(DTS)-modified
SiO
Nanomaterials,
Journal Year:
2025,
Volume and Issue:
15(8), P. 584 - 584
Published: April 11, 2025
Asymmetric
micro-supercapacitors
(AMSCs)
with
a
small
size
and
high
energy
density
can
be
compatible
portable
wearable
electronic
devices
are
capable
of
providing
stable,
long-term
power
supply,
attracting
great
research
interest
in
recent
years.
Here,
we
present
simple
rapid
preparation
method
for
AMSCs’
fabrication.
By
regulating
the
hydrophilicity
hydrophobicity
coplanar
laser-induced
graphene
(LIG)
through
adjustment
laser
parameters,
two
electrode
materials
distinct
hydrophilic–hydrophobic
properties
were
selectively
deposited
by
sequentially
dip-coating.
The
LIGs
serve
as
current
collectors,
activated
carbon
poly
(3,4-ethylenedioxythiophene):
(styrene
sulfonate)
active
materials.
After
coating
electrolytes
folding
electrodes,
high-performance
AMSC
was
achieved.
device
exhibits
areal
capacitance
85.88
mF
cm−2
at
0.4
mA
cm−2,
along
an
impressive
11.93
µWh
good
rate
performance.
Moreover,
it
is
demonstrated
to
highly
stable
500,000
cycles.
Two
AMSCs
series
supply
clock
birthday
card.
preparing
asymmetric
electrodes
same
plane
greatly
facilitates
large-area
series–parallel
connection,
excellent
idea
developing
miniature
storage
devices.
ACS Applied Materials & Interfaces,
Journal Year:
2024,
Volume and Issue:
16(42), P. 57936 - 57945
Published: Oct. 9, 2024
As
one
of
the
most
important
ways
human–machine
interfaces,
touchpad
has
excellent
input
convenience.
Input
devices
for
extreme
environments
require
simpler
structures
and
diverse
inputs
to
ensure
information
inputs.
This
paper
proposed
a
self-powered
flexible
panel
with
single-channel
output
recognition
all
26
letters,
mask
was
implemented
cover
triboelectric
nanogenerator
(TENG)
board
obtain
more
complicated
electrical
signal
features.
Based
on
change
mask,
neural
network
models
different
combinations
layers
were
designed
optimized,
highest
rate
88.7%
letters
100%
accuracy
some
achieved
among
five
testers.
For
low
rates,
specific
writing
specification
further
improve
model
recognition.
These
results
facilitate
application
as
wearable
device
personal
protective
equipment
including
chemical,
biological,
radiological,
nuclear
(CBRN)
scenarios
or
aerospace.
Micromachines,
Journal Year:
2024,
Volume and Issue:
15(10), P. 1264 - 1264
Published: Oct. 17, 2024
The
heating
system
is
an
essential
component
of
the
glass
molding
process.
It
responsible
for
to
appropriate
temperature,
allowing
it
soften
and
be
easily
molded.
However,
energy
consumption
becomes
particularly
significant
in
large-scale
production.
This
study
utilized
G-11
simulation
analysis
developed
a
finite
element
model
thermal
conduction
3D
ultra-thin
system,
as
well
bending
smartwatches.
Using
software,
heat
transfer
between
mold
was
modeled,
temperature
distribution
stress
under
various
processing
conditions
were
predicted.
findings
simulation,
when
subjected
numerical
analysis,
showed
that
rate
techniques
significantly
affect
consumption.
devised
total
four
strategies.
Upon
comparison,
optimizing
with
strategy
4,
which
applies
initial
35
mJ/(mm