Beni-Suef University Journal of Basic and Applied Sciences,
Journal Year:
2023,
Volume and Issue:
12(1)
Published: July 17, 2023
Abstract
Background
In
recent
years,
solar
photovoltaic
technology
has
experienced
significant
advances
in
both
materials
and
systems,
leading
to
improvements
efficiency,
cost,
energy
storage
capacity.
These
have
made
a
more
viable
option
for
renewable
generation
storage.
However,
intermittent
is
major
limitation
of
energy,
systems
are
the
preferred
solution
these
challenges
where
electric
power
applicable.
Hence,
type
system
depends
on
used
electrical
generation.
Furthermore,
growing
need
sources
necessity
long-term
solutions
fueled
research
into
novel
systems.
Researchers
concentrated
increasing
efficiency
cells
by
creating
that
can
collect
convert
sunlight
power.
Main
body
abstract
This
study
provides
an
overview
development
devices.
The
use
sources,
such
as
power,
becoming
increasingly
important
address
demand
mitigate
impact
climate
change.
with
superior
properties,
higher
lower
improved
durability,
significantly
enhance
performance
panels
enable
creation
new,
efficient
review
discusses
progress
field
opportunities
associated
also
explored,
including
scalability,
stability,
economic
feasibility.
Conclusion
devices
holds
great
potential
revolutionize
energy.
With
ongoing
technological
advancements,
scientists
engineers
been
able
design
properties
durability.
be
existing
adoption
could
implications
transition
toward
sustainable
environmentally
friendly
system.
there
still
addressed,
environmental
effects,
feasibility,
before
widely
implemented.
Nonetheless,
this
promising
continued
reports
crucial
achieving
future.
lead
system,
but
further
needed
overcome
current
limitations
large-scale
implementation.
International Journal of Thermofluids,
Journal Year:
2021,
Volume and Issue:
10, P. 100073 - 100073
Published: Feb. 26, 2021
Heat
transfer
operations
are
very
common
in
the
process
industry
to
a
huge
amount
of
thermal
energy,
i.e.,
heat,
from
one
fluid
another
for
different
purposes.
Many
fluids
used
as
heat
(HTF),
which
water
is
most
HTF
due
its
high
specific
availability,
and
affordability.
However,
conventional
HTFs,
including
water,
have
lower
conductivity,
critical
thermophysical
property,
hence
decreased
efficiency.
The
addition
solid
particles
highly
thermally
conductive
material,
specifically
at
nano-size,
nanoparticles
NPs,
result
nanofluid
NF,
has
evolved
over
last
two
decades
efficient
been
investigated
wide
range
applications.
Among
graphene
(Gr)
based
materials
shown
potential
NF
conductivity
up
5,000
W/m.K,
higher
NF.
This
work
aims
thoroughly
discuss
properties
Gr-based
NFs,
capacity,
density,
viscosity.
discussion
focus
on
it
ultimate
determinator
characteristics
HTF,
such
convective
overall
coefficient
well
capacity
expands
relative
enhancement
reaching
40%
increase
property.
shows
that
much
widely
studied
metal
oxide
content,
density
viscosity
increase,
determining
pumping
power
requirements.
Critical
challenges
facing
application
NFs
cost,
stability,
increased
viscosity,
environmental
impacts
discussed
with
mitigation
recommendations
given.
Energies,
Journal Year:
2021,
Volume and Issue:
14(21), P. 7373 - 7373
Published: Nov. 5, 2021
Metal–air
batteries
are
a
promising
technology
that
could
be
used
in
several
applications,
from
portable
devices
to
large-scale
energy
storage
applications.
This
work
is
comprehensive
review
of
the
recent
progress
made
metal-air
MABs.
It
covers
theoretical
considerations
and
mechanisms
MABs,
electrochemical
performance,
development
different
structures
The
operational
concepts
developments
MABs
thoroughly
discussed,
with
particular
focus
on
innovative
materials
design
cell
structures.
classical
research
traditional
was
chosen
contrasted
metal–air
flow
systems,
demonstrating
merits
associated
latter
terms
achieving
higher
density
efficiency,
along
stability.
Furthermore,
applications
were
discussed.
Finally,
broad
overview
challenges/opportunities
potential
directions
for
commercializing
this
carefully
primary
investigation
present
concise
summary
establish
future
static
advanced
technologies.
A
systematic
analysis
subject
material
chemistry
standpoint
presented
as
well.
Interdisciplinary materials,
Journal Year:
2022,
Volume and Issue:
1(1), P. 116 - 139
Published: Jan. 1, 2022
Abstract
The
ever‐growing
demands
for
green
and
sustainable
power
sources
applications
in
grid‐scale
energy
storage
portable/wearable
devices
have
enabled
the
continual
development
of
advanced
aqueous
electrochemical
(EES)
systems.
Aqueous
batteries
supercapacitors
made
iron‐based
anodes
are
one
most
promising
options
due
to
remarkable
features
natural
abundance,
pretty
low
cost
good
environmental
friendliness
ferruginous
species.
Though
impressive
advances
developing
state‐of‐the‐art
designing
various
full‐cell
been
made,
there
still
remain
key
issues
challenges
on
way
practical
applications,
which
urgently
need
discussing
put
forwards
possible
solutions.
In
this
review,
rather
than
focusing
detailed
methods
optimize
iron
anode,
electrolyte,
device
performance,
we
first
give
a
comprehensive
review
charge
mechanisms
different
electrolyte
systems,
as
well
newly
developed
EES
devices.
deep
insights,
involving
inherent
failure
corresponding
modification/optimization
strategies
toward
high‐performance
devices,
will
then
be
discussed.
applying
emerging
fields
such
flexible/wearable
electronics
functionalized
building
materials
further
outlined.
Last,
future
research
trends
perspectives
maximizing
potential
current
exploiting
brand‐new
systems
forward.