Materials Chemistry Frontiers,
Journal Year:
2024,
Volume and Issue:
8(18), P. 3017 - 3027
Published: Jan. 1, 2024
Introducing
GuSCN
reduces
the
defect
density
of
perovskites
by
one
order
magnitude.
Consequently,
an
MA-free
opaque
wide-bandgap
perovskite
solar
cell
achieves
20.92%
power
conversion
efficiency
with
excellent
stability.
ACS Energy Letters,
Journal Year:
2024,
Volume and Issue:
9(4), P. 1487 - 1506
Published: March 12, 2024
Inverted
perovskite
solar
cells
(PSCs)
with
p-i-n
structure
have
recently
attracted
widespread
attention
owing
to
their
fast-growing
power
conversion
efficiency.
In
this
Review,
we
focus
on
the
progress
in
materials
that
contribute
improved
efficiency
of
inverted
PSCs,
including
hole
transport
self-assembled
monolayers
as
highlight,
electron
materials,
and
interface
modification
between
charge
layers
for
passivating
defects.
Then,
discuss
recent
advances
perovskites,
optimization
bandgap,
interfacial
band
engineering,
development
film
processing.
Finally,
point
out
challenges
future
perspectives
further
improving
stability
PSCs
hope
offering
suggestions
tackle
hindrance
commercial
applications.
Materials Futures,
Journal Year:
2024,
Volume and Issue:
3(2), P. 022102 - 022102
Published: April 24, 2024
Abstract
Perovskite
(PVK)
solar
cells
(PSCs)
have
garnered
considerable
research
interest
owing
to
their
cost-effectiveness
and
high
efficiency.
A
systematic
annual
review
of
the
on
PSCs
is
essential
for
gaining
a
comprehensive
understanding
current
trends.
Herein,
analysis
papers
reporting
key
findings
in
2023
was
conducted.
Based
results,
were
categorized
into
six
classifications,
including
regular
n–i–p
PSCs,
inverted
p–i–n
PVK-based
tandem
cells,
PVK
modules,
device
stability,
lead
toxicity
green
solvents.
Subsequently,
detailed
overview
summary
advancements
within
each
classification
presented.
Overall,
this
serves
as
valuable
resource
guiding
future
endeavors
field
PSCs.
Materials,
Journal Year:
2023,
Volume and Issue:
16(17), P. 5839 - 5839
Published: Aug. 25, 2023
The
rapid
growth
and
evolution
of
solar
panel
technology
have
been
driven
by
continuous
advancements
in
materials
science.
This
review
paper
provides
a
comprehensive
overview
the
diverse
range
employed
modern
panels,
elucidating
their
roles,
properties,
contributions
to
overall
performance.
discussion
encompasses
both
traditional
crystalline
silicon-based
panels
emerging
thin-film
technologies.
A
detailed
examination
photovoltaic
materials,
including
monocrystalline
polycrystalline
silicon
as
well
alternative
such
cadmium
telluride
(CdTe),
copper
indium
gallium
selenide
(CIGS),
perovskite
cells,
is
presented.
Furthermore,
impact
transparent
conductive
encapsulation
polymers,
antireflective
coatings
on
efficiency
durability
explored.
delves
into
synergistic
interplay
between
material
manufacturing
processes,
environmental
considerations.
Through
survey
utilized
this
insights
current
state
field,
highlighting
avenues
for
future
sustainable
energy
solutions.
Advanced Materials,
Journal Year:
2023,
Volume and Issue:
36(13)
Published: Dec. 19, 2023
Perovskite
solar
cells
(PSCs)
have
attracted
extensive
attention
due
to
their
higher
power
conversion
efficiency
(PCE)
and
simple
fabrication
process.
However,
the
open-circuit
voltage
(V
Advanced Science,
Journal Year:
2024,
Volume and Issue:
11(22)
Published: March 19, 2024
Abstract
Energy
loss
in
perovskite
grain
boundaries
(GBs)
is
a
primary
limitation
toward
high‐efficiency
solar
cells
(PSCs).
Two
critical
strategies
to
address
this
issue
are
high‐quality
crystallization
and
passivation
of
GBs.
However,
the
established
methods
generally
carried
out
discretely
due
complicated
mechanisms
growth
defect
formation.
In
study,
combined
method
proposed
by
introducing
3,4,5‐Trifluoroaniline
iodide
(TFAI)
into
precursor.
The
TFAI
triggers
union
nano‐sized
colloids
microclusters
facilitates
complete
phase
transition
α‐FAPbI
3
at
room
temperature.
controlled
chemical
reactivity
strong
steric
hindrance
effect
enable
fixed
location
suppress
defects
This
combination
well‐crystallized
grains
effectively
passivated
GBs
leads
an
improvement
open
circuit
voltage
(
V
oc
)
PSCs
from
1.08
1.17
V,
which
one
highest
recorded
without
interface
modification.
TFAI‐incorporated
device
achieved
champion
PCE
24.81%.
maintained
steady
power
output
near
its
maximum
point,
showing
almost
no
decay
over
280
h
testing
pre‐processing.
Advanced Functional Materials,
Journal Year:
2024,
Volume and Issue:
34(44)
Published: Aug. 16, 2024
Abstract
This
work
presents
the
advancement
of
lead‐free
tin
perovskite
photodiodes
in
terms
their
photodetection
and
air
stability
by
incorporating
germanium
(Ge)
ethylenediamine
(EDA)
to
formamidinium
iodide
(FASnI
3
).
EDA
0.01
FA
0.98
SnI
:Ge‐based
demonstrate
a
significantly
improved
specific
detectivity
(1.6
×
10
12
Jones
at
−0.1
V),
cut‐off
frequency
(6.6
5
Hz),
response
speed
(0.53
µs),
signal‐to‐noise
ratio
(45
dB)
compared
with
control
devices.
The
superior
performance
is
attributed
stronger
Ge─I
bond,
passivation
Sn
2+
I
–
vacancies
smaller
Ge
ions,
promotion
fully
3D
structure,
elevation
conduction
band
energy
level,
formation
protective
GeO
layer.
Various
film
analyses,
including
X‐ray
photoelectron
spectroscopy,
UV
density
functional
theory,
as
well
device
testing
using
time‐of‐flight
secondary
ion
mass
spectrometry
voltage‐dependent
admittance,
support
explain
mechanisms
behind
enhancements.
Ge‐
EDA‐incorporated
exhibit
excellent
stability,
evidenced
time‐dependent
ultraviolet
visible
spectra
considerably
high
certified
power
conversion
efficiency
without
encapsulation
air,
demonstrating
potential
for
practical
applications.
obtained
highest
among
published
tin‐based
photodetectors,
presenting
monumental
progress
from
previous
report
same
group.
Journal of Photonics for Energy,
Journal Year:
2023,
Volume and Issue:
13(04)
Published: Dec. 14, 2023
This
report
provides
a
snapshot
of
emerging
photovoltaic
(PV)
technologies.
It
consists
concise
contributions
from
experts
in
wide
range
fields
including
silicon,
thin
film,
III-V,
perovskite,
organic,
and
dye-sensitized
PVs.
Strategies
for
exceeding
the
detailed
balance
limit
light
managing
are
presented,
followed
by
section
detailing
key
applications
commercialization
pathways.
A
on
sustainability
then
discusses
need
minimization
environmental
footprint
PV
manufacturing
recycling.
The
concludes
with
perspective
based
broad
survey
questions
presented
to
contributing
authors
regarding
needs
future
evolution
PV.