Advanced Functional Materials,
Год журнала:
2022,
Номер
32(17)
Опубликована: Янв. 17, 2022
Abstract
A
new
type
of
cathode
interlayer
composed
2,6‐di‐
tert
‐butyl‐phenol‐functionalized
perylene
bisimide
(PBI‐2P)
is
successfully
applied
as
an
electron
transporting
layer
for
fused‐ring
nonfullerene
organic
solar
cells
(OSCs).
The
stable
contact
between
these
novel
layers
and
the
representative
acceptor
Y6
greatly
enhances
device
stability
compared
to
conventional
amine‐group
containing
interlayers.
Moreover,
easily
formed
biradical
species
in
interlayers
yields
rather
good
thickness
tolerance
PBI‐2P
photovoltaic
devices.
OSCs
based
on
show
a
power
conversion
efficiency
up
17.20%
amino‐group
functionalized
findings
demonstrate
promising
design
principle
engineering
pigment
chromophores
equipped
with
‐butylphenoxy
groups
that
are
prone
form
respective
ultrastable
butylphenoxy
radicals
OSCs.
Chemical Society Reviews,
Год журнала:
2023,
Номер
52(4), С. 1331 - 1381
Опубликована: Янв. 1, 2023
A
comprehensive
summary
and
deep
insights
into
the
synthesis,
characterization
multi-functional
device
applications
of
n-type
ambipolar
organic
semiconductors
are
provided
in
this
study.
Advanced Materials,
Год журнала:
2021,
Номер
34(22)
Опубликована: Окт. 1, 2021
Abstract
Organic
semiconductors
can
be
designed
and
constructed
in
π‐stacked
structures
instead
of
the
conventional
π‐conjugated
structures.
Through‐space
interaction
(TSI)
occurs
optoelectronic
materials.
Thus,
unlike
electronic
coupling
along
conjugated
chain,
functional
groups
stack
closely
to
facilitate
spatial
electron
communication.
Using
motifs,
chemists
materials
scientists
find
new
ways
for
constructing
with
aggregation‐induced
emission
(AIE),
thermally
activated
delayed
fluorescence
(TADF),
circularly
polarized
luminescence
(CPL),
room‐temperature
phosphorescence
(RTP),
as
well
enhanced
molecular
conductance.
devices
based
on
molecules
have
exhibited
very
promising
performance,
some
them
exceeding
analogues.
Recently,
reports
various
organic
grown
rapidly,
prompting
this
review.
Representative
scaffolds
newly
developed
systems
could
stimulate
more
attention
through‐space
charge
transfer
well‐known
through‐bond
transfer.
Finally,
opportunities
challenges
utilizing
improving
particular
are
discussed.
The
previous
achievements
upcoming
prospects
may
provide
insights
into
theory,
materials,
field
semiconductors.
Angewandte Chemie International Edition,
Год журнала:
2022,
Номер
61(23)
Опубликована: Март 21, 2022
Oligomeric
acceptors
are
expected
to
combine
the
advantages
of
both
highly
developed
small
molecular
and
polymeric
acceptors.
However,
organic
solar
cells
(OSCs)
based
on
oligomers
lag
far
behind
due
their
slow
development
low
diversity.
Here,
three
oligomeric
were
produced
through
oligomerization
molecules.
The
dimer
dBTICγ-EH
achieved
best
power
conversion
efficiencies
(PCEs)
14.48
%
in
bulk
heterojunction
devices
possessed
a
T80
(80
initial
PCE)
lifetime
1020
h
under
illumination,
which
better
than
that
More
excitingly,
it
showed
PCEs
16.06
quasi-planar
(Q-PHJ)
is
highest
value
OSCs
using
date.
These
results
suggest
molecules
promising
strategy
achieve
with
optimized
performance
between
high
efficiency
durable
stability,
offer
materials
bright
future
commercial
applications.
Journal of the American Chemical Society,
Год журнала:
2022,
Номер
144(33), С. 14976 - 14991
Опубликована: Июль 29, 2022
The
creation
and
development
of
new
forms
nanocarbons
have
fundamentally
transformed
the
scientific
landscape
in
past
three
decades.
As
members
nanocarbon
family
with
accurate
size,
shape,
edge
structure,
molecular
carbon
imides
(MCIs)
shown
unexpected
unique
properties.
Particularly,
imide
functionalization
strategy
has
endowed
these
rylene-based
carbons
fascinating
characteristics
involving
flexible
syntheses,
tailor-made
structures,
diverse
properties,
excellent
processability,
good
stability.
This
Perspective
elaborates
design
evolution
to
functional
landscapes,
illustrative
examples
are
given,
including
a
promising
library
multi-size
multi-dimensional
MCIs
rigidly
conjugated
π-architectures,
ranging
from
1D
nanoribbon
2D
nanographene
cross-dimensional
MCIs.
Although
researchers
achieved
substantial
progress
using
as
components
for
exploration
charge
transport,
photoelectric
conversion,
chiral
luminescence
performances,
they
far
unleashing
their
full
potential.
Developing
highly
efficient
regioselective
coupling/ring-closure
reactions
formation
multiple
C–C
bonds
annulation
electron-deficient
aromatic
units
is
crucial.
Prediction
by
theory
help
machine
learning
artificial
intelligence
research
along
reliable
nanotechnology
characterization
will
give
an
impetus
blossom
related
fields.
Future
investigations
also
advance
toward─or
even
focus
on─the
emerging
potential
functions,
especially
fields
electronics
spin
electronics,
which
expected
open
avenues.
Journal of the American Chemical Society,
Год журнала:
2022,
Номер
144(7), С. 3091 - 3098
Опубликована: Фев. 9, 2022
BN-embedded
polycyclic
aromatic
hydrocarbons
(PAHs)
with
unique
optoelectronic
properties
are
underdeveloped
relative
to
their
carbonaceous
counterparts
due
the
lack
of
suitable
and
facile
synthetic
methods.
Moreover,
dearth
electron-deficient
PAHs
further
hinders
application
in
organic
electronics.
Here
we
present
first
synthesis
novel
perylene
diimide
derivatives
(B2N2-PDIs)
featuring
n-type
B-N
covalent
bonds.
The
structures
these
compounds
fully
confirmed
through
detailed
characterizations
NMR,
MS,
X-ray
crystallography.
Further
investigation
shows
that
introduction
BN
units
significantly
modifies
photophysical
electronic
B2N2-PDIs
is
understood
aid
theoretical
calculations.
Compared
parent
diimides
(PDIs),
exhibit
deeper
highest
occupied
molecular
orbital
energy
levels,
new
absorption
peaks
high-energy
region,
hypsochromic
shift
emission
maxima,
decrement
photoluminescent
quantum
yields.
Single-crystal
field-effect
transistors
based
on
showcase
an
electron
mobility
up
0.35
cm2
V-1
s-1,
demonstrating
potential
materials.
Angewandte Chemie International Edition,
Год журнала:
2023,
Номер
62(46)
Опубликована: Июль 12, 2023
Abstract
Organic
solar
cells
(OSCs)
have
attracted
wide
research
attention
in
the
past
decades.
Very
recently,
oligomerized
fused‐ring
electron
acceptors
(OFREAs)
emerged
as
a
promising
alternative
to
small‐molecular/polymeric
acceptor‐based
OSCs
due
their
unique
advantages
such
well‐defined
structures,
batch
reproducibility,
good
film
formation,
low
diffusion
coefficient,
and
excellent
stability.
So
far,
rapid
advances
been
made
development
of
OFREAs
consisting
directly/rigidly/flexibly
linked
oligomers
fused
ones.
In
this
Minireview,
we
systematically
summarized
recent
progress
OFREAs,
including
structural
diversity,
synthesis
approach,
molecular
conformation
packing,
long‐term
Finally,
conclude
with
future
perspectives
on
challenges
be
addressed
potential
directions.
We
believe
that
Minireview
will
encourage
novel
for
OSC
applications.
Energy & Environmental Science,
Год журнала:
2023,
Номер
16(8), С. 3339 - 3349
Опубликована: Янв. 1, 2023
We
report
a
new
trimer
acceptor
(TYT)
composed
of
three
Y-based
molecules
connected
by
electron-donating
spacers.
The
TYT
enables
high-performance
and
stable
organic
solar
cell
(OSC)
with
t
80%
lifetime
>8000
h
under
1
sun
illumination.
Chemical Society Reviews,
Год журнала:
2024,
Номер
53(9), С. 4674 - 4706
Опубликована: Янв. 1, 2024
This
review
summarizes
the
recent
progress,
key
design
principles
and
prospects
of
dimer
multimer
acceptors
for
developing
polymer
solar
cells
(PSCs)
with
high
efficiency
long-term
stability.
Angewandte Chemie International Edition,
Год журнала:
2023,
Номер
62(23)
Опубликована: Март 30, 2023
Electroactive
ionenes
combining
caged-shaped
diazabicyclic
cations
and
aromatic
diimides
were
developed
as
interlayers
in
organic
solar
cells
(OSCs).
These
reduce
the
work-function
of
air-stable
metal
electrodes
(e.g.,
Ag,
Cu
Au)
by
generating
strong
interfacial
dipoles,
their
optoelectronic
morphological
characters
can
be
modulated
diimides,
leading
to
high
conductivity
good
compatibility
with
active
layers.
The
optimal
ionene
exhibits
superior
charge-transport,
desirable
crystallinity,
weak
visible-absorption,
boosting
efficiency
benchmark
PM6
:
Y6-based
OSCs
up
17.44
%.
corresponding
normal
devices
show
excellent
stability
at
maximum
power
point
test
under
one
sun
illumination
for
1000
h.
Replacing
Y6
L8-BO
promotes
18.43
%,
highest
binary
OSCs.
Notably,
efficiencies
>16
%
are
maintained
interlayer
thickness
increasing
105
nm,
best
result
interlayer-thickness
over
100
nm.