Materials,
Год журнала:
2023,
Номер
16(4), С. 1430 - 1430
Опубликована: Фев. 8, 2023
Recently,
Prussian
blue
analogues
(PBAs)-based
anode
materials
(oxides,
sulfides,
selenides,
phosphides,
borides,
and
carbides)
have
been
extensively
investigated
in
the
field
of
energy
conversion
storage.
This
is
due
to
PBAs’
unique
properties,
including
high
theoretical
specific
capacity,
environmental
friendly,
low
cost.
We
thoroughly
discussed
formation
PBAs
conjunction
with
other
materials.
The
performance
composite
improves
electrochemical
its
storage
Furthermore,
new
insights
are
provided
for
manufacture
low-cost,
high-capacity,
long-life
battery
order
solve
difficulties
different
electrode
materials,
combined
advanced
manufacturing
technology
principles.
Finally,
their
composites’
future
challenges
opportunities
discussed.
ACS Applied Materials & Interfaces,
Год журнала:
2025,
Номер
unknown
Опубликована: Апрель 10, 2025
Crystal
repair
strategies
are
commonly
used
to
extend
the
cycling
life
of
electrode
materials,
but
their
effectiveness
is
often
limited
and
may
introduce
defects.
In
this
study,
we
propose
an
electrochemically
induced
phase
transformation
approach
complement
traditional
strategies.
This
technique
regenerates
decayed
α-phase
V2O5
from
deteriorated
lithium-ion
batteries
by
not
only
repairing
defects
also
forming
stable
bilayer
structure
crystals
for
excellent
Zn2+
storage.
By
controlling
stimulated
current,
kinetics
can
be
precisely
tuned
with
assistance
interlayer
H2O.
The
reconfigured
achieves
a
remarkable
areal
capacity
6.5
mA
h
cm-2
in
aqueous
zinc-ion
(ZIBs),
over
1500
cycles,
outperforming
ZIBs
made
common
fresh
V2O5.
Journal of Materials Chemistry A,
Год журнала:
2022,
Номер
10(44), С. 23905 - 23914
Опубликована: Янв. 1, 2022
With
the
ever-growing
market
of
electric
vehicles,
spent
lithium-ion
batteries
(LIBs)
eventually
turn
into
a
very
challenging
issue
to
both
environment
and
resource
sustainability.
Recycling
is
key
step
enable
closed-loop
battery
industry.
Journal of Materials Chemistry A,
Год журнала:
2023,
Номер
11(35), С. 18605 - 18625
Опубликована: Янв. 1, 2023
This
article
starts
with
the
working
mechanism
and
combines
research
history
to
introduce
modification
methods
applications
of
photoassisted
batteries.
Finally,
challenges
prospects
in
this
field
were
summarized.
Journal of Cleaner Production,
Год журнала:
2023,
Номер
413, С. 137522 - 137522
Опубликована: Май 18, 2023
The
rules
of
the
automotive
industry
are
changing
due
to
sustainable
mobility
firms
linked
essential
products
and
technologies
supplied
produce
low
environmental
impact
vehicles.
Among
others,
these
include
batteries
their
components
(e.g.,
materials,
cells),
power
electric
systems,
or
for
recycling
reuse
mineral
processing,
de-pollution
waste).
Under
global
value
chain
(GVC)
approach,
research
analyzed
changes
through
data
collected
from
a
survey
comparing
relationships
established
by
sample
27
130
traditional
in
Spanish
chain.
results
indicate
that
new
players
have
greater
decision-making
on
terms
price,
product
design,
geographical
location.
Moreover,
broken
asymmetrical
dependence
leading
buyers.
As
result,
they
lead
some
key
this
industry,
show
high
performance
favors
profitable
return
investment
technologies.
main
novelty
our
findings
lies
how
understand
Although
continues
be
governed
Original
Equipment
Manufacturers
(OEMs),
suppliers
control
value-added
activities
take
relevant
decisions
ACS Energy Letters,
Год журнала:
2023,
Номер
8(10), С. 4287 - 4295
Опубликована: Сен. 21, 2023
Imperfect
recycling
technology
and
inconsistent
decommissioning
levels
hinder
the
joint
development
of
social
economic
benefits
in
spent
lithium-ion
batteries
(LIBs).
Formulating
a
more
consummate
strategy
to
recover
cathodes
with
different
degradation
is
critical
for
optimizing
LIBs.
This
paper
presents
an
advanced
approach
photocatalytic-assisted
recovery
LIBs
based
on
degree
cathode
materials.
UV-assisted
Li
Co
leaching
efficiency
reached
99.56%
98.25%,
over
35%
higher
than
non-UV
assistance,
lower
cost
ultrasound
(68.94%)
stirring
(81.25%).
Additionally,
we
realized
high-value
reuse
leached
lithium
solution,
repaired-LiCoO2
exhibited
high
capacity,
179.4
mAh
g–1,
at
0.1
C.
The
process
generates
three
times
traditional
methods.
environmentally
friendly
energy-efficient
method
well-suited
efficiently
recovering
Ni-enriched
anodes,
offering
new
insights
into