Solid composite electrolyte with a Cs doped fluorapatite-interfacial layer enabling dendrite-free anodes for solid-state lithium batteries
Yuezhen Mao,
No information about this author
Fanghui Mi,
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Tianyuan Wang
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et al.
Chemical Engineering Journal,
Journal Year:
2024,
Volume and Issue:
496, P. 153823 - 153823
Published: July 14, 2024
Language: Английский
Janus Solid Electrolyte with Ionic and Electronic Dual Conductive Face Guiding Lithium Deposition Oriental To Connect with Lithium Metal Anode
Xiaohua Qi,
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Yihang Li,
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Shichen Zhang
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et al.
ACS Energy Letters,
Journal Year:
2025,
Volume and Issue:
unknown, P. 2679 - 2688
Published: May 9, 2025
Language: Английский
Enhancement and architectural optimization of polyvinylidene fluoride-based solid polymer electrolytes for advanced solid-state lithium-metal batteries
Dongbo Yang,
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Xiaoping Chen,
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Changzheng Chen
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et al.
Journal of Power Sources,
Journal Year:
2025,
Volume and Issue:
647, P. 237343 - 237343
Published: May 14, 2025
Language: Английский
Solid-State Electrolytes: Probing Interface Regulation from Multiple Perspectives
Yuchuan Zhu,
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Cong Wang,
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Daying Guo
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et al.
ACS Applied Materials & Interfaces,
Journal Year:
2024,
Volume and Issue:
16(33), P. 43114 - 43133
Published: Aug. 7, 2024
Solid-state
electrolytes
(SSEs),
as
the
heart
of
all-solid-state
batteries
(ASSBs),
are
recognized
next-generation
energy
storage
solution,
offering
high
safety,
extended
cycle
life,
and
superior
density.
SSEs
play
a
pivotal
role
in
ion
transport
electron
separation.
Nonetheless,
interface
compatibility
stability
issues
pose
significant
obstacles
to
further
enhancing
ASSB
performance.
Extensive
research
has
demonstrated
that
control
methods
can
effectively
elevate
This
review
delves
into
advancements
recent
progress
interfacial
engineering
over
past
years.
We
discuss
detailed
effects
various
regulation
strategies
directions
on
performance,
encompassing
Li
Language: Английский