Mechano-Electrochemical Synergy in Cellulose@MOF Scaffold-Based Asymmetric Electrolyte for Stable Solid-State Lithium Metal Batteries. [PDF]
Fan W +5 more
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Mechanisms, development, and applications of silicon-based anodes in solid state batteries. [PDF]
Liang F +5 more
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Mechanically compliant and cost-effective 1.4Li<sub>2</sub>O-0.75ZrCl<sub>4</sub>-0.25AlCl<sub>3</sub> solid electrolyte for all-solid-state batteries with improved cycling stability. [PDF]
Hu L +23 more
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Polyphenol-Gated Composite Electrolytes with Enhanced Cross-Phase Lithium-Ion Transport for Solid-State Lithium Batteries. [PDF]
Li X +13 more
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Emerging composite electrode architectures based on transition metal oxides for high-performance Li-ion capacitors. [PDF]
Irfan M +14 more
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Decoding NASICON and Its Metal Interface for Solid-State Batteries. [PDF]
Xu J +8 more
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High-Efficiency CO<sub>2</sub> Electrolysis Enabled by Interface-Engineered Composite Electrolytes in Ni-Based SOEC. [PDF]
Yuldashev R +4 more
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"Solid-in-Solid" Electrolyte via Scalable Melting Infiltration Method for High-Voltage Solid-State Lithium Metal Batteries. [PDF]
Ji T +8 more
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High-Performance Solid Polymer Electrolyte Constructed from Long-Chain Regulated Random Copolymers and Porous PI Composites. [PDF]
Zhang Q, Cao M, Tang C, Zhou Y, Peng X.
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Enhancing Solid-State Li-Ion Batteries with MOF-Polymer Composite Electrolytes-Effect Mechanisms and Interface Engineering. [PDF]
Chen T, Reddy NP, Li M.
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