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Spatially separated crystallization for selective lithium extraction …

Spatially separated crystallization for selective lithium ...

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Prospects for lithium-ion batteries and beyond—a 2030 vision

Prospects for lithium-ion batteries and beyond—a 2030 ...

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Polymer‐Based Solid‐State Electrolytes for High‐Energy‐Density …

Portable electronic devices and electric vehicles have become indispensable in daily life and caused an increasing demand for high-performance lithium …

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Research progress on preparation and purification of fluorine-containing chemicals in lithium-ion batteries …

The electrochemical properties of fluorinated compounds as electrolytes for lithium-ion batteries reported in the literature show that LiPF 6 is still the most popular commercial electrolyte [87].LiBF 4 has become one of the potential substitutes due to its safety and stability at high temperatures [88]..

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Fast cycling of lithium metal in solid-state batteries by ...

Xing, X. et al. Graphite-based lithium-free 3D hybrid anodes for high energy density all-solid-state batteries. ACS Energy Lett. 6, 1831–1838 (2021). Article CAS Google Scholar

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Lithium crystallization at solid interfaces

A long-standing open question is how electrochemically deposited lithium-ions at the interfaces with the solid-electrolytes crystalize into lithium metal. Here, using large-scale …

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Unravel crystallization kinetics of V(V) electrolytes for all …

Redox flow battery technology has received much attention as a unique approach for possible use in grid-scale energy storage. The all-vanadium redox flow battery is currently one of the most advanced battery systems because of the symmetric design of its positive and negative electrolyte solution. However, the thermal and chemical …

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Facile Dissolution–Crystallization Strategy to Achieve Rapid and ...

Modern living standards create higher demands for power, energy density, and cycling durability of the energy storage system. Lithium–sulfur batteries are extensively studied as a propitious energy storage system because of their high theoretical specific capacity of 1675 mAh g –1 and At the same time, the volume expansion of sulfur …

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Basic scientific problems of nickel rich cathode materials for Li-ion battery: Regulation and mechanism for crystallization …

The nickel-rich lithium transition metal oxide cathode is an ideal high-energy power battery material due to its high capacity and high working voltage. Its performance is mainly affected by the structure, morphology, particle size and other factors of its hydroxide precursor. The spherical hydroxide precursor with controllable …

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Tailoring the Surface of Natural Graphite with Functional Metal Oxides via Facile Crystallization for Lithium-Ion Batteries

Graphite is the most popular anode material for lithium-ion batteries (LIBs) owing to its high reversibility and stable cycling performance. With the rapid growth of the global electric vehicle (EV) market, it has become necessary to improve the quick-charge performance of graphite to reduce the charging time of LIBs. Therefore, from a structural viewpoint, it is …

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Selective crystallization with preferred lithium-ion storage …

Lithium-ion batteries are supposed to be a key method to make a more efficient use of energy. In the past decade, nanostructured electrode materials have been extensively studied and have presented the opportunity to achieve superior performance for the next-generation batteries which require higher energy and power densities and …

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Crystallinity of Silicon Nanoparticles: Direct Influence on the Electrochemical Performance of Lithium Ion Battery …

Rechargeable Li-ion batteries (LIBs) offer a great energy storage solution for clean transportation, local energy storage systems, portable power and electronic devices. 1, 2 However, the increasing demands in such applications require new materials which can deliver high energy densities, higher capacities and longer cycle life compared …

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Elevating cycle stability of Ni-rich NCM811 cathode via single ...

Nickel-rich layered oxide LiNi 0.8 Co 0.1 Mn 0.1 O 2 (NCM811), as an attractive next-generation cathode material for lithium-ion batteries, still encounters grievously poor cycling stability triggered by irreversible phase transition in the layered structure and side reactions at the particle surface. Herein, a straightforward sol-gel …

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Cathode materials for lithium-sulfur battery: a review

Keywords Lithium-sulfur battery · Lithium polysulfide · Shuttle effect · Cathode · Sulfur · Composite Introduction Various types of new energy storage technologies such as multi-ion batteries, sodium-ion batteries, metal-air batteries, ultra-capacitors, all-solid

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Achieving a smart thermal management for lithium-ion batteries …

This paper developed a novel electrically-controlled crystallization electrode based on calcium chloride hexahydrate (CCH) (ECE-CCH) by melting …

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Reducing crystallinity in solid polymer electrolytes for lithium-metal batteries via statistical copolymerization …

Reducing crystallinity in solid polymer electrolytes for ...

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Comparative Analysis of Li-Ion Batteries with Carbonate-Based …

5 · Interestingly, when a battery is operating, some of the lithium ions are preferentially inserted or extracted from the electrode due to the uneven charge transfer …

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Asymmetric Solvents Regulated Crystallization‐Limited …

A novel asymmetric solvents regulated crystallization limitation strategy is developed to lower electrolyte operation temperature windows for lithium metal batteries. …

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Towards high-energy-density lithium-ion batteries: Strategies for developing high-capacity lithium …

Herein, we summarize various strategies for improving performances of layered lithium-rich cathode materials for next-generation high-energy-density lithium-ion batteries. These include surface engineering, elemental doping, composition optimization, structure engineering and electrolyte additives, with emphasis on the effect and functional …

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Reducing nickel-cobalt hydroxide crystallization for optimal nickel-zinc battery …

Reducing nickel-cobalt hydroxide crystallization for optimal ...

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Sulfur crystallization in the cathode of lithium-sulfur battery during ...

DOI: 10.1016/j.mtener.2020.100566 Corpus ID: 226315643; Sulfur crystallization in the cathode of lithium-sulfur battery during the charging process: A possible alternative to reduce the shuttle effect

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Achieving a smart thermal management for lithium-ion batteries …

@article{Lu2024AchievingAS, title={Achieving a smart thermal management for lithium-ion batteries by electrically-controlled crystallization of supercooled calcium chloride hexahydrate solution}, author={Fenglian Lu and Weiye Chen and Shuzhi Hu and Lei Chen and Swellam W. Sharshir and Chuanshuai Dong and Lizhi Zhang}, journal={Applied …

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