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Sodium-ion batteries (SIBs) are promising alternatives to lithium-ion batteries, yet carbon-based anodes suffer from capacity fading and severe performance degradation at low temperatures due to increased interfacial impedance and sluggish ion transport. Herei…
pubmed
Jing H, Zhang X, Wang X, Wei F 等
2026 Jul 27
置信度 0.82
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In the present study, a green delamination strategy is proposed for the efficient recovery of aluminium foil (AF) and cathode active materials (CAM) from spent lithium-ion batteries (LIBs) using a citric acid-based system under microwave irradiation (MI). The …
pubmed
Singh U, Pant D, Giri A, Kumar PV
2026 Jul 30
置信度 0.82
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Accurate prediction of Remaining Useful Life (RUL) is critical for predictive maintenance and minimizing downtime in industrial systems. This paper presents a cross-domain deep learning framework based on a hybrid Convolutional Neural Network-Bidirectional Lon…
pubmed
Saha S, Pervaiz MA, Rahman MS, Hasan R 等
2026
置信度 0.82
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Aqueous zinc batteries hold great promise for large-scale energy storage due to their high energy density, safety, and cost-effectiveness. However, the intrinsic thermodynamic instability of zinc drives inevitable HER, leading to interfacial accumulation of OH…
pubmed
Liu Q, Chen Y, Lu J, Zhuge X 等
2026 Jul 31
置信度 0.82
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Hydroborate solid electrolytes are attracting increasing attention as alternatives to argyrodite electrolytes for all-solid-state lithium and sodium batteries. In this work, we first summarize recent progress in mixed-anion closo -hydroborate and closo -hydroc…
pubmed
Braun H, Remhof A, Battaglia C
2026 Jul 31
置信度 0.82
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Quasi-solid-state lithium-sulfur batteries offer a promising route to combine the high energy density of lithium-sulfur chemistry with improved interfacial stability. However, their performance is limited by the formation of resistive solid-liquid electrolyte …
pubmed
Mistry JJ, Kundu S, Yang L, Wang L 等
2026 Jul 31
置信度 0.82
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High-nickel layered oxides are the leading commercial cathode candidates for lithium-ion batteries, yet their widespread deployment remains constrained by limited cycling stability. Niobium (Nb) coating/doping has emerged as an effective mitigation strategy, b…
pubmed
Adhikari H, Tao R, Ginter C, Feng Y 等
2026 Jul 31
置信度 0.82
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Lithium- and manganese-rich layered oxides (LMR) are promising cathodes for next-generation lithium-ion batteries owing to their high capacity and low cost. However, severe capacity fading and voltage decay caused by irreversible lattice-oxygen loss remain maj…
pubmed
Yang C, Ma S, Chang A, Wang D 等
2026 Jul 31
置信度 0.82
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Interface engineering that simultaneously targets the silicon particle surface and the electrode-level interfaces among silicon particles, binders, and conductive additives is a key direction for addressing the large volume expansion (∼300%) of silicon …
pubmed
Wang S, Xue L, Zhang C, Wang F 等
2026 Jul 31
置信度 0.82
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Silicon anodes, despite their high theoretical capacity, face critical challenges such as severe volume expansion (> 300%), sluggish reaction kinetics, and unstable solid electrolyte interphase (SEI) formation. Herein, we report a hierarchical Si@C/N,S@CNT …
pubmed
Li D, Yang H, Gao H, Huang Z 等
2026 Jul 31
置信度 0.82
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Triblock copolymers consisting of poly-(ethylene oxide) (PEO) and poly-(styrene oxide) (PSO), i.e., PSO- b -PEO- b -PSO (EGES), are synthesized by a one-pot organocatalytic approach and used as plasticizers to refine PEO-based solid polymer electrolytes. The h…
pubmed
Zhu H, Zhao C, Sun D, Yu S 等
2026 Jul 28
置信度 0.82
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Small-dose electrolyte additives are widely used to enhance battery performance, yet rational additive selection for the stabilization of lithium metal (Li°) electrodes remains challenging. Coulombic efficiency (CE) measurements in asymmetric Li°||Cu…
pubmed
Wang Q, Yang J, Li P, Zhao K 等
2026 Jul 31
置信度 0.82
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Leveraging the high-potential Cl 2 /LiCl redox couple (∼3.6 V), rechargeable Li-Cl 2 batteries hold compelling promise for next-generation energy storage. However, their practical viability is severely impeded by poor Cl 2 retention and sluggish convers…
pubmed
Xie M, Jiang K, Tan X, Xie X 等
2026 Jul 31
置信度 0.82
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The growing demand for high energy density electrochemical energy storage necessitates energy vectors that maximize the number of electrons transferred per formula unit of active material. Herein, we introduce electrochemically coupled oxygen atom transfer (OA…
pubmed
Baumgärtner JF, Vijay A, Klimpel M, Chernyshov D 等
2026 Jul 29
置信度 0.82
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With the rapid growth in energy demand, designing a novel hybrid battery system has become increasingly important. It is critical to reveal the coupling mechanisms of intercalation-conversion hybrid cathodes and provide an in-depth understanding of structure-p…
pubmed
Tian JX, Chen H, Shen ZZ, Zhang YZ 等
2026 Jul 29
置信度 0.82
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Global interest in efficient recycling methods is growing due to the increasing reliance on lithium-ion batteries and the scarcity of critical raw materials. Despite their importance, current battery recycling technologies remain underdeveloped. Recycling is e…
pubmed
Abdollahi Darestani P, Reig M, Valderrama C
2026 Jul 30
置信度 0.82
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As pressures on the water-energy-resource nexus intensify, capacitive deionization (CDI) is increasingly evolving from a conventional desalination technology into a platform for selective resource recovery. However, a systematic understanding of its developmen…
pubmed
Gong H, Zhang X, Song J, Wang B 等
2026 Jul 30
置信度 0.82
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Lithium-rich manganese-based (LRM) cathode materials are promising for high-energy-density batteries due to their high specific capacity. However, their high operating voltage (4.8 V vs. Li/Li + ) compromises cycling stability in conventional carbonate-ba…
pubmed
Ma Y, Qing S, Liu H, Wang H 等
2026 Jul 30
置信度 0.82
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Developing cathodes that simultaneously deliver high capacity, superior rate capability, and long-term cycling stability remains a major challenge in lithium-ion batteries. Here, we report a high-performance textile cathode constructed via interfacial interact…
pubmed
Bok J, Ahn J, Park B, Nam D 等
2026 Jul 30
置信度 0.82
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In this study, a crumpled heterostructured composite composed of Si nanoparticles (NPs) combined with reduced graphene oxide (rGO), MoS 2 , and Ti 3 C 2 T x MXene (Si@rGO/MoS 2 /MXene crumpled composite, SGMM-CC) is developed as a robust conductive matrix for …
pubmed
Lee M, Park JH, Paek SM, Jung BM
2026 Jul 30
置信度 0.82
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Lithium argyrodite solid electrolytes are promising for all-solid-state batteries due to their high ionic conductivity and low elastic modulus. However, poor chemical stability in humid conditions remains a major hurdle towards large-scale practical implementa…
pubmed
Gautam A, Zhou R, Lavrinenko AK, Al-Kutubi H 等
2026 Jul 30
置信度 0.82
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Solid polymer electrolytes (SPEs) hold great promise for next-generation high-safety lithium batteries, yet their development is fundamentally constrained by the inherent dilemma of poor ion transport and unstable electrode-electrolyte interfaces. To address t…
pubmed
Guan J, Zhang Y, Cao Y, Zhou Y 等
2026 Jul 30
置信度 0.82
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Homonuclear diatomic catalysts (DACs) show potential for accelerating polysulfide conversion and suppressing the shuttle effect in Li-S batteries due to favorable energy-level matching. However, their intrinsic symmetric electronic structure restricts intermet…
pubmed
Yuan J, Wang P, Wang Y, Jiang T 等
2026 Jul 30
置信度 0.82
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Achieving higher energy density in lithium-ion batteries has drawn significant attention to Li-rich layered oxide cathodes owing to their exceptional specific capacity and high operating voltage. Here, we synthesize Co-free hierarchical microsphere-like Li 1.2…
pubmed
Ramesh P, Therese HA
2026 Jul 29
置信度 0.82
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High-voltage lithium metal batteries (LMBs) represent the most promising route to next-generation high-energy-density energy storage, yet their practical deployment is severely bottlenecked by conventional ethylene carbonate (EC)-based electrolytes, which suff…
pubmed
Chu F, Wang L, Xue X, Xuan Y 等
2026 Jul 13
置信度 0.82
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Cathode materials remain the primary determinant of the energy density, voltage output, lifetime, safety, and cost of lithium-ion batteries. Although conventional reviews usually classify cathodes according to crystal structures or chemical compositions, pract…
pubmed
Liu X, Li F, Yin B, Wang G 等
2026
置信度 0.82
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A chemically stable and potentially scalable prelithiation strategy is developed to improve the initial electrochemical utilization of silicon-hard carbon composite anodes under chemically mild conditions. Chemical prelithiation is widely used to compensate fo…
pubmed
Jeon H, Lee J, Choi J
2026 Jul 30
置信度 0.82
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pubmed
Mi J, Yang J, Chen L, Cui W 等
2026 Jul 29
置信度 0.82
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Although graphite is the most widely used negative electrode material in lithium-ion batteries 1 , its lithium insertion processes and associated dynamics, particularly those of the dilute stages, remain poorly understood. A fundamental understanding of how sy…
pubmed
Han J, Phillips GS, Merryweather AJ, Lim J 等
2026 Jul 29
置信度 0.82
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Understanding the electrical double layer in lithium-ion battery electrolytes is fundamental to improving interfacial processes that govern battery performance and lifetime. However, the microstructure and dynamics of the electrical double layer in highly conc…
pubmed
Yin X, Wang F, Zhang Z, Zhou RY 等
2026 Jul 29
置信度 0.82
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Emerging contact-based and immersion-based piezoelectric ultrasonic techniques encounter challenges in achieving accurate battery state monitoring under high-rate operations, where temperature fluctuations distort ultrasound and couplant contamination compromi…
pubmed
Lv G, Sun C, Zhao P, Huang K 等
2026 Jul 31
置信度 0.82
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Ni-rich cathode active materials (CAMs) paired with argyrodite solid electrolytes (SEs) such as Li 6 PS 5 Cl (LPSCl) are promising for high-energy density and inherently safer all-solid-state batteries (ASSBs). However, severe (electro-)chemical incompatibilit…
pubmed
Ramasamy HV, Wullich RN, Lelotte B, Siller V 等
2026 Jul 24
置信度 0.82
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Organometallic macrocyclic molecules have shown great potential to accelerate the reaction kinetics in Li-S batteries. However, it is still challenging to precisely tailor the microenvironment of metal sites and enhance its intrinsic reactivity. Herein, inspir…
pubmed
Zhao Y, Shang Z, Yan T, Zhong H 等
2026 Jul 29
置信度 0.82
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The development of fast-charging lithium metal batteries (LMBs) is hindered by uncontrolled Li dendrite growth, unstable solid electrolyte interphase (SEI), and sluggish desolvation kinetics. Herein, we present a rational molecular design strategy for hybrid s…
pubmed
Zhang H, Chen PP, Zhang ST, Dong SC 等
2026 Jul 29
置信度 0.82
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Lithium-Sulfur batteries (LSBs) face challenges like the polysulfide shuttle effect and sluggish kinetics. To address the above issues, we develop a novel composite cathode (NS-NiO@HyC) via a bio-inspired approach. Using hyphae-derived carbon (HyC) as a conduc…
pubmed
Cao F, Xian C, Yang T, Zhang Y 等
2026 Jul 29
置信度 0.82
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Fluorine additives in lithium metal batteries are often correlated with improved performance, yet lead to challenges associated with cost, health, and safety. In this work, we formulate a series of electrolytes that allow us to interrogate the physical and ele…
pubmed
Metlay AS, Park S, Bracco SC, Marbella LE
2026 Jul 29
置信度 0.82
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A boron- and fluorine-containing boronate ester additive, BTFPD, partially modulates Li + solvation and promotes dual LiF/borate-rich interphases, enabling Li‖Li cycling for over 500 h and 4.6 V Li‖NCM811 cells with 90% retention after 200 cycles…
pubmed
Zhang Z, Cao H, Wang Y, Fu C 等
2026 Jul 29
置信度 0.82
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Lithium (Li) metal batteries (LMBs) exhibit a promising paradigm for their high energy density. However, their realization is still hindered by the inherent instability and excess of Li metal. Herein, we rationally design and synthesize ferrous pyrophosphate h…
pubmed
Yu C, Yang J, Luan D, Lou XWD
2026 Jul 28
置信度 0.82
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Spent LiCoO 2 (S-LCO) cathode materials from retired lithium-ion batteries (LIBs) pose severe environmental threats and represent a noteworthy waste of strategic resources. The emerging regeneration/upcycling approach for S-LCO mainly adopts solid-state treatm…
pubmed
Jiang M, Xing C, Yang Z, Chen L 等
2026 Jul 28
置信度 0.82
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Sodium metal batteries (SMBs) are regarded as compelling energy storage systems owing to their high theoretical capacity and the abundance of sodium (Na). However, SMBs with cycling stability under extreme climatic conditions remain highly challenging, due to …
pubmed
Chen J, Shang J, Chang Q, Wang L 等
2026 Jul 25
置信度 0.82
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The development of high-efficiency cathode catalysts is crucial for advancing photo-assisted non-aqueous lithium-oxygen (Li-O 2 ) batteries, which leverage solar energy to reduce the high overpotential for driving oxygen reduction and evolution processes. Howe…
pubmed
Sun Z, Tohtayeva J, Liu W, Liu Y 等
2026 Jul 28
置信度 0.82
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Fluorination of carbonate electrolytes is an effective strategy for improving the stability of high-voltage lithium metal batteries (LMBs). However, highly fluorinated carbonate solvents often suffer from limited lithium-salt solubility, increased cost, and po…
pubmed
Xie W, Zhang Y, Song X, Yu Q 等
2026 Jul 14
置信度 0.82
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Lithium-sulfur (Li-S) batteries have emerged as promising next-generation energy storage systems due to their exceptional energy density and specific capacity. However, safety challenges hinder commercialization, including the low flash point of ether-based el…
pubmed
Zeng T, Li J, Liu F, Dou X 等
2026 Jul 20
置信度 0.82
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Gel polymer electrolytes typically suffer from low ionic conductivity, limited oxidative stability, and thermal runaway. Nitrate additives can be beneficial, but they are limited by poor solubility. Herein, sandwich-structured ionic liquid gel electrolyte memb…
pubmed
Wang R, Cheng H, Li J, Shen G 等
2026 Jul 14
置信度 0.82
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In this study, the mechanical response of MoO 3 thin-film cathodes deposited on aluminum substrates was systematically investigated using nanoindentation techniques under an inert atmosphere. Both amorphous and crystalline phases were examined across non-, par…
pubmed
Ugi D, Shankar LS, Radnóczi GZ, Ispánovity PD 等
2026 Jul 14
置信度 0.82
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The renewed interest in LiFePO 4 (LFP) as a cost-effective and intrinsically safe cathode material for electric vehicles and large-scale energy storage systems has intensified efforts to overcome its limited electronic and ionic transport properties. Although …
pubmed
Cho JW, Park YJ
2026 Jul 14
置信度 0.82
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Lithium sulfide (Li 2 S) is a critical cathode material for high-energy-density lithium sulfur batteries and an indispensable precursor for sulfide solid electrolytes. Traditional high-temperature carbothermal reduction remains energy-intensive and carbon-heav…
pubmed
Peng A, Qi X, Zhu L, Zhan N 等
2026 Jul 28
置信度 0.82
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A crucial step toward widespread electrochemical energy storage is the design of lithium-sulfur batteries (LSBs) that integrate high energy density with robust safety. Realizing practical LSBs demands an electrolyte that possesses high interfacial stability, e…
pubmed
Mao R, Pei M, Li B, Jiang W 等
2026 Jul 28
置信度 0.82
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All-solid-state lithium-ion batteries (ASSLIBs) have attracted considerable attention as next-generation energy storage devices owing to their safety and high-energy density. The electronic transport properties of cathode composites employing inorganic solid e…
pubmed
Gamo H, Maeda Y, Yamagishi Y, Kiyobayashi T 等
2026 Jul 28
置信度 0.82
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Solid-state electrolytes are key materials for all-solid-state lithium batteries (ASSLBs) due to their high safety, thermal stability, and ability to suppress lithium dendrite growth. Among them, Li 1 . 3 Al 0 . 3 Ti 1 . 7 (PO 4 ) 3 (LATP), a NASICON-type…
pubmed
Chen CC, Hou AY, Huang HJ, Wang CH 等
2026 Jul 28
置信度 0.82
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The commercialization of Li anode is impeded by uncontrolled dendrite growth and associated safety hazards. Controlling the interfacial electric field on the Li anode is paramount to inhibiting Li dendrite growth. Herein, we propose a dielectric-interlayer str…
pubmed
Zhao X, Shi X, Zhang H, Chang J 等
2026 Aug 14
置信度 0.82
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The shift toward sustainable energy technologies requires materials with high performance and environmental compatibility. Traditional electrode and storage materials made of synthetic silica are usually constrained by high manufacturing costs and energy-inten…
pubmed
Kumar A, Dhali S, Malik HK, Malik A
2026 Aug 14
置信度 0.82
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Anode-free Li metal batteries (AFLMBs) are excellent candidates for electric vehicles and low-altitude aircrafts because of their high energy density. However, the industrialization of AFLMBs remains limited by the poor reversibility of Li + deposition and str…
pubmed
Wu H, Liu F, Ma W, Huang X 等
2026 Jul 28
置信度 0.82
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Halide superionic conductors are among the most promising solid-state electrolytes for all-solid-state lithium-ion batteries. Elucidating the basic structural principles that govern ion transport in them will help improve the ionic conductivity or accelerate t…
pubmed
Bi L, Sun T, Liao J
2026 Jul 28
置信度 0.82
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High volumetric energy, flexible, and stable lithium (Li) metal batteries have received unprecedented attention in recent years because of their high demand in future robotics, wearable electronics, and electric vehicles. However, their development has been la…
pubmed
Wen S, Wang C, Li X, Ding Y 等
2026 Jul 28
置信度 0.82
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The growing demand for sustainable energy has intensified efforts to develop safer, high-performance batteries. Lithium metal offers exceptional energy density but its use is limited by safety concerns and short cycle life. Electrolyte additives such as LiNO 3…
pubmed
Fritzke JB, Stockham M, Juramy M, Fitch SDS 等
2026 Jul 28
置信度 0.82
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Low-temperature operational reliability remains a critical bottleneck for all-solid-state batteries (ASSBs). Polyethylene oxide (PEO)-based solid-state electrolytes (SSEs), the most widely studied SSE system, typically exhibit ionic conductivities as low as 10…
pubmed
Sang Y, Hu L, Li Y, Song K 等
2026 Jul 28
置信度 0.82
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The commercialization of Li metal anodes in all-solid-state lithium batteries (ASSLBs) is hindered by uncontrollable dendritic growth and nonuniform deposition during cycling. Here, we report a facile metal displacement strategy to construct a Li-Ga alloy anod…
pubmed
Lu J, Xue G, Hu C, Zhang Y 等
2026 Jul 23
置信度 0.82
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openalex
Dingchang Lin, Yayuan Liu, Yi Cui
2017-03-01
置信度 0.72
AnodeNanotechnologyLithium metalElectronicsLithium (medication)
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openalex
Yong Lü, Jun Chen
2020-02-12
置信度 0.72
Materials scienceLithium (medication)Process engineeringElectrodeBattery (electricity)
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Rechargeable lithium-ion batteries that use an aqueous electrolyte have been developed. Cells with LiMn(2)O(4) and VO(2)(B) as electrodes and 5 M LiNO(3) in water as the electrolyte provide a fundamentally safe and cost-effective technology that can compete wi…
openalex
Wu Li, J. R. Dahn, D. Wainwright
1994-05-20
置信度 0.72
ElectrolyteLithium (medication)Aqueous solutionNanoarchitectures for lithium-ion batteriesElectrode
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openalex
Yang‐Kook Sun, Seung‐Taek Myung, Byung-Chun Park, Jai Prakash 等
2009-03-22
置信度 0.72
CathodeMaterials scienceLithium (medication)NickelManganese
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The lithium metal battery is strongly considered to be one of the most promising candidates for high-energy-density energy storage devices in our modern and technology-based society. However, uncontrollable lithium dendrite growth induces poor cycling efficien…
openalex
Xin‐Bing Cheng, Rui Zhang, Chen‐Zi Zhao, Qiang Zhang
2017-07-28
置信度 0.72
AnodeLithium metalLithium (medication)Battery (electricity)Electrolyte
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ADVERTISEMENT RETURN TO ISSUEPREVarticleNEXTNonaqueous Liquid Electrolytes for Lithium-Based Rechargeable BatteriesKang XuKang XuElectrochemistry Branch, Sensor and Electron Devices Directorate, U.S. Army Research Laboratory, Adelphi, Maryland 20783-1197 More …
openalex
Kang Xu
2004-09-16
置信度 0.72
CitationLithium (medication)Computer scienceLithium metalElectrolyte
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openalex
Philippe Poizot, Stéphane Laruelle, Sylvie Grugeon, L. Dupont 等
2000-09-01
置信度 0.72
Lithium (medication)Materials scienceBattery (electricity)ElectrochemistryPassivation
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Lithium (Li) metal is an ideal anode material for rechargeable batteries due to its extremely high theoretical specific capacity (3860 mA h g−1), low density (0.59 g cm−3) and the lowest negative electrochemical potential (−3.040 V vs. the standard hydrogen el…
openalex
Wu Xu, Jiulin Wang, Fei Ding, Xilin Chen 等
2013-10-29
置信度 0.72
Faraday efficiencyAnodeCathodeMaterials scienceElectrochemistry
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We demonstrate a controlled growth of nitrogen-doped graphene layers by liquid precursor based chemical vapor deposition (CVD) technique. Nitrogen-doped graphene was grown directly on Cu current collectors and studied for its reversible Li-ion intercalation pr…
openalex
Arava Leela Mohana Reddy, Anchal Srivastava, Sanketh R. Gowda, Hemtej Gullapalli 等
2010-10-08
置信度 0.72
GrapheneMaterials scienceRaman spectroscopyChemical vapor depositionGraphene foam
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Nearly all high-energy density cathodes for rechargeable lithium batteries are well-ordered materials in which lithium and other cations occupy distinct sites. Cation-disordered materials are generally disregarded as cathodes because lithium diffusion tends to…
openalex
Jinhyuk Lee, Alexander Urban, Xin Li, Dong Su 等
2014-01-10
置信度 0.72
Lithium (medication)DiffusionMaterials scienceCathodePercolation (cognitive psychology)
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ADVERTISEMENT RETURN TO ISSUEPREVReviewNEXTRechargeable Lithium–Sulfur BatteriesArumugam Manthiram*, Yongzhu Fu, Sheng-Heng Chung, Chenxi Zu, and Yu-Sheng SuView Author Information Materials Science and Engineering Program and Texas Materials Institute, The Un…
openalex
Arumugam Manthiram, Yongzhu Fu, Sheng‐Heng Chung, Chenxi Zu 等
2014-07-15
置信度 0.72
CitationLibrary sciencePhoneComputer scienceWorld Wide Web
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This paper reviews the state of the art of composite polymer electrolytes (CPE) in view of their electrochemical and physical properties for the applications in lithium batteries. This review mainly encompasses on composite polymer electrolyte hosts namely pol…
openalex
A. Manuel Stephan, Kee Suk Nahm
2006-07-01
置信度 0.72
ElectrolyteAcrylonitrileMaterials scienceEthylene oxideIonic conductivity
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openalex
Jens Vetter, Petr Novák, M. R. Wagner, C. Veit 等
2005-03-16
置信度 0.72
Battery (electricity)Lithium (medication)Energy storageGravimetric analysisEnergy density
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openalex
Xiulei Ji, Kyu Tae Lee, Linda F. Nazar
2009-05-17
置信度 0.72
Carbon fibersMaterials scienceGravimetric analysisLithium (medication)Cathode
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Presented herein is a discussion of the forefront in research and development of advanced electrode materials and electrolyte solutions for the next generation of lithium ion batteries. The main challenge of the field today is in meeting the demands necessary …
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Rotem Marom, S. Francis Amalraj, Nicole Leifer, David S. Jacob 等
2011-01-01
置信度 0.72
ElectrolyteBattery (electricity)AnodeMaterials scienceCathode
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openalex
Yang‐Kook Sun, Zonghai Chen, Hyung‐Joo Noh, Dong-Ju Lee 等
2012-10-05
置信度 0.72
CathodeMaterials scienceNickelLithium (medication)Transition metal
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ADVERTISEMENT RETURN TO ISSUEPREVReviewNEXTUltimate Limits to Intercalation Reactions for Lithium BatteriesM. Stanley Whittingham*View Author Information NorthEast Center for Chemical Energy Storage, Binghamton University, 4400 Vestal Parkway East, Binghamton,…
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M. Stanley Whittingham
2014-10-29
置信度 0.72
CitationComputer scienceLibrary scienceLithium (medication)Social media
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Jang Wook Choi, Doron Aurbach
2016-03-31
置信度 0.72
Energy densityBattery (electricity)Lithium (medication)Energy storageComputer science
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openalex
Languang Lu, Xuebing Han, Jianqiu Li, Jianfeng Hua 等
2012-11-26
置信度 0.72
Battery (electricity)Reliability (semiconductor)ElectronicsComputer scienceKey (lock)
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Seung Woo Lee, Naoaki Yabuuchi, Betar M. Gallant, Shuo Chen 等
2010-06-20
置信度 0.72
ElectrodeMaterials scienceLithium (medication)Carbon nanotubeGravimetric analysis
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openalex
Gavin Harper, Roberto Sommerville, Emma Kendrick, Laura L. Driscoll 等
2019-11-06
置信度 0.72
ScrapBattery (electricity)Electric vehicleLithium (medication)Environmental science
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openalex
Long Chen, Yutao Li, Shuai-Peng Li, Li‐Zhen Fan 等
2017-12-24
置信度 0.72
Materials scienceCeramicPolymerElectrolyteFaraday efficiency
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Ever-increasing demand for better batteries has set extraordinarily high standards for electrolyte materials, which are far beyond the realm of a conventional nonaqueous electrolyte design. Superconcentrated (or highly concentrated) solutions are emerging as a…
openalex
Yuki Yamada, Atsuo Yamada
2015-01-01
置信度 0.72
ElectrolyteLithium (medication)Battery (electricity)Lithium metalMaterials science
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Sulfur has a high specific capacity of 1673 mAh/g as lithium battery cathodes, but its rapid capacity fading due to polysulfides dissolution presents a significant challenge for practical applications. Here we report a hollow carbon nanofiber-encapsulated sulf…
openalex
Guangyuan Zheng, Yuan Yang, J. Judy, Seung Sae Hong 等
2011-09-20
置信度 0.72
Materials scienceNanofiberCarbon nanofiberFaraday efficiencyCarbonization
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openalex
Rangeet Bhattacharyya, Baris Key, Hailong Chen, Adam S. Best 等
2010-05-16
置信度 0.72
Lithium (medication)Materials scienceElectrodeGravimetric analysisElectrochemistry
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A solid-state high-voltage (5 V) lithium battery is demonstrated to deliver a cycle life of 10 000 with 90% capacity retention. The solid electrolyte enables the use of high-voltage cathodes and Li anodes with minimum side reactions, leading to a high Coulombi…
openalex
Juchuan Li, Cheng Ma, Miaofang Chi, Chengdu Liang 等
2014-10-14
置信度 0.72
Key (lock)ElectrolyteAnodeFaraday efficiencyMaterials science
-
Lithium-ion batteries have aided the portable electronics revolution for nearly three decades. They are now enabling vehicle electrification and beginning to enter the utility industry. The emergence and dominance of lithium-ion batteries are due to their high…
openalex
Arumugam Manthiram
2020-03-25
置信度 0.72
CathodeBattery (electricity)NanotechnologyEngineering physicsLithium (medication)
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openalex
Xuning Feng, Minggao Ouyang, Xiang Liu, Languang Lu 等
2017-05-30
置信度 0.72
Thermal runawayMaterials scienceBattery (electricity)Lithium (medication)Nuclear engineering
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Rechargeable lithium batteries represent one of the most important developments in energy storage for 100 years, with the potential to address the key problem of global warming. However, their ability to store energy is limited by the quantity of lithium that …
openalex
Takeshi Ogasawara, Aurélie Débart, Michael Holzapfel, Petr Novák 等
2006-01-05
置信度 0.72
ChemistryElectrodeLithium (medication)Intercalation (chemistry)Battery (electricity)
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Nanostructured materials offer the possibility to make use of small transport lengths and small separation distances almost like in fluids, but unlike fluids, the higher structural stability of the solid state can be taken advantage of. Recent findings in the …
openalex
J. Jamnik, Joachim Maier
2003-01-01
置信度 0.72
Mesoscopic physicsLithium (medication)Context (archaeology)Materials scienceBattery (electricity)
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Abstract Solid composite electrolytes (SCEs) that combine the advantages of solid polymer electrolytes (SPEs) and inorganic ceramic electrolytes (ICEs) present acceptable ionic conductivity, high mechanical strength, and favorable interfacial contact with elec…
openalex
Li Song, Shiqi Zhang, Lu Shen, Qi Liu 等
2020-01-21
置信度 0.72
Materials scienceIonic conductivityElectrolyteAnodeCeramic
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openalex
Michael J. Lee, Junghun Han, Kyungbin Lee, Young Jun Lee 等
2022-01-12
置信度 0.72
ElectrolyteMaterials scienceElastomerAnodeLithium (medication)
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Abstract Solid polymer electrolytes (SPEs) have aroused wide interest in lithium batteries because of their sufficient mechanical properties, superior safety performances, and excellent processability. However, ionic conductivity and high‐voltage compatibility…
openalex
Qian Zhou, Jun Ma, Shanmu Dong, Xianfeng Li 等
2019-08-22
置信度 0.72
Polymer electrolytesMaterials scienceEnergy densityLithium (medication)Polymer
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openalex
Gerbrand Ceder, Yet‐Ming Chiang, Donald R. Sadoway, Mehmet Kadri Aydınol 等
1998-04-01
置信度 0.72
Lithium (medication)Transition metalCathodeMaterials scienceBattery (electricity)
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A critical overview of the latest developments in the lithium ion batteries technology is reported. We first describe the evolution in the electrolyte area with particular attention to ionic liquids, discussing the expected application of these room temperatur…
openalex
Bruno Scrosati, Jusef Hassoun, Yang‐Kook Sun
2011-01-01
置信度 0.72
Lithium (medication)AnodeElectrolyteNanotechnologyEnergy storage
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openalex
Jun Liu, Zhenan Bao, Yi Cui, Eric J. Dufek 等
2019-02-25
置信度 0.72
AnodeElectrolyteCathodeEnergy storageMaterials science
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The lithium−air system captured worldwide attention in 2009 as a possible battery for electric vehicle propulsion applications. If successfully developed, this battery could provide an energy source for electric vehicles rivaling that of gasoline in terms of u…
openalex
G. Girishkumar, Bryan D. McCloskey, A. C. Luntz, Sally A. Swanson 等
2010-07-02
置信度 0.72
USableBattery (electricity)AnodeOrganic radical batteryLithium metal
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The high-rate capability of solid-state, rechargeable lithium batteries with sulfide electrolytes is significantly improved when the LiCoO2 particles are spray-coated with a Li4Ti5O12 film with a thickness of several nanometers (see figure). The power densitie…
openalex
Narumi Ohta, Kazunori Takada, Li Zhang, Ruqin Ma 等
2006-08-28
置信度 0.72
Materials scienceLithium (medication)ElectrolyteSolid-stateNanotechnology
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openalex
Gholam‐Abbas Nazri, G. Pistoia
2003-01-01
置信度 0.72
AnodeMaterials scienceElectrolyteCathodeLithium (medication)
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Abstract Lithium (Li)‐ion batteries (LIB) have governed the current worldwide rechargeable battery market due to their outstanding energy and power capability. In particular, the LIB's role in enabling electric vehicles (EVs) has been highlighted to replace th…
openalex
Sung‐Wook Kim, Dong‐Hwa Seo, Xiaohua Ma, Gerbrand Ceder 等
2012-05-14
置信度 0.72
Battery (electricity)Materials scienceLithium (medication)Nanoarchitectures for lithium-ion batteriesIon
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openalex
Jiayu Wan, Jin Xie, Xian Kong, Zhe Liu 等
2019-05-27
置信度 0.72
ElectrolyteMaterials scienceIonic conductivityNanoporousPolymer
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openalex
Bruno Scrosati
2004-02-11
置信度 0.72
Lithium (medication)ChemistryMaterials scienceNanotechnologyMedicine