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徐立强-山东大学化学与化工学院

oxyborate nanorods as promising anodes for lithium ion batteries, Aihua Li, LiqiangXu*,

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A novel health indicator for on-line lithium-ion batteries

Semantic Scholar extracted view of "A novel health indicator for on-line lithium-ion batteries remaining useful life prediction" by Yapeng Zhou et al. Skip to search form Skip to main content Skip to account menu. Semantic Scholar''s Logo . Search 222,613,451 papers from all fields of science. Search. Sign In Create Free Account. DOI:

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熵稳定化与快速动力学优化全固态锂电池界面

本研究提出了一种创新策略,通过结合热力学和动力学原理,构建了一种高稳定性的正极-电解质界面,有效提升了全固态锂电池(ASSLBs)中基于石榴石型固态电解质(SSEs)如Li6.4La3Zr1.4Ta0.6O12(LLZTO)的性能。 利用超快速高温烧结(UHS)技术,实现了高熵阳离子无序岩盐正极(HE-DRXs)前驱体在致密LLZTO陶瓷片上的快速原位相形成

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徐立强-山东大学化学与化工学院

oxyborate nanorods as promising anodes for lithium ion batteries, Aihua Li, LiqiangXu*, ShouliLi, Yanyan He, Ranran Zhang and Yanjun Zhai, Nano Research 2015,8(2): 554–565.

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Remaining useful life prediction of lithium-ion battery using a

Remaining Useful Life (RUL) prediction of lithium-ion batteries is critically vital to ensure the safety and reliability of EVs. Because of the complex aging mechanism, accurate prediction of RUL with traditional methods always requires a large number of data, it is hard for traditional methods to guarantee the prediction accuracy when useful data are insufficient.

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通过熵稳定和快速动力学最大限度地提高全固态锂电池的界面稳定

在这项研究中,我们通过超快高温烧结(UHS)实现了高熵阳离子无序岩盐正极(HE-DRX)

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然然锂电公司 致力打造全国新能源换电高端连锁品牌,配套智能换

然然锂电公司 致力打造全国新能源换电高端连锁品牌,配套智能换电柜,电

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72V 40Ah-Shenzhen Ranran power Electronic Co., Ltd

Shenzhen ran Electronic Co., Ltd. is a private innovative technology company specializing in

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锰掺杂磷酸钒钠正极材料储钠性能研究,Battery Energy

Na +超离子导体 (NASICON) 结构的 Na 4 VMn (PO 4 ) 3 (NVMP) 通过用成本较低的 Mn 代替 V 在 2.5–3.8 V 下具有稳定的循环性能,但当进一步将电压扩大到 2.5–4.2 时容量会快速衰减V,由于不太稳定的 V 4+ /V 5+氧化还原对。 在此,为了稳定V 4+ /V 5+偶联并提高可逆性,比较了一系列具有不同V/Mn比的碳包覆NVMP(NVMP@C),其中,Na 3.25 V 1.75 Mn 0.25 ( PO 4 ) 3 @C

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通过熵稳定和快速动力学最大限度地提高全固态锂电池的界面稳定

通过熵稳定和快速动力学最大限度地提高全固态锂电池的界面稳定性 Nature Communications ( IF 14.7) Pub Date : 2024-08-23, DOI: 10.1038/s41467-024-51123-0

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锰掺杂磷酸钒钠正极材料储钠性能研究,Battery Energy

Na +超离子导体 (NASICON) 结构的 Na 4 VMn (PO 4 ) 3 (NVMP) 通过用成本较低的 Mn 代替 V

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Remaining useful life prediction of lithium‐ion battery using a

Remaining useful life (RUL) prediction plays a significant role in the health

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Tadiran Batteries

Tadiran lithium batteries: The power behind wireless devices Nearly 50 years ago, Tadiran pioneered the lithium thionyl chloride (LiSOCl 2) battery for remote wireless applications. As the industry leader, Tadiran is dedicated to delivering ultra-long-life power for many different applications. READ MORE . Beware of Imitators: Low Self-Discharge Extends

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A P2/O3 biphasic cathode material with highly

Batteries based on sodium layered transition metal oxides are a promising

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通过熵稳定和快速动力学最大限度地提高全固态锂电池的界面稳定

在这项研究中,我们通过超快高温烧结(UHS)实现了高熵阳离子无序岩盐正极(HE-DRX)和LLZTO之间的热力学相容性和充分的物理接触。 该方法构建了高度稳定的正极|电解质界面,在25℃时将界面电阻降低至31.6 Ω·cm 2,比LiCoO 2 | 降低了700倍。 LLZTO 接口。 此外,保形且紧密的 HE-DRX | LLZTO 固态界面避免了 HE-DRX 在液体电解质中观察到的过渡金属迁移问

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High energy power battery | lithium ion battery | battery

Shenzhen ran Electronic Co., Ltd. is a private innovative technology company specializing in research and development, manufacturing and sales of lithium-ion series batteries. Professional manufacturer of high energy power battery and lithium ion

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High‐Entropy and Multiphase Cathode Materials for Sodium‐Ion Batteries

Cycling stability is the biggest challenge for cathodes of sodium-ion batteries (SIBs), which is directly affected by the structure design. Herein, the combination of high-entropy (HE) and multiphase structure is demonstrated to be helpful for maintaining the structure and improving the cycling stability. In the Ni/Mn/Cu/Ti/Sn five

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72V 40Ah-Shenzhen Ranran power Electronic Co., Ltd

Shenzhen ran Electronic Co., Ltd. is a private innovative technology company specializing in research and development, manufacturing and sales of lithium-ion series batteries. Professional manufacturer of high energy power battery and lithium ion battery Tel :0769-89392689

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A P2/O3 biphasic cathode material with highly

Batteries based on sodium layered transition metal oxides are a promising alternative to current state-of-the-art lithium-ion systems for large-scale energy storage, resulting in recent intensive Expand

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熵稳定化与快速动力学优化全固态锂电池界面

本研究提出了一种创新策略,通过结合热力学和动力学原理,构建了一种高稳定性的正极-电解质界面,有效提升了全固态锂电池(ASSLBs)中基于石榴石型固态电解质(SSEs)如Li6.4La3Zr1.4Ta0.6O12(LLZTO)的性

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Assessment of the lifecycle carbon emission and energy

Lithium-ion power batteries and household batteries are very different in battery structure, capacity, specific energy and discharge power. An ordinary household battery is a primary battery with lithium metal or alloy as cathode material and a non-aqueous electrolyte solution. In contrast, a rechargeable lithium-ion battery is a secondary

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Remaining useful life prediction of lithium‐ion battery using a

Remaining useful life (RUL) prediction plays a significant role in the health prognostic of lithium-ion batteries (LIBs). The capacity or internal resistance is commonly used to quantify degradation process and predict RUL of LIB, but those two indicators are difficult to be obtained due to complex operational conditions and high

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How Are Lithium Batteries Made? A Comprehensive Guide

Forklift batteries are mainly divided into lead-acid batteries and lithium batteries. According to the survey, the global forklift battery market size will be approximately US$2.399 billion in 2023 and is expected to reach US$4.107 billion

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Ranran Zhang''s research works | Shandong University, Jinan (SDU)

Ranran Zhang''s 4 research works with 171 citations and 370 reads, including: One-dimensional manganese borate hydroxide nanorods and the corresponding manganese oxyborate nanorods as promising

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Are solid-state batteries absolutely more environmentally friendly

All solid state lithium batteries are composed of nickel manganese cobalt oxide positive electrode, Li 1.3 Al 0.3 Ti 1.7 (PO 4) 3 (LATP) solid electrolyte, lithium metal negative electrode, positive and negative electrode caps, and gaskets. The positive and negative electrode materials of LIB are the same as those of all solid state batteries. The results indicate that in

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Maximizing interface stability in all-solid-state lithium batteries

The positive electrode|electrolyte interface plays an important role in all-solid-state Li batteries (ASSLBs) based on garnet-type solid-state electrolytes (SSEs) like Li 6.4 La 3 Zr 1.4 Ta 0.6 O 12 (LLZTO). However, the trade-off between solid-solid contact and chemical stability leads to a poor positive electrode|electrolyte interface and cycle performance.

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High energy power battery | lithium ion battery | battery

Shenzhen RanRan power Electronic Co., Ltd. is a private innovative

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High energy power battery | lithium ion battery | battery

Shenzhen RanRan power Electronic Co., Ltd. is a private innovative technology company specializing in research and development, manufacturing and sales of lithium-ion series batteries. Main products of the company

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然然锂电公司 致力打造全国新能源换电高端连锁品牌,配套智能换

然然锂电公司 致力打造全国新能源换电高端连锁品牌,配套智能换电柜,电池可批发、可出租、48伏、60伏、72伏40安、50安、60安、100安,带你进入锂电换电行业. 全国诚招合作伙伴. 欢迎咨询15118287257 - 抖音. 谁是百元机械键盘的黑马? 不到百元预算,一款满足你需求的三模机械键盘,如此高性价比,上手便知有没有! 客制化键盘. 不会用AI工具引流获

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High‐Entropy and Multiphase Cathode Materials for

Cycling stability is the biggest challenge for cathodes of sodium-ion batteries (SIBs), which is directly affected by the structure design. Herein, the combination of high-entropy (HE) and multiphase structure is demonstrated to

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