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Tip of the iceberg:lithium fluoride as a solid-electrolyte-interphase component
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作者 Heng Zhang Michel Armand 《Science China Chemistry》 2026年第2期533-534,共2页
Crystallized lithium fluoride(LiF)melts at 848℃ upon heating,and evaporates subsequently at a remarkably high temperature of 1673℃,characterizing its excellent thermally stability as one of the most representative m... Crystallized lithium fluoride(LiF)melts at 848℃ upon heating,and evaporates subsequently at a remarkably high temperature of 1673℃,characterizing its excellent thermally stability as one of the most representative metal halides.The marriage between Li F and rechargeable batteries dates back to early activities related to the electrochemical properties of lithium metal(Li°)negative electrodes,in which the nonaqueous electrolytes containing fluorinated salts were generally employed,e.g.,lithium tetrafluoroborate(LiBF_(4)),lithium hexafluoroarsenate(LiAsF_(6)),lithium trifluoromethanesulfonate(CF_(3)SO_(3)Li)[1]. 展开更多
关键词 li f lithium fluoride thermally stability rechargeable batteries electrochemical properties metal halides metal halidesthe nonaqueous electrolytes containing fluorinated salts
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Confining Li^(+)Solvation in Core-Shell Metal-Organic Frameworks for Stable Lithium Metal Batteries at 100℃
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作者 Minh Hai Nguyen Jeongmin Shin +3 位作者 Mee-Ree Kim Quan Van Nguyen JinHyeok Cha Sangbaek Park 《Nano-Micro Letters》 2026年第4期718-734,共17页
The practical deployment of lithium metal batteries remains severely constrained,especially under elevated temperatures.Although metal-organic frameworks(MOFs)improve the thermal stability of liquid electrolytes by ca... The practical deployment of lithium metal batteries remains severely constrained,especially under elevated temperatures.Although metal-organic frameworks(MOFs)improve the thermal stability of liquid electrolytes by capturing them in well-ordered sub-nanopores,interparticle voids between MOF particles readily absorb liquid electrolyte,obscuring our understanding of the intrinsic role of nanopores in directing Li^(+)transport.To address this challenge,we introduce a one-dimensional(1D)MOF model architecture that eliminates interparticle effects and enables direct observation of Li^(+)solvation and de-solvation dynamics.Comparative studies of 1D HKUST-1 and ZIF-8 uncover distinct transport behaviors,supported by both experimental measurements and neural network potential-based molecular dynamics simulations.Building on these insights,we construct a hierarchical core-shell MOF architecture by integrating ZIF-8(core)and HKUST-1(shell)onto a hybrid fiber scaffold.This design harnesses the complementary strengths of both MOFs to achieve continuous ion pathways,directional Li^(+)conduction,and improved thermal and electrochemical resilience. 展开更多
关键词 Quasi-solid-state electrolyte Metal-organic frameworks li metal batteries Thermal stability lithium-ion solvation/de-solvation
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船闸式LiAlFe-LDHs/PVDF复合膜系统高效选择性提取锂离子
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作者 邓雨晨 王熠 +3 位作者 高凤凤 郝晓刚 仙运昌 赵瑞 《化工学报》 北大核心 2026年第1期470-479,共10页
针对中国盐湖卤水中镁锂比高、品位低导致的锂提取难题,本研究开发了一种高效、选择性强的船闸式离子选择性渗透(SL-ISP)系统,实现了锂资源的高效开采。以锂铝铁层状双金属氢氧化物(LiAlFe-LDHs)作为活性物质,聚偏二氟乙烯(PVDF)为黏结... 针对中国盐湖卤水中镁锂比高、品位低导致的锂提取难题,本研究开发了一种高效、选择性强的船闸式离子选择性渗透(SL-ISP)系统,实现了锂资源的高效开采。以锂铝铁层状双金属氢氧化物(LiAlFe-LDHs)作为活性物质,聚偏二氟乙烯(PVDF)为黏结剂,通过流延成型法制备了LiAlFe-LDHs/PVDF复合膜,并用于SL-ISP系统实现了Li^(+)的选择性定向提取。该复合膜制备方法简单高效,SL-ISP系统操作简单、能耗低且易于工业化生产。结果表明,在等物质的量浓度(CMg=CLi=0.05 mol·L^(-1))下,LiAlFe-LDHs/PVDF复合膜的Li+通量为0.039 mol·m^(-2)·h^(-1),Li^(+)/Mg^(2+)分离因子达到了13.44。在模拟卤水中进行了Li^(+)的选择性渗透实验,其Li^(+)渗透通量为0.036 mol·m^(-2)·h^(-1),Li^(+)/Mg^(2+)、Li^(+)/K^(+)、Li^(+)/Na^(+)和Li^(+)/Ca^(2+)分离因子分别达到了164.28、98.49、120.09和47.52。因此,将LiAlFe-LDHs/PVDF复合膜应用于SL-ISP系统具有良好的工业应用前景。 展开更多
关键词 船闸式离子选择渗透 li^(+)提取 li/Mg分离 liAlFe-LDHs/PVDF复合膜
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Oxygen-Pressure Protocol Breaking Cycle Limit of Continuously Reversible Lithium-Oxygen Batteries
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作者 Xinhang Cui Fenglong Xiao +10 位作者 Guoliang Zhang Zhangliu Tian Qingshan Bao Yanlu Li Deliang Cui Qilong Wang Feng Dang Wei Chen Haohai Yu Huaijin Zhang Gang Lian 《Nano-Micro Letters》 2026年第5期391-404,共14页
Lithium-oxygen(Li-O_(2))battery is favored among“beyond lithiumion”technologies for sustainability because of its exceptional energy density.Major impediments are the poor cycle stability and grievous capacity degra... Lithium-oxygen(Li-O_(2))battery is favored among“beyond lithiumion”technologies for sustainability because of its exceptional energy density.Major impediments are the poor cycle stability and grievous capacity degradation at high current densities.We address these issues by a“killing two birds with one stone”O_(2)-pressure protocol.It first resolves efficient O_(2) mass transport at high rates..The accelerated reaction kinetics optimizes the composition and growth pathway of discharge products.This protocol secondly achieves protection of Li anodes via densifying corrosion layers on them.Consequently,the battery delivers both ultrahigh discharge capacity(>9,000 mAh g^(-1))at 3,000 mA g^(-1) and excellent cycling stability.Under a dual-strategy effect of high-pressure O_(2) and artificial protection layers,the battery actualizes over 11-fold increase in cycle life of 5,170 h(2,585 cycles).The strategy opens avenues for advancing Li-O_(2) batteries towards practical application and confers the extension to other gas-based batteries. 展开更多
关键词 li-O_(2)batteries O_(2)pressure Cycle life li anode protection Rate performance
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Galvanostatic deposition of lithiophilic nanosized Li_(x)Sn nucleation sides and inorganic-rich@polymer dual layer for anode-free lithium metal batteries
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作者 Zehua Zhao You Seok Kang +7 位作者 Dae Ho Hong Ja Yun Heo Jinyoung Joo Cheol Ung Lee Hua Li Gaojun Jiang Jungho Yoo Jeong Gil Seo 《Journal of Energy Chemistry》 2026年第1期688-700,I0015,共14页
Anode-free lithium-metal batteries(AFLMBs)offer high energy density.However,lithium dendrite growth and interfacial instability remain critical obstacles to their commercialization.Here,lithiophilic nanosized(∼5 nm)L... Anode-free lithium-metal batteries(AFLMBs)offer high energy density.However,lithium dendrite growth and interfacial instability remain critical obstacles to their commercialization.Here,lithiophilic nanosized(∼5 nm)LixSn combined with an inorganic-rich@polymer dual-layer structure was constructed on a Cu current collector,prepared via a galvanostatic process using a dual-lithium salt electrolyte in a Cu||Cu configuration.The polymer outer layer,initiated by LixSn,reinforces the solid electrolyte interphase(SEI),providing mechanical robustness and enabling stable cycling in an ether-based electrolyte.Furthermore,the Sn and LixSn particle sizes can be effectively tuned by adjusting the galvanostatic discharge current.The nanosized LixSn significantly lowers the nucleation overpotential and creates abundant lithiophilic nucleation sites,resulting in uniform,dense Li plating/stripping.The modified Cu collector demonstrates superior performance in ether-based electrolytes,achieving over 92%capacity retention after 100 cycles at a current density of 1.5 mA cm^(−2)and an area capacity of 1.1 mAh cm^(−2).This work provides a simple,eco-friendly,and scalable approach for fabricating high-performance anode-free current collectors for AFLMBs. 展开更多
关键词 Nanosized li_(x)Sn alloy lithiophilic Anode-free lithium metal batteries Cu current collector li dendrites Higher capacity retention
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F/N interface engineering of nonflammable polymer electrolyte for wide-temperature quasi-solid-state Li metal batteries
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作者 Lisi Xu Maosheng Li +2 位作者 Anqi He Haijiao Xie Kuirong Deng 《Chinese Chemical Letters》 2026年第2期529-535,共7页
Polymer-electrolyte-based solid-state Li metal batteries with high-voltage Ni-rich cathodes are promising energy storage technologies owing to their favorable security and high energy densities.However,operating in wi... Polymer-electrolyte-based solid-state Li metal batteries with high-voltage Ni-rich cathodes are promising energy storage technologies owing to their favorable security and high energy densities.However,operating in wide temperature range and at high voltage is a tough challenge for them.Herein,F/N donating fluorinated-amide-based plasticizers regulated polymer electrolyte capable of enabling high-voltage Li||LiNi_(0.8)Co_(0.1)Mn_(0.1)O_(2)(NCM811)batteries with excellent performance in wide temperature range is developed.F/N donating fluorinated-amide-based plasticizers significantly improve ionic conductivity(1.52 mS/cm at 30℃),enhance oxidation stability(5.0 V vs.Li^(+)/Li)and fabricate robust LiF/Li_(3)N-rich electrode-electrolyte interphases,which significantly improve the interface stability of Li metal anode and NCM811 cathode.The designed polymer electrolyte is nonflammable and has excellent dimensional stability at 200℃.Capitalizing on these advantageous attributes,the Li||NCM811 cells show excellent cycle stability and rate capability from−20℃ to 60℃ at high voltages(∼4.6 V),and under high-loading full cell condition,which display impressive capacity retention of 84.4%after 1000 cycles and ultrahigh capacity of 154.8 mAh/g at 10 C.This work provides a rational design strategy of polymer electrolytes for wide-temperature high-energy solid-state Li metal batteries. 展开更多
关键词 Polymer electrolytes Solid-electrolyte interphases Fluorinated amide NCM811 li metal batteries
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Electron-Deficient Type Electride Li_(4)Al under High Pressure:Bonding Properties and Superconductivity
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作者 Daoyuan Zhang Yanliang Wei +3 位作者 Chenlong Xie Yilong Pan Zhao Liu Tian Cui 《Chinese Physics Letters》 2026年第1期142-155,共14页
High-pressure electrides,characterized by the presence of interstitial quasi-atoms(ISQs),possess unique electronic structures and physical properties,such as diverse dimensions of electride states exhibiting different... High-pressure electrides,characterized by the presence of interstitial quasi-atoms(ISQs),possess unique electronic structures and physical properties,such as diverse dimensions of electride states exhibiting different superconductivity,which has attracted significant attention.Here,we report a new electron-deficient type of electride Li_(4)Al and identify its phase transition progress with pressurization,where the internal driving force behind phase transitions,bonding characteristics,and superconducting behaviors have been revealed based on first-principles density functional theory.Through analysis of the bonding properties of electride Li_(4)Al,we demonstrate that the ISQs exhibiting increasingly covalent characteristics between Al ions play a critical role in driving the phase transition.Our electron–phonon coupling calculations indicate that all phases exhibit superconducting behaviors.Importantly,we prove that the ISQs behave as free electrons and demonstrate that the factor governing T_(c) is primarily derived from Li-p-hybridized electronic states with ISQ compositions.These electronic states are scattered by low-frequency phonons arising from mixed vibrations of Li and Al affected by ISQs to enhance electron–phonon coupling.Our study largely expands the research scope of electrides,provides new insight for understanding phase transitions,and elucidates the effects of ISQs on superconducting behavior. 展开更多
关键词 low frequency phonons bonding properties li Al phase transition electride interstitial quasi atoms SUPERCONDUCTIVITY electron phonon coupling
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Experience in Treating Uremic Pruritus with the Slight Sweating Therapy
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作者 Shuangfen GUO Bofeng YU Qi LI 《Medicinal Plant》 2026年第1期50-53,共4页
Traditional Chinese medicine has opened new pathways and provided fresh perspectives for the treatment of uremic pruritus(UP)through syndrome differentiation and treatment.This paper summarizes the clinical experience... Traditional Chinese medicine has opened new pathways and provided fresh perspectives for the treatment of uremic pruritus(UP)through syndrome differentiation and treatment.This paper summarizes the clinical experience of Professor Li Qi in treating this condition.Professor Li Qi points out that the fundamental pathogenesis of UP lies in yang deficiency of the spleen and kidney.On this basis,either external cold entering the interior or yang deficiency leading to cold congelation may result in malnutrition of the skin,thereby triggering pruritus.In clinical practice,slight sweating therapy is applied to release the exterior and expel pathogenic factors or to warm and resolve cold fluid retention,achieving satisfactory therapeutic outcomes. 展开更多
关键词 Uremic pruritus(UP) Slight sweating therapy Professor li Qi
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Jiang Baolin:Explorer of Chinese-Style Modern Aesthetics
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《China Today》 2026年第1期71-71,共1页
Born in Penglai,Shandong Province in 1942,Jiang Baolin is currently working as a doctoral supervisor at the Chinese National Academy of Arts.He’s also a committee member and researcher at the China National Academy o... Born in Penglai,Shandong Province in 1942,Jiang Baolin is currently working as a doctoral supervisor at the Chinese National Academy of Arts.He’s also a committee member and researcher at the China National Academy of Painting.He graduated from Zhejiang Academy of Fine Arts(now China Academy of Art),studying under such masters as Lu Yanshao and Gu Kunbo,and later pursued his master’s degree at the Central Academy of Fine Arts,sitting at the feet of masters like Li Keran. 展开更多
关键词 doctoral supervisor Chinese style modern aesthetics Chinese National Academy Arts Penghai Shandong Province Jiang Baolin committee member li keran researcher
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轧制工艺对Mg-14Li-0.18Al-0.5Ca-0.5Y合金组织与性能的影响
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作者 魏军祥 边丽萍 +4 位作者 李灵浩 王涛 陈鹏 郑留伟 梁伟 《金属热处理》 北大核心 2026年第1期189-194,共6页
设计了一种新型的Mg-14Li-0.18Al-0.5Ca-0.5Y合金,并对其进行单道次10%、30%压下量冷轧及单道次30%压下量热轧的3种轧制。采用金相显微镜、扫描电镜(SEM/EDS)、X射线衍射仪和万能电子拉伸机探究不同轧制方式对铸态合金组织及力学性能的... 设计了一种新型的Mg-14Li-0.18Al-0.5Ca-0.5Y合金,并对其进行单道次10%、30%压下量冷轧及单道次30%压下量热轧的3种轧制。采用金相显微镜、扫描电镜(SEM/EDS)、X射线衍射仪和万能电子拉伸机探究不同轧制方式对铸态合金组织及力学性能的影响。结果表明,铸态Mg-14Li-0.18Al-0.5Ca-0.5Y合金主要由β-Li基体、Al_(2)Y和(Mg,Al)_(2)Ca相构成。经冷轧,单道次10%压下量轧制,合金中(Mg,Al)_(2)Ca和Al_(2)Y颗粒数量显著增加,晶粒内分布有细小弥散AlLi相。冷轧,单道次30%压下量下,(Mg,Al)_(2)Ca和Al_(2)Y颗粒沿轧制方向拉长,形成条带状组织,合金中AlLi颗粒数量变多。热轧,单道次30%压下量下,高温促进了Al、Li等元素的扩散,使得AlLi相和Al_(2)Y相大量析出。其中,经单道次30%压下量冷轧后,合金强度-塑性协同提高,且总压下量80%时,合金综合力学性能最好,抗拉强度和断裂总延伸率分别为220 MPa和24%。 展开更多
关键词 MG-li合金 轧制工艺 微观组织 力学性能
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Amorphous fluorinated interphase enables fast Li-ion kinetics in sulfide-based all-solid-state lithium metal batteries
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作者 Ao-Long Yue Hong Yuan +7 位作者 Shi-Jie Yang Jiang-Kui Hu Xi-Long Wang Di-Chen Wu Zi-Hao Zuo Bo-Dong Bi Zhong-Heng Fu Jia-Qi Huang 《Journal of Energy Chemistry》 2025年第8期277-284,共8页
Sulfide-based all-solid-state lithium metal batteries(ASSLMBs)have garnered significant attention due to their potential for high energy density and enhanced safety.However,their practical application is hindered by c... Sulfide-based all-solid-state lithium metal batteries(ASSLMBs)have garnered significant attention due to their potential for high energy density and enhanced safety.However,their practical application is hindered by challenges such as uneven lithium(Li)deposition and the growth of Li dendrites.In this contribution,we propose an amorphous fluorinated interphase(AFI),composed of amorphous LiF and lithiated graphite,to regulate the interfacial Li-ion transport kinetics through in-situ interface chemistry.Amorphous LiF,which exhibits a significantly enhanced Li-ion diffusion compared to its crystalline counterpart,works synergistically with lithiated graphite to promote both short-range and long-range Li-ion transport kinetics at the Li/electrolyte interface.As a result,the Li anode with AFI demonstrates a remarkably enhanced critical current density of 1.6 mA cm^(−2)and an extended cycle life exceeding 1100 h.The Li||LiNi_(0.6)Co_(0.2)Mn_(0.2)O_(2)full cell also achieves a high discharge capacity of 125.7 mA h g^(−1)and retains 71.2%of its initial capacity after 200 cycles.This work provides valuable insights into the rational design of artificial anodic interphase to regulate interfacial Li-ion transport kinetics in ASSLMBs. 展开更多
关键词 All-solid-state lithium metal batteries Solid electrolyte interphase li-ion transport kinetics li deposition li dendrites
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Al-F co-doping towards enhanced electrolyte-electrodes interface properties for halide and sulfide solid electrolytes 被引量:2
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作者 Han Yan Jingming Yao +7 位作者 Zhangran Ye Qiaoquan Lin Ziqi Zhang Shulin Li Dawei Song Zhenyu Wang Chuang Yu Long Zhang 《Chinese Chemical Letters》 2025年第1期610-617,共8页
All-solid-state Li batteries(ASSLBs)using solid electrolytes(SEs)have gained significant attention in recent years considering the safety issue and their high energy density.Despite these advantages,the commercializat... All-solid-state Li batteries(ASSLBs)using solid electrolytes(SEs)have gained significant attention in recent years considering the safety issue and their high energy density.Despite these advantages,the commercialization of ASSLBs still faces challenges regarding the electrolyte/electrodes interfaces and growth of Li dendrites.Elemental doping is an effective and direct method to enhance the performance of SEs.Here,we report an Al-F co-doping strategy to improve the overall properties including ion conductivity,high voltage stability,and cathode and anode compatibility.Particularly,the Al-F co-doping enables the formation of a thin Li-Al alloy layer and fluoride interphases,thereby constructing a relatively stable interface and promoting uniform Li deposition.The similar merits of Al-F co-doping are also revealed in the Li-argyrodite series.ASSLBs assembled with these optimized electrolytes gain good electrochemical performance,demonstrating the universality of Al-F co-doping towards advanced SEs. 展开更多
关键词 Solid electrolytes li halides li_(2)ZrCl_(6) li argyrodites Fluorine doping
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GH4720Li合金在熔融NaCl-Na_(2)SO_(4)中的热腐蚀行为研究
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作者 段方震 安腾 +4 位作者 谷雨 孙培 史玉亭 王晗旭 杜金辉 《钢铁研究学报》 北大核心 2026年第1期133-142,共10页
本文目的为研究GH4720Li合金在700℃熔融NaCl-Na_(2)SO_(4)中的热腐蚀行为,揭示其腐蚀动力学规律与微观机制,为该合金在航空发动机涡轮盘中的应用提供试验依据。采用坩埚熔盐热腐蚀试验的方法,结合X射线衍射(XRD)、扫描电镜(SEM)、电子... 本文目的为研究GH4720Li合金在700℃熔融NaCl-Na_(2)SO_(4)中的热腐蚀行为,揭示其腐蚀动力学规律与微观机制,为该合金在航空发动机涡轮盘中的应用提供试验依据。采用坩埚熔盐热腐蚀试验的方法,结合X射线衍射(XRD)、扫描电镜(SEM)、电子探针(EPMA)及电子背散射衍射(EBSD)等分析手段,系统分析合金在不同腐蚀时间(1~200 h)下的腐蚀产物、组织演变及腐蚀动力学。GH4720Li合金的腐蚀增重遵循抛物线规律,腐蚀速率随时间延长逐渐增大;表面形成的致密Cr_(2)O_(3)层在初期起主要抗腐蚀作用,氧化膜破裂后,熔盐中还原出的硫优先沿晶界和γ′相形成硫化物,随后被氧化为疏松氧化层。GH4720Li合金的热腐蚀过程遵循“硫化-氧化”机制,可划分为氧化膜形成与保护、氧化硫化、加速氧化和内硫化4个阶段,控制晶粒尺寸与析出相数量有助于提高其耐蚀性能。 展开更多
关键词 GH4720li合金 热腐蚀 涡轮盘锻件 航空发动机 腐蚀机制
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Li-B/NiF_(2)热电池的自放电性能研究
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作者 康敏 乔少明 +5 位作者 杨辉 赵志鹏 陈志江 唐军 樊兆宝 周海 《电源技术》 北大核心 2026年第2期317-322,共6页
NiF_(2)具有高理论电位和比容量,作为一种新型热电池正极材料得到了越来越多的关注。但是NiF_(2)在熔盐电解质中的溶解度较大,会导致电池因显著的自放电而产生安全隐患。通过两步热处理NiF_(2)·4H_(2)O制备了具有良好结晶性和较高... NiF_(2)具有高理论电位和比容量,作为一种新型热电池正极材料得到了越来越多的关注。但是NiF_(2)在熔盐电解质中的溶解度较大,会导致电池因显著的自放电而产生安全隐患。通过两步热处理NiF_(2)·4H_(2)O制备了具有良好结晶性和较高比容量的无水NiF_(2),采用空载与带载相结合的方式测试了Li-B/NiF_(2)热电池的自放电性能。实验结果表明:Li-B/NiF_(2)热电池的自放电速率随温度升高而增大,在460~540℃的温度范围内电池比容量下降速率为0.255~0.302 mAh/(g·s)。扫描电镜结果显示NiF_(2)进入了隔膜内部,从而在隔膜内与溶解游离锂反应生成金属镍,当镍累积到一定程度后电池将出现短路风险。 展开更多
关键词 热电池 li-B/NiF_(2) 自放电性能 空载
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Effects of Element Y on Grain Refinement and Mechanical Properties of Cast Al-2.2Li-1.5Cu-Based Alloy
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作者 Wang Xu Dang Qian +3 位作者 Ma Hongyao Liu Guohuai Zhang Chi Wang Zhaodong 《稀有金属材料与工程》 北大核心 2026年第3期602-614,共13页
The effect of trace addition of 0.1wt%Y on the grain refinement and mechanical properties of Al-2.2Li-1.5Cu-0.5Mg-1Zn-0.2Zr-0.2Sc alloys at as-cast and heat-treated states was investigated.Results show that the additi... The effect of trace addition of 0.1wt%Y on the grain refinement and mechanical properties of Al-2.2Li-1.5Cu-0.5Mg-1Zn-0.2Zr-0.2Sc alloys at as-cast and heat-treated states was investigated.Results show that the addition of 0.1wt%Y into the Al-2.2Li-1.5Cu-0.5Mg-1Zn-0.2Zr-0.2Sc alloys can elevate the nucleation temperature of the Al_(3)(Sc,Zr)phase,leading to the preferential precipitation of the Al_(3)(Sc,Zr)phase and increasing the amount of Al_(3)(Sc,Zr)phase in the matrix.Al_(3)(Sc,Zr)phase can also act as a heterogeneous nucleation site in theα-Al matrix to promote nucleation and refine grains.The addition of element Y changes the precipitation phase characteristics at the grain boundaries in the as-cast alloy,which changes the distribution characteristics of secondary phases from initially continuous and coarse strip-like distribution at grain boundaries into the discontinuous dot-like and rod-like distribution.Besides,the size of secondary phases becomes smaller and their amount increases.Under the combined effects of grain refinement strengthening and precipitation strengthening,the Al-2.2Li-1.5Cu-0.5Mg-1Zn-0.2Zr-0.2Sc-0.1Y alloy after 175℃/10 h aging treatment achieves an ultimate tensile strength of 412 MPa and an elongation of 6.3%.Compared with those of the alloy without Y addition,the ultimate tensile strength and elongation of the added alloy increase by 16.1%and 53.7%,respectively. 展开更多
关键词 Al-li alloy element Y heat treatment grain refinement
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Multi-dimensional optimization of polymer-involved Li^(+)solvation enabling stable polymer plastic crystal electrolyte for long-cycle lithium metal batteries
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作者 Lianzhan Huang Yuanlong Wu +6 位作者 Piao Luo Kexin Su Xin Song Mingdong Liu Minjian Li Huiyu Song Zhiming Cui 《Journal of Energy Chemistry》 2026年第1期656-665,I0015,共11页
Succinonitrile(SN)-based polymer plastic crystal electrolytes(PPCEs)are regarded as promising candidates for lithium metal batteries but suffer from serious side reactions with Li metal.Herein,we propose a multi-dimen... Succinonitrile(SN)-based polymer plastic crystal electrolytes(PPCEs)are regarded as promising candidates for lithium metal batteries but suffer from serious side reactions with Li metal.Herein,we propose a multi-dimensional optimization strategy to alleviate the side reactions between SN and Li metal,and develop a highly stable poly-vinylethylene carbonate-based PPCE(PPCE-VEC).Moreover,we identify the intrinsic factors of multi-dimensional polymer structures on the electrolyte stability by three typical classes of polyesters.The PPCE-VEC constructed by in situ polymerization exhibits much better stability than poly-vinylene carbonate-based PPCE(PPCE-VCA)and poly-trifluoroethyl acrylate-based PPCE(PPCE-TFA),which is verified by its fewer SN-decomposition species in X-ray photoelectron spectroscopy(XPS)and outstanding full cell performance.The PPCE-VEC-enabled LiNi_(0.6)Co_(0.2)Mn_(0.2)O_(2)full cell achieve 73.7%capacity retention after 1400 cycles,which outperforms PPCE-VCA-and PPCE-TFA-enabled full cells(61.9%and 46.9%).Spectral analysis and theoretical calculation reveal that the high solvation ability of the carbonyl site,flexible polymer chain,and homogeneous electrolyte phase of PPCE-VEC are favorable to maximizing competition coordination with Li^(+)to weaken the Li^(+)–SN binding and shape an anion-rich solvation structure.This optimized polymer-involved Li^(+)solvation enhances SN stability and facilitates the formation of B/F enriched solid-electrolyte interphase(SEI),thus significantly improving PPCE stability. 展开更多
关键词 SUCCINONITRILE li metal Polymer plastic crystal electrolytes Multi-dimensional polymer structures
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2012年宝马730Li无法启动
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作者 姚坤 《汽车维修技师》 2026年第3期95-98,共4页
车型:2012年宝马730Li(F02),配置N52发动机。行驶里程:120000km。故障现象:客户报修称车辆突然熄火,停在了马路中间且无法启动。随后呼叫了现场救援,救援人员到达现场后尝试启动车辆,发现启动有明显滞后。启动机运转时出现中断情况,之... 车型:2012年宝马730Li(F02),配置N52发动机。行驶里程:120000km。故障现象:客户报修称车辆突然熄火,停在了马路中间且无法启动。随后呼叫了现场救援,救援人员到达现场后尝试启动车辆,发现启动有明显滞后。启动机运转时出现中断情况,之后再次运转,车辆勉强启动。踩加速踏板后,车辆启动恢复正常。然而,在回店途中,车辆毫无征兆地瞬间熄火且无法再次启动。 展开更多
关键词 宝马730li 启动滞后 启动故障 N52发动机 熄火
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美LIS技术公司计划投资13.8亿美元建设激光铀浓缩厂
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作者 伍浩松 张焰 《国外核新闻》 2026年第2期29-29,共1页
【美国LIS技术公司网站2026年1月16日报道】美国LIS技术公司(LIS Technologies)近日宣布,计划在田纳西州橡树岭(Oak Ridge)投资13.8亿美元,建设一座商业激光铀浓缩厂。项目选址于历史悠久的K-25铀浓缩基地旧址,建成后将成为美国首个基... 【美国LIS技术公司网站2026年1月16日报道】美国LIS技术公司(LIS Technologies)近日宣布,计划在田纳西州橡树岭(Oak Ridge)投资13.8亿美元,建设一座商业激光铀浓缩厂。项目选址于历史悠久的K-25铀浓缩基地旧址,建成后将成为美国首个基于本土技术的商业激光铀浓缩设施,标志着美国重建本土核燃料供应链迈出关键一步。 展开更多
关键词 13.8亿美元 激光铀浓缩 liS Technologies
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Quantitative analysis on T1 phase precipitation behaviors and mechanicalproperties of 2195 Al−Li alloy after cryogenic deformation and aging
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作者 Meng-jia YAO Hua-bo ZHOU +1 位作者 Rui-qian WANG Wei LIU 《Transactions of Nonferrous Metals Society of China》 2026年第1期25-42,共18页
The water-quenched(WQ)2195 Al−Li alloy was subjected to stretching at different temperatures,from room temperature(RT)to−196℃(CT),to investigate the effect of cryogenic deformation on the aging precipitation behavior... The water-quenched(WQ)2195 Al−Li alloy was subjected to stretching at different temperatures,from room temperature(RT)to−196℃(CT),to investigate the effect of cryogenic deformation on the aging precipitation behaviors and mechanical properties.The precipitation kinetics of the T1 phase and the microstructures in peak aging state were investigated through the differential scanning calorimetric(DSC)tests and electron microscopy observation.The results show that−196℃deformation produces a high dislocation density,which promotes the precipitation of the T1 phase and refines its sizes significantly.In addition,the grain boundary precipitates(GBPs)of−196℃-stretched samples are suppressed considerably due to the high dislocation density in the grain interiors,which increases the ductility.In comparison,the strength remains nearly constant.Thus,it is indicated that cryogenic forming has the potential to provide the shape and property control for the manufacture of critical components of aluminum alloys. 展开更多
关键词 Al−li alloy cryogenic stretching T1 phase precipitation kinetics grain boundary precipitates
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基于嵌入式Li nux系统的DMA引擎服务框架设计
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作者 韩贺松 郭焕 曹辉 《机电信息》 2026年第5期46-50,共5页
DMA(Direct Memory Access,直接内存访问)框架作为现代计算机系统中关键的数据传输机制,其研究价值与应用前景在当前技术背景下尤为凸显。然而,尽管DMA技术在硬件层面已得到广泛应用,但针对DMA框架的系统性研究却相对匮乏,相关介绍更是... DMA(Direct Memory Access,直接内存访问)框架作为现代计算机系统中关键的数据传输机制,其研究价值与应用前景在当前技术背景下尤为凸显。然而,尽管DMA技术在硬件层面已得到广泛应用,但针对DMA框架的系统性研究却相对匮乏,相关介绍更是少之又少。因此,深入研究DMA框架不仅能填补当前研究空白,更能为相关领域的实践提供有力的理论支持与技术指导。鉴于此,研究了Linux DMA引擎框架及其源码,包括DMA设备和Channel注册、客户端申请Channel并提交传输任务、传输结果处理,设计了基于嵌入式Linux系统的DMA引擎架构。 展开更多
关键词 嵌入式li nux系统 并行传输 虚拟Channel DMA框架
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