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不同微创小切口在主动脉瓣置换手术中的应用效果比较
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作者 刘胜中 胡铁 +4 位作者 魏大闯 向波 谭今 于涛 黄克力 《山东医药》 2026年第1期7-11,65,共6页
目的比较不同微创小切口在主动脉瓣置换术中的应用效果。方法回顾性分析187例行主动脉瓣置换术患者的临床资料,根据手术入路不同,分为胸骨全切开组(FS组,50例)、胸骨上段小切口组(PUS组,50例)、右侧胸骨旁纵行小切口组(RPLI组,39例)、... 目的比较不同微创小切口在主动脉瓣置换术中的应用效果。方法回顾性分析187例行主动脉瓣置换术患者的临床资料,根据手术入路不同,分为胸骨全切开组(FS组,50例)、胸骨上段小切口组(PUS组,50例)、右侧胸骨旁纵行小切口组(RPLI组,39例)、右侧胸骨旁横行小切口组(RPTI组,48例)。记录并比较四组人工瓣膜置换的类型及型号、伴行手术类型、手术时间、体外循环时间、主动脉阻断时间、术中失血量及输血量、术后呼吸机辅助时间、术后ICU入住时间、术后24 h引流量、术后引流管留置时间、术后并发症发生情况、术后住院时间、胸部切口长度、出院时胸部切口疼痛程度[视觉模拟量表(VAS)评分]。结果四组在人工瓣膜置换类型、瓣膜型号、手术时间、术中输血量、术后呼吸机辅助时间、术后ICU入住时间及术后并发症发生率方面无差异(P均>0.05);在伴行手术类型、体外循环时间、主动脉阻断时间、术中失血量、术后24 h引流量、术后引流管留置时间、术后住院时间、胸部切口长度及出院时VAS评分方面存在差异(P均<0.05)。进一步比较,FS组伴行左心耳结扎术的比例最高,体外循环时间和阻断时间最短,但术中失血量、术后24 h引流量最大,术后引流管留置时间、术后住院时间、胸部切口长度最长,出院时VAS评分亦最高(P均<0.05);PUS组上述指标总体介于FS组与其余两组之间;而RPLI组、RPTI组较FS组、PUS组上述指标则明显减少或缩短(P均<0.05),且RPTI组出院时VAS评分进一步低于RPLI组(P<0.05)。结论PUS、RPLI和RPTI主动脉瓣置换术均安全、有效,较传统FS术创伤小、疼痛轻、术后恢复快。其中,RPTI在减轻术后疼痛和促进快速康复方面更具优势。 展开更多
关键词 主动脉瓣置换术 微创手术 胸骨上段小切口 胸骨旁纵行小切口 胸骨旁横行小切口
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基于i.LON 1000构建Internet远程控制网络 被引量:2
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作者 邹锐锋 郭志波 林锦国 《电子工程师》 2004年第4期70-71,75,共3页
LonWorks技术是一种全分布式的控制网络技术。利用Internet建立远程监控LonWorks网络系统 ,可以充分利用Internet的网络资源 ,发挥两者的优势。文中介绍了使用Echelon公司的i.LON 10 0 0作为路由器来连接LonWorks网络和Internet的方案 ... LonWorks技术是一种全分布式的控制网络技术。利用Internet建立远程监控LonWorks网络系统 ,可以充分利用Internet的网络资源 ,发挥两者的优势。文中介绍了使用Echelon公司的i.LON 10 0 0作为路由器来连接LonWorks网络和Internet的方案 ,并给出了基于Internet远程监控的实例。该组网方法脱离了LonWorks的专用网卡 ,具有快速上网、控制准确快速的特点 ,已在实验室安装调试成功 ,达到了预期的效果 。 展开更多
关键词 i.lon1000 LONWORKS 因特网 路由器 远程控制
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基于SmartServer服务器智能端口的ASP系统在教学中的应用 被引量:1
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作者 李蕾 胡军 《中国教育信息化(高教职教)》 2011年第11期81-83,共3页
Web服务器IIS内建了ASP的编译引擎,在用户的计算机上必须安装上IIS才能测试写好的ASP网页,但在实际的教学操作中,常因IIS没有安装而给网站调试带来了许多不便。而SmartServer服务器智能端口是一款小型的ASP服务器,在ASP网站调试过程中,... Web服务器IIS内建了ASP的编译引擎,在用户的计算机上必须安装上IIS才能测试写好的ASP网页,但在实际的教学操作中,常因IIS没有安装而给网站调试带来了许多不便。而SmartServer服务器智能端口是一款小型的ASP服务器,在ASP网站调试过程中,无须安装IIS服务器及其他任何的附加程序,仅一个SmartServer服务器程序文件,就能实现ASP网站的运行与调试,大大简化了客户端电脑的载荷,更方便了教学,满足了实际的教学需求,并对开发B/S模式的应用与教学的模拟ASP系统具有一定的适用性及应用价值。 展开更多
关键词 ASP服务器 smartserver 网站调试 IIS
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基于i.lon的高性能数据采集方案研究 被引量:3
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作者 黄竞斌 彭新一 黄志炜 《计算机工程与设计》 CSCD 北大核心 2011年第6期2015-2019,2023,共6页
为了解决采用i.lon SmartServer进行数据采集时所遇到的问题,改善其工程应用的效果,在对这些问题进行分析的基础上,提出了一种高性能数据采集解决方案。该方案基于中间件的设计理念,采用层式多线程模型建立核心框架,设计了一种分层容错... 为了解决采用i.lon SmartServer进行数据采集时所遇到的问题,改善其工程应用的效果,在对这些问题进行分析的基础上,提出了一种高性能数据采集解决方案。该方案基于中间件的设计理念,采用层式多线程模型建立核心框架,设计了一种分层容错调度算法和一种基于统一编码的数据映射机制。综合运用了数据缓存、数据备份、消息队列等技术,并通过使用Java实现了采集系统。最后通过测试中的表现和实际工程项目中的应用情况表明了该解决方案的高效性、稳定性和安全性。 展开更多
关键词 i.lon smartserver 层式多线程模型 分层容错调度算法 数据映射 数据缓存 数据备份 消息队列
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基于SmartServer数据传输方式
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作者 陈云斌 《仪器仪表标准化与计量》 2014年第1期27-28,34,共3页
Echelon公司推出的新型SmartServer网络控制器上,提供了多种数据传输方式供用户使用,有最常用的LNS-OPC接口、SOAP/XML接口,以及新型的XMPP和EES主动上传方式。本文将就关于SmartServer的这几种数据传输方式进行介绍。
关键词 SMA rtServer SOAP XML 数据传输
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Wonderware公司集成Echelon公司i.LON SmartServer产品
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《工业控制计算机》 2008年第3期96-96,共1页
2月28日,Wonderware宣布将iLON SmartServer与Wonderware System Platform 3.0软件进行集成,其中i.LON SmartServer产品来自加利福尼亚州San Jose的Echelon公司。i.LON SmartServer与Wonderware System Platform 3.0的集成提供了... 2月28日,Wonderware宣布将iLON SmartServer与Wonderware System Platform 3.0软件进行集成,其中i.LON SmartServer产品来自加利福尼亚州San Jose的Echelon公司。i.LON SmartServer与Wonderware System Platform 3.0的集成提供了单一的软件平台,该平台可实现实时的操作管理功能。从而使用户能够节省能源、提高安全性和降低维护成本。 展开更多
关键词 Wonderware公司 LON 集成 产品 加利福尼亚州 软件平台 操作管理 节省能源
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父母直升机教养对大学生手机依赖的影响:基本心理需求的纵向中介作用 被引量:1
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作者 凌宇 李嘉琦 +2 位作者 胡小晋 陈雨凌 李丹雨 《心理发展与教育》 北大核心 2025年第3期448-456,共9页
通过对591名大一新生进行为期1年的3次追踪研究,考察了大学生的基本心理需求和手机依赖的发展趋势,并对基本心理需求在直升机教养与手机依赖发展间的纵向作用机制进行检验。结果表明:(1)大一新生的基本心理需求呈线性下降,手机依赖呈线... 通过对591名大一新生进行为期1年的3次追踪研究,考察了大学生的基本心理需求和手机依赖的发展趋势,并对基本心理需求在直升机教养与手机依赖发展间的纵向作用机制进行检验。结果表明:(1)大一新生的基本心理需求呈线性下降,手机依赖呈线性增长;(2)父母直升机教养显著正向预测大学生手机依赖的水平;(3)直升机教养通过基本心理需求的初始水平对手机依赖的初始水平和发展速度起间接作用。结论:大一新生的基本心理需求呈线性递减的趋势,手机依赖呈线性递增的趋势;直升机教养可以直接正向预测大学生手机依赖的初始水平,并且能够通过基本心理需求的初始水平对其手机依赖的发展起间接作用。 展开更多
关键词 直升机教养 手机依赖 基本心理需求 潜变量增长模型 多重中介模型
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追寻法学教育的目标--朗·富勒法学教育观再审视
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作者 余涛 王益欣 《法学教育研究》 2025年第1期41-63,共23页
朗·富勒认为,法律职业有其社会责任和历史使命,要承担社会与经济秩序的“归序”问题。基于其法哲学相关理论,法律是使人类服从规则之治的事业,其法学教育观也围绕“社会秩序的自然法”逻辑而生成。法学教育的目标需要通过不断“追... 朗·富勒认为,法律职业有其社会责任和历史使命,要承担社会与经济秩序的“归序”问题。基于其法哲学相关理论,法律是使人类服从规则之治的事业,其法学教育观也围绕“社会秩序的自然法”逻辑而生成。法学教育的目标需要通过不断“追寻”来实现,培养具有理性意识、肩负“道义责任”、作为“社会结构建筑师”的法律人是可能的目标之一,最终目的则是实现良好的社会秩序。从历史发展脉络来看,富勒认为相较于20世纪初,20世纪40年代之后法律人的职责范围在不断扩张,美国的法学教育已经滞后于其社会使命。法学院需要改革法学课程、重视法律与非法律因素之间的关联性;需要拓宽法学教育的范围,强调社会科学与法学教育的融合;需要改革法学教学方法,以“问题教学法”补足案例教学法,继续发挥其作用,重视法理学在法学课程体系中的重要地位。 展开更多
关键词 朗·富勒 法学教育的目标 良好社会秩序
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弗氏柠檬酸杆菌体外诱导替加环素耐药的机制
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作者 牟航 付豪 +5 位作者 周杰 王舒博 张景媛 马乐弟 张锦 魏述永 《中国兽医学报》 北大核心 2025年第10期2222-2230,共9页
替加环素(tigecycline,TGC)是近年创制的广谱高效的甘氨酰环类四环素,可规避传统四环素的耐药机制,被广泛应用于复杂的皮肤和腹腔感染;但近年来其耐药问题已经出现,耐药机制尚不完全明确。本研究体外诱导弗氏柠檬酸杆菌(ATCC-43864)对TG... 替加环素(tigecycline,TGC)是近年创制的广谱高效的甘氨酰环类四环素,可规避传统四环素的耐药机制,被广泛应用于复杂的皮肤和腹腔感染;但近年来其耐药问题已经出现,耐药机制尚不完全明确。本研究体外诱导弗氏柠檬酸杆菌(ATCC-43864)对TGC耐药,测定诱导前后菌株生长曲线、运动能力、多药敏感性变化及超微结构等表型变化;采用全基因组测序、转录组测序并进行相关验证分析诱导前后菌株基因组及转录组耐药相关基因变化;采用外排泵抑制及Red同源重组分析外排泵、lon缺失、rpsM突变对细菌TGC抗性的影响。结果显示,获得稳定耐药株CFT-32,其MIC升高32倍,细胞壁和细胞膜之间的周质空间增大,生长能力及运动能力下降,对多西环素、庆大霉素、环丙沙星等28种抗菌药敏感性无显著变化;诱导前后菌株基因组分基本一致,无外源质粒的干扰,但rpsM和lon检测验证到2个错义突变,转录组测序及q-PCR验证发现外排泵AcrAB-TolC中编码基因acrA和acrB显著上调,结合位点相关蛋白编码基因rpsM、rpsJ、rpsC显著下调;外排泵抑制及Red同源重组结果表明,结合位点相关基因rpsM C287T错义突变所致Pro96Leu改变及表达下调可能是导致诱导株TGC抗性的主要因素。 展开更多
关键词 弗氏柠檬酸杆菌 替加环素 诱导耐药 LON rpsM
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冬季不同草类植物的温室气体释放特征研究 被引量:1
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作者 彭娟 吴昕桐 闫峰 《草原与草坪》 2025年第5期49-55,共7页
【目的】研究不同草类植物的冬季温室气体释放特征,认识草地在减少二氧化碳(CO_(2))、甲烷(CH_(4))、氧化亚氮(N2O)排放中的作用,优化草地植物选择与促进减源增汇具有重要意义。【方法】选取狗牙根、白茅、白三叶等典型草类植物,采用LI ... 【目的】研究不同草类植物的冬季温室气体释放特征,认识草地在减少二氧化碳(CO_(2))、甲烷(CH_(4))、氧化亚氮(N2O)排放中的作用,优化草地植物选择与促进减源增汇具有重要意义。【方法】选取狗牙根、白茅、白三叶等典型草类植物,采用LI COR-7810/7820温室气体通量检测系统,对三者冬季的CO_(2)、CH_(4)、N2O释放特征进行动态监测。在此基础上,基于全球增温潜势模型,评估三者对全球变暖的影响。【结果】1)狗牙根、白茅、白三叶冬季的日平均CO_(2)释放速率分别为791.8、1 569.5、5 772.7nmol/(m^(2)·s)。CH_(4)日平均释放速率分别为-0.108、-0.113、0.158 nmol/(m^(2)·s)。N2O日平均释放速率分别为-0.218、-0.005、0.003 nmol/(m^(2)·s)。2)CO_(2)和N2O日平均释放速率普遍呈现中午高、早晚低的特点;CH_(4)日平均释放速率则呈现中午低、早晚高的特点。3)狗牙根、白茅、白三叶冬季造成的全球增温潜势日均值分别为730.9、1 564.9、5 777.9 nmol/(m^(2)·s),但三者对全球增温潜势的贡献均低于裸地[6 507.3 nmol/(m^(2)·s)]。【结论】狗牙根、白茅、白三叶在冬季均表现为碳源;但相比于裸地,种植上述植物均有助于缓解土壤的温室气体释放,且减排效果以狗牙根最为明显。因此,从减源增汇的角度,在草类植物的选择中,建议优先选用狗牙根。 展开更多
关键词 碳排放 全球增温潜势 草类植物 冬季 温室气体 狗牙根
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Emerging modification strategies for layered Fe-based oxide cathodes toward high-performance sodium-ion batteries 被引量:1
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作者 Zheng-Xiao Li Yi-Meng Wu +6 位作者 Jun-Wei Yin Peng-Fei Wang Zong-Lin Liu Yan-Xuan Wen Jun-Hong Zhang Yan-Rong Zhu Ting-Feng Yi 《Journal of Energy Chemistry》 2025年第8期122-147,共26页
Sodium-ion batteries(SIBs)have the advantages of environmental friendliness,cost-effectiveness,and high energy density,which are considered one of the most promising candidates for lithium-ion batteries(LIBs).The cath... Sodium-ion batteries(SIBs)have the advantages of environmental friendliness,cost-effectiveness,and high energy density,which are considered one of the most promising candidates for lithium-ion batteries(LIBs).The cathode materials influence the cost and energy output of SIBs.Therefore,the development of advanced cathode materials is crucial for the practical application of SIBs.Among various cathode materials,layered transition metal oxides(LTMOs)have received widespread attention owing to their straightforward preparation,abundant availability,and cost-competitiveness.Notably,layered Fe-based oxide cathodes are deemed to be one of the most promising candidates for the lowest price and easy-to-improve performance.Nevertheless,the challenges such as severe phase transitions,sluggish diffusion kinetics and interfacial degradation pose significant hurdles in achieving high-performance cathodes for SIBs.This review first briefly outlines the classification of layered structures and the working principle of layered oxides.Then,recent advances in modification strategies employed to address current issues with layered iron-based oxide cathodes are systematically reviewed,including ion doping,biphasic engineering and surface modification.Furthermore,the review not only outlines the prospects and development directions for layered Fe-based oxide cathodes but also provides novel insights and directions for future research endeavors for SIBs. 展开更多
关键词 Layered Fe-based oxide cathodes lon doping Biphasic engineering Surface modification Sodium-ion batteries
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LON蛋白酶1通过调控线粒体动力学促进白色脂肪棕色化抑制动脉粥样硬化机制研究
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作者 张超举 王洋 《中医临床研究》 2025年第24期69-74,共6页
动脉粥样硬化作为心脑血管疾病的核心病理基础,在我国的发病率呈持续攀升态势,构成了巨大的公共卫生负担。中医学理论认为,“脾气散精”是调控水谷精微化生、转运与输布的关键环节。脾不散精,则膏脂转运障碍,内生痰浊,积聚血脉,化为斑块... 动脉粥样硬化作为心脑血管疾病的核心病理基础,在我国的发病率呈持续攀升态势,构成了巨大的公共卫生负担。中医学理论认为,“脾气散精”是调控水谷精微化生、转运与输布的关键环节。脾不散精,则膏脂转运障碍,内生痰浊,积聚血脉,化为斑块,此乃动脉粥样硬化发生与发展的重要中医病机。本研究立足于“脾气散精”理论,以脾虚痰浊这一动脉粥样硬化关键病因为切入点,旨在将动脉粥样硬化防治研究重心前移。课题组前期研究发现,健脾祛痰方能有效减少主动脉管腔粥样斑块面积,延缓脂肪异常沉积,抑制血管周围脂肪组织细胞内脂滴形成,并显著促进白色脂肪向棕色脂肪转化(即白色脂肪棕色化)。分子机制研究表明,该方能上调解偶联蛋白1(Uncoupling Protein 1,UCP1)、线粒体动力相关蛋白1(Dynamin-related Protein 1,DRP1)及线粒体三磷酸腺苷(Adenosine Triphosphate,ATP)依赖的LON蛋白酶1(Lon Protease 1,LONP1)的表达水平。线粒体动力学通过裂变与融合维持网络稳态,直接调控UCP1转录,驱动脂肪细胞产热代谢。LONP1是线粒体基质核心蛋白酶。最新研究发现,LONP1可调控心肌细胞线粒体裂变-融合动态变化。另有研究表明,LONP1在白色脂肪棕色化中起重要作用。因此,本研究从LONP1介导线粒体动力学角度探讨其调控白色脂肪棕色化治疗动脉粥样硬化的作用机制,丰富“脾气散精”理论的科学内涵,为中医药防治动脉粥样硬化的治疗策略提供科学依据。 展开更多
关键词 LON蛋白酶1 线粒体动力学 白色脂肪棕色化 动脉粥样硬化
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Bimetallic tellurides electrodes:From synthesis to applications in energy storage and conversion
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作者 Ziyi Cheng Xi Pan +7 位作者 Panjun Dou Kening Liu Peng Wan Yutong Li Na Tao Lixin Qian Wei Wang Jianhua Chu 《Journal of Energy Chemistry》 2025年第7期360-386,共27页
The rapid growth in global energy demand has necessitated the development of efficient energy storage and conversion devices,with the aim of enhancing grid stability,promoting the adoption of electric vehicles,and pow... The rapid growth in global energy demand has necessitated the development of efficient energy storage and conversion devices,with the aim of enhancing grid stability,promoting the adoption of electric vehicles,and powering portable electronics.However,the performance of these devices is constrained by the limitations of traditional electrode materials and catalysts.Bimetallic tellurides have emerged as a promising solution due to their exceptional synergistic effects,high electronic conductivity,abundant redox-active sites,and outstanding electrochemical stability.Nevertheless,achieving cost-effective synthesis and stable applications remains a significant challenge.Hence,the most recent advances of bimetallic tellurides electrodes from synthesis to application are systematically reviewed.Several synthetic strategies for exquisite bimetallic tellurides nanostructures,including tellurization,ball-milling,solvo/hydrothermal,electrodeposition,wet chemical,and template method,are discussed.Moreover,the applications of bimetallic tellurides are extensively summarized in energy storage and conversion devices,which include alkali metal-ion batteries(Li-ion,Na-ion,and K-ion),supercapacitor,hydrogen evolution reaction(HER),and oxygen evolution reaction(OER).Besides,the challenges and potential solutions of bimetallic telluride for energy applications are also suggested.This work provides fundamental insight and guidelines for the future design of bimetallic tellurides in energy storage and conversion technologies. 展开更多
关键词 Bimetallic tellurides Synergistic effects lon batteries SUPERCAPACITORS ELECTROCATALYSIS
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Reversible Li plating regulation on graphite anode through a barium sulfate nanofibers-based dielectric separator for fast charging and high-safety lithium-ion battery
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作者 Yaxin Zhang Long Cheng +6 位作者 Ying-Jie Zhu Jin Wu Han-Ping Yu Sida Xie Dandan Li Zhaohui Wang Heng Li 《Journal of Energy Chemistry》 2025年第2期511-523,I0011,共14页
Poor Li plating reversibility and high thermal runaway risks are key challenges for fast charging lithiumion batteries with graphite anodes.Herein,a dielectric and fire-resistant separator based on hybrid nanofibers o... Poor Li plating reversibility and high thermal runaway risks are key challenges for fast charging lithiumion batteries with graphite anodes.Herein,a dielectric and fire-resistant separator based on hybrid nanofibers of barium sulfate(BS)and bacterial cellulose(BC)is developed to synchronously enhance the battery's fast charging and thermal-safety performances.The regulation mechanism of the dielectric BS/BC separator in enhancing the Li^(+)ion transport and Li plating reversibility is revealed.(1)The Max-Wagner polarization electric field of the dielectric BS/BC separator can accelerate the desolvation of solvated Li^(+)ions,enhancing their transport kinetics.(2)Moreover,due to the charge balancing effect,the dielectric BS/BC separator homogenizes the electric field/Li^(+)ion flux at the graphite anode-separator interface,facilitating uniform Li plating and suppressing Li dendrite growth.Consequently,the fast-charge graphite anode with the BS/BC separator shows higher Coulombic efficiency(99.0%vs.96.9%)and longer cycling lifespan(100 cycles vs.59 cycles)than that with the polypropylene(PP)separator in the constantlithiation cycling test at 2 mA cm^(-2).The high-loading LiFePO4(15.5 mg cm^(-2))//graphite(7.5 mg cm^(-2))full cell with the BS/BC separator exhibits excellent fast charging performance,retaining 70%of its capacity after 500 cycles at a high rate of 2C,which is significantly better than that of the cell with the PP separator(retaining only 27%of its capacity after 500 cycles).More importantly,the thermally stable BS/BC separator effectively elevates the critical temperature and reduces the heat release rate during thermal runaway,thereby significantly enhancing the battery's safety. 展开更多
关键词 Fast charging Lithium-ion battery Graphite anode SEPARATOR lon transport
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Harvesting sustainable osmotic energy:The art of nanofluidic hydrogel membranes
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作者 Brij Mohan Kamal Singh +2 位作者 Elnur Ahmadov Armando J.L.Pombeiro Peng Ren 《Journal of Energy Chemistry》 2025年第6期577-594,I0013,共19页
Nanofluidic hydrogel membranes have shown great potential for osmotic energy harvesting(OEH)due to their unique properties.These membranes are made of hydrogels that contain embedded nanofluidic channels,which provide... Nanofluidic hydrogel membranes have shown great potential for osmotic energy harvesting(OEH)due to their unique properties.These membranes are made of hydrogels that contain embedded nanofluidic channels,which provide high selectivity for ions and molecules,making them ideal for osmotic processes.This review explores how to harness the osmotic pressure difference between two solutions separated by the membrane to generate sustainable energy.The review compares the materials membranes and the key advantages of nanofluidic hydrogel membranes:flexibility and ion-transport properties for high power density for OEH,It highlights the size and distribution of the nanofluidic channels within the hydrogel matrix that can be adjusted to optimize ion transport and energy generation efficiency.This flexibility enables customization based on specific requirements for osmotic energy harvesting.This review discusses advancing the transition to sustainable energy sources,challenges,and prospectus for developing and using nanofluidic hydrogel membranes,which hold significant potential for enhancing energy and environmental sustainability. 展开更多
关键词 Nanofluidic hydrogels Membranes lons transport Power density Sustainable energy
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Highly effective and selective recovery of scandium using high-surface area silica prepared from calcium silicate hydrate
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作者 Lei Shi Chunlin He Xinsheng Li 《Journal of Rare Earths》 2025年第11期2519-2530,I0007,共13页
A novel method for scandium recovery is proposed through high-surface area silanol-rich silica sorbents which were prepared with calcium silicate hydrate(C-S-H) as raw material.Two types of silanol-rich silica particl... A novel method for scandium recovery is proposed through high-surface area silanol-rich silica sorbents which were prepared with calcium silicate hydrate(C-S-H) as raw material.Two types of silanol-rich silica particles,i.e.,LAC-S(silica derived from acid leaching of amorphous C-S-H) and LLC-S(silica derived from acid leaching of low-crystallinity C-S-H) are obtained after calcium ions are removed from both amorphous and low-crystallinity forms of C-S-H through a facile acid leaching process(3 mol/L,25℃,24 h).(29)^Si NMR spectroscopy reveals that the proportion of silicon atoms carrying silanol groups increases from less than 43% to over 80% when silica particles are transferred from a dry state to an aqueous solution.Batch adsorption experiments were conducted to evaluate the sorption performance and selectivity of these silica sorbents toward Sc(Ⅲ).The scandium sorption capacities of LAC-S and LLC-S at an equilibrium pH of 4.2 are 174.45 and 129.57 mg/g,respectively.The separation factors(SFSc/Ln) of both silica particles exceed 1000 in the initial pH range of 3.5-5.The loaded scandium ions are recovered with 3 mol/L hydrochloric acid and the sorbents exhibit good reusability.This strategy provides an efficient and green method for recovering scandium from aqueous solutions. 展开更多
关键词 SCANDIUM SILICA Calcium silicate hydrate SILANOL lon exchange Rare earths
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我国个人养老金制度理论奠基、困境剖析与优化策略
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作者 朱文佩 代慧君 《西南金融》 北大核心 2025年第10期84-96,共13页
个人养老金制度作为我国构建多层次、多支柱养老保障体系的关键制度安排,其高质量发展对做好“养老金融大文章”具有战略意义。文章在回顾个人养老金发展的理论基础之上,系统剖析当前个人养老金制度推广过程中呈现的“开户热、缴费冷、... 个人养老金制度作为我国构建多层次、多支柱养老保障体系的关键制度安排,其高质量发展对做好“养老金融大文章”具有战略意义。文章在回顾个人养老金发展的理论基础之上,系统剖析当前个人养老金制度推广过程中呈现的“开户热、缴费冷、投资少”现象,揭示制度设计、产品供给与居民行为之间的深层次矛盾,并通过国际经验镜鉴提出“制度优化—产品创新—生态协同”的突破路径。制度层面,建议建立弹性税优机制与智能默认投资选项,缓解参与惰性;产品层面,应推动以生命周期为导向的金融创新,开发长寿关联衍生品和契合地域需求的养老金融产品;生态层面,应构建金融机构混业协作的服务生态,加强投资者教育,实现全链条协同发展。 展开更多
关键词 养老金融 个人养老金 养老保障体系 税收优惠 理财产品 长寿风险 养老规划 人口老龄化
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Constructing electrochemically stable single crystal Ni-rich cathode material via modification with high valence metal oxides
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作者 Hancheng Shi Jiongzhi Zheng +12 位作者 Tao Wan Hongqiang Wang Zeping Wen Fenghua Zheng Mingru Su Aichun Dou Yu Zhou Ahmad Naveed Panpan Zhang Hailong Wang Ruiqiang Guo Yunjian Liu Dewei Chu 《Journal of Energy Chemistry》 2025年第2期392-401,I0008,共11页
Single crystal Ni-rich cathode materials(SCNCM)are a good supplement in the market of nickel-based materials due to their safety and excellent electrochemical performance.However,the challenges of cation mixing,phase ... Single crystal Ni-rich cathode materials(SCNCM)are a good supplement in the market of nickel-based materials due to their safety and excellent electrochemical performance.However,the challenges of cation mixing,phase change during charge/discharge,and low thermal stability remain unresolved in single crystal particles.To address these issues,SCNCM are rationally modified by incorporating transition metal(TM)oxides,and the influence of metal ions with different valence states on the electrochemical properties of SCNCM is methodically explored through experimental results and theoretical calculations.Enhanced structural stability is demonstrated in SCNCM after the modifications,and the degree of improvement in the matrix materials varies depending on the valence state of doped TM ions.The highest structural stability is found in WO_(3)-modified SCNCM,due to the smaller effective ion radii,higher electro-negativity,stronger W-O bond,and efficient suppression of oxygen vacancy generation.As a result,WO_(3)-modified SCNCM have outstanding cycle performance,with a capacity retention rate of90.2%after 200 cycles.This study provides an insight into the design of advanced SCNCM with enhanced reversibility and cyclability. 展开更多
关键词 Single crystal Ni-rich material Lithium-ion battery lon doping In-situ coating Strengthening mechanism analysis
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Nanofluidic ion rectification sensor for enantioselective recognition and detection
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作者 Chong Wang Hao Xie +4 位作者 Rulan Xia Xuewei Liao Jin Wang Huajun Yang Chen Wang 《Chinese Chemical Letters》 2025年第8期601-606,共6页
Enantiomer identification is of paramount industrial value and physiological significance.Construction of sensitive chiral sensors with high enantiomeric discrimination ability is highly desirable.In this work,a chira... Enantiomer identification is of paramount industrial value and physiological significance.Construction of sensitive chiral sensors with high enantiomeric discrimination ability is highly desirable.In this work,a chiral covalent organic framework/anodic aluminum oxide(c-COF/AAO)membrane was prepared for electrochemical enantioselective recognition and sensing.Benefiting from the remarkable asymmetry,the asprepared nanofluidic c-COF/AAO presents a distinct ion current rectification(ICR)characteristic,enabling sensitive bioanalysis.In addition,owing to the large surface area,high chemical stability and perfect ion selectivity of chiral COF,the prepared c-COF/AAO membrane presents exceptionally selective mass transport and thereby enables excellent chiral discrimination for S-/R-Naproxen(S-/R-Npx)enantiomers.It is especially noteworthy that the detection limit is achieved as low as 3.88 pmol/L.These results raise the possibility for a facile,stable and low-cost method to carry out sensitive enantioselective recognition and detection. 展开更多
关键词 Nanofluidic sensor Chiral recognition lon current rectification(ICR) Covalentorganic framework Electrochemical detection
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Uncovering fantastic synergistic lithium adsorption with manganese-titanium based composite nanospheres:Mild synthesis and molecular dynamics simulation insights
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作者 Yameng Wang Zi-Yu Liu +7 位作者 Yubei Su Yu Liu Aoqun Liu Xiaoye Zhang Yugang Huang Liyun Zhang Haisheng Chen Wancheng Zhu 《Journal of Energy Chemistry》 2025年第2期52-67,I0003,共17页
In light of the burgeoning energy technology sector and the ever-growing demand for lithium across diverse industrial domains,conventional lithium extraction methods have been proven inadequate due to their limited pr... In light of the burgeoning energy technology sector and the ever-growing demand for lithium across diverse industrial domains,conventional lithium extraction methods have been proven inadequate due to their limited production capacity and high operational costs.This work introduces a novel approach to the manganese-titanium based composite HMTO(Mn:Ti=1:4)lithium ion-sieve(LIS)nanospheres,employing lithium acetate dihydrate,manganese carbonate and titanium dioxide P25 as the primary materials.These nanospheres exhibit relatively uniform spherical morphology,narrow size distribution,small average particle size(ca.55 nm),large specific surface area(43.58 m^(2)g^(-1))and high surface O_(2)-content(59.01%).When utilized as the adsorbents for Li^(+)ions,the HMTO(Mn:Ti=1:4)LIS demonstrates a fast adsorption rate,approaching equilibrium within 6.0 h with an equilibrium adsorption capacity(qe)of 79.5 mg g^(-1)and a maximum adsorption capacity(qm)of 87.26 mg g^(-1)(initial concentration CO:1.8 g L^(-1)).In addition,the HMTO(Mn:Ti=1:4)also delivers a high lithium extraction from the simulated high magnesium-lithium molar ratio salt lake brine(Mg:Li=103),achieving a qeof 33.85 mg g^(-1)along with a remarkable selectivity(α_(Mg)^(Li)=2192.76).Particularly,the HMTO(Mn:Ti=1:4)LIS showcases a satisfactory recycling adsorption performance.The adsorption capacity remains at a high level,even that determined after the 5th cycle(55.45 mg g^(-1))surpasses that of the most recently reported adsorbents.Ultimately,the fantastic synergistic lithium adsorption mechanism is deliberately uncovered by leveraging the ion exchange principles and molecular dynamics(MD)simulations. 展开更多
关键词 Lithium ion-sieves Manganese titanium composite Adsorption performance lon exchange Salt lake brine lithium extraction
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