Lithium-sulfur(Li-S)batteries with lithium sulfide(Li2S)as cathode have attracted great attention recently,because of high specific capacity(1166 mA h g^-1)of Li2S and potential safety of using Li metal-free anode.Li2...Lithium-sulfur(Li-S)batteries with lithium sulfide(Li2S)as cathode have attracted great attention recently,because of high specific capacity(1166 mA h g^-1)of Li2S and potential safety of using Li metal-free anode.Li2S cathode has lower volume expansion and higher thermal stability than the traditional sulfur cathode.However,the problems of"shuttle effect"and poor electrical conductivity of the cathode material still need to be overcome.In this work,multi-layered Ti3C2/Li2S(ML-Ti3C2/Li2S)composite has been prepared and applied as a cathode in advanced Li-S batteries.The unique multi-layer sheet structure of Ti3 C2 provides space for the storage of Li2S,and its good conductivity greatly enhances the usage ratio of Li2 S and improves the conductivity of the whole Li2S cathode.Compared with commonly used graphene,ML-Ti3C2 can trap polysulfides effectively by chemical adsorption and also activate the reaction of Li2S to polysulfides by forming Ti-S bond.As a result,during the cycling of the batteries with ML-Ti3C2/Li2S cathodes,the activation voltage barrier of the first cycle has decreased to 2.8 V,and the"shuttle effect"has been suppressed effectively.The cycling and rate performances of the ML-Ti3C2/Li2S cathodes have been significantly improved compared to that of graphene/Li2 S cathodes.They maintain a capacity of 450 mAh g^-1 at 0.2 C after 100 cycles,and deliver attractive rate performances of 750,630,540,470 and 360 mAh g^-1 at 0.1 C,0.2 C,0.5 C,1 C,and 2 C,respectively.展开更多
The dynamic stiffness method combined with the Fourier transform is utilized to derive the in-plane Green’s functions for inclined and uniformly distributed loads in a multi-layered transversely isotropic(TI)half-s...The dynamic stiffness method combined with the Fourier transform is utilized to derive the in-plane Green’s functions for inclined and uniformly distributed loads in a multi-layered transversely isotropic(TI)half-space.The loaded layer is fixed to obtain solutions restricted in it and the corresponding reactions forces,which are then applied to the total system with the opposite sign.By adding solutions restricted in the loaded layer to solutions from the reaction forces,the global solutions in the wavenumber domain are obtained,and the dynamic Green’s functions in the space domain are recovered by the inverse Fourier transform.The presented formulations can be reduced to the isotropic case developed by Wolf(1985),and are further verified by comparisons with existing solutions in a uniform isotropic as well as a layered TI halfspace subjected to horizontally distributed loads which are special cases of the more general problem addressed.The deduced Green’s functions,in conjunction with boundary element methods,will lead to significant advances in the investigation of a variety of wave scattering,wave radiation and soil-structure interaction problems in a layered TI site.Selected numerical results are given to investigate the influence of material anisotropy,frequency of excitation,inclination angle and layered on the responses of displacement and stress,and some conclusions are drawn.展开更多
目的探析脑梗死患者髓鞘碱性蛋白(myelin basic protein,MBP)、S100钙结合蛋白B(S100 calcium-binding protein B,S100-B)水平与介入治疗后早期神经功能恶化的关联性。方法纳入2021年7月–2024年7月期间本院收治的258例脑梗死患者,采用...目的探析脑梗死患者髓鞘碱性蛋白(myelin basic protein,MBP)、S100钙结合蛋白B(S100 calcium-binding protein B,S100-B)水平与介入治疗后早期神经功能恶化的关联性。方法纳入2021年7月–2024年7月期间本院收治的258例脑梗死患者,采用美国国立卫生研究院卒中量表(National Institutes of Health Stroke Scale,NIHSS)评分评估患者的神经功能状况,将死亡患者或介入治疗24 h后NIHSS评分增加4分及以上患者纳入早期神经功能恶化组,其余患者纳入未恶化组。测定所有患者MBP、S100-B水平,并分析其水平变化与介入治疗后神经功能恶化风险的关系。结果脑梗死患者早期神经功能恶化组血清MBP、S100-B水平高于未恶化组〔t=9.062(95%CI:2.348~3.663)、7.708(95%CI:0.221~0.375),P<0.001〕;Spearman相关性显示:恶化组血清MBP、S100-B水平与NIHSS评分增加情况呈正相关〔r=0.323(95%CI:0.095~0.542)、0.292(95%CI:0.066~0.488),P<0.05〕;分层回归分析显示:血清MBP〔比值比(odds ratio,OR)=1.996,95%CI:1.607~2.478〕、S100-B(OR=1.005,95%CI:1.003~1.007)水平是影响脑梗死患者早期神经功能恶化的危险因素(P<0.05),即使校正混杂因素后依然是其危险因素,此外入院NIHSS评分(OR=1.224,95%CI:1.142~1.310)及合并高血压(OR=2.542,95%CI:1.139~5.669)、高脂血症(OR=2.618,95%CI:1.101~6.228),其中入院NIHSS评分与MBP存在交互作用(OR=1.081,95%CI:1.034~1.130);受试者工作特征曲线显示:血清MBP、S100-B水平评估脑梗死患者早期神经功能恶化的曲线下面积分别为0.822(95%CI:0.764~0.879)、0.788(95%CI:0.724~0.853)。结论脑梗死患者介入治疗后血清MBP、S100-B水平较高与早期神经功能恶化风险相关,且对神经功能恶化风险有一定的评估价值。展开更多
目的:探讨血清高迁移率族蛋白B1(HMGB1)、S100β联合脑电双频指数(BIS)在脓毒症相关性脑病(SAE)早期诊断中的应用价值。方法:回顾性分析脓毒症病人87例临床资料,根据是否合并SAE,分为SAE组35例和非SAE组52例。比较2组病人相关临床资料...目的:探讨血清高迁移率族蛋白B1(HMGB1)、S100β联合脑电双频指数(BIS)在脓毒症相关性脑病(SAE)早期诊断中的应用价值。方法:回顾性分析脓毒症病人87例临床资料,根据是否合并SAE,分为SAE组35例和非SAE组52例。比较2组病人相关临床资料和血清HMGB1、S100β水平及24 h BIS,分析脓毒症病人发生SAE的影响因素和HMGB1、S100β、BIS联合检测早期诊断SAE的临床价值。结果:SAE组病人APACHEⅡ评分、SOFA评分均明显高于非SAE组(P<0.01);SAE组血清HMGB1、S100β水平均明显高于非SAE组(P<0.01),而BIS明显低于非SAE组(P<0.01)。APACHEⅡ评分、SOFA评分和HMGB1、S100β、BIS均为脓毒症病人发生SAE的独立影响因素(P<0.01)。ROC曲线分析显示,血清HMGB1、S100β联合BIS早期诊断脓毒症病人发生SAE的AUC为0.891,敏感度为91.43%,特异度为84.62%,优于各指标独立诊断。结论:血清HMGB1、S100β联合BIS在SAE早期诊断中具有较好的临床应用价值。展开更多
海洋标量场可视化对于科研人员分析海洋极端天气、划定船只航线以及预测鱼群数量具有重要作用。本文以海洋环境再分析产品为基础,构建了网格海洋环境数据的文本格式转化方法,并借助ArcGISAPIforJa⁃vaScript完成可视化,实现了海洋标量场...海洋标量场可视化对于科研人员分析海洋极端天气、划定船只航线以及预测鱼群数量具有重要作用。本文以海洋环境再分析产品为基础,构建了网格海洋环境数据的文本格式转化方法,并借助ArcGISAPIforJa⁃vaScript完成可视化,实现了海洋标量场的轻量级架构展示,解决了以往服务器资源占用多、系统响应速度慢等问题。本文提出的可视化架构支撑了海水温度、盐度、海面高等各类海洋环境标量数据在西太海洋数据和信息网络(Ocean Data and Information Network for the WESTPAC,ODINWESTPAC)系统中的有效展示,可为海洋管理者及科研人员提供信息服务。展开更多
基金financially supported by the National Natural Science Foundation of China(21606065,51372060,and 21676067)Anhui Provincial Natural Science Foundation(1708085QE98)+1 种基金the Fundamental Research Funds for the Central Universities(JZ2017HGTB0198,JZ2018HGBZ0138)the Opening Project of CAS Key Laboratory of Materials for Energy Conversion(KF2018003)
文摘Lithium-sulfur(Li-S)batteries with lithium sulfide(Li2S)as cathode have attracted great attention recently,because of high specific capacity(1166 mA h g^-1)of Li2S and potential safety of using Li metal-free anode.Li2S cathode has lower volume expansion and higher thermal stability than the traditional sulfur cathode.However,the problems of"shuttle effect"and poor electrical conductivity of the cathode material still need to be overcome.In this work,multi-layered Ti3C2/Li2S(ML-Ti3C2/Li2S)composite has been prepared and applied as a cathode in advanced Li-S batteries.The unique multi-layer sheet structure of Ti3 C2 provides space for the storage of Li2S,and its good conductivity greatly enhances the usage ratio of Li2 S and improves the conductivity of the whole Li2S cathode.Compared with commonly used graphene,ML-Ti3C2 can trap polysulfides effectively by chemical adsorption and also activate the reaction of Li2S to polysulfides by forming Ti-S bond.As a result,during the cycling of the batteries with ML-Ti3C2/Li2S cathodes,the activation voltage barrier of the first cycle has decreased to 2.8 V,and the"shuttle effect"has been suppressed effectively.The cycling and rate performances of the ML-Ti3C2/Li2S cathodes have been significantly improved compared to that of graphene/Li2 S cathodes.They maintain a capacity of 450 mAh g^-1 at 0.2 C after 100 cycles,and deliver attractive rate performances of 750,630,540,470 and 360 mAh g^-1 at 0.1 C,0.2 C,0.5 C,1 C,and 2 C,respectively.
基金National Natural Science Foundation of China under grant No.51578373 and 51578372the Natural Science Foundation of Tianjin Municipality under Grant No.16JCYBJC21600
文摘The dynamic stiffness method combined with the Fourier transform is utilized to derive the in-plane Green’s functions for inclined and uniformly distributed loads in a multi-layered transversely isotropic(TI)half-space.The loaded layer is fixed to obtain solutions restricted in it and the corresponding reactions forces,which are then applied to the total system with the opposite sign.By adding solutions restricted in the loaded layer to solutions from the reaction forces,the global solutions in the wavenumber domain are obtained,and the dynamic Green’s functions in the space domain are recovered by the inverse Fourier transform.The presented formulations can be reduced to the isotropic case developed by Wolf(1985),and are further verified by comparisons with existing solutions in a uniform isotropic as well as a layered TI halfspace subjected to horizontally distributed loads which are special cases of the more general problem addressed.The deduced Green’s functions,in conjunction with boundary element methods,will lead to significant advances in the investigation of a variety of wave scattering,wave radiation and soil-structure interaction problems in a layered TI site.Selected numerical results are given to investigate the influence of material anisotropy,frequency of excitation,inclination angle and layered on the responses of displacement and stress,and some conclusions are drawn.
文摘目的探析脑梗死患者髓鞘碱性蛋白(myelin basic protein,MBP)、S100钙结合蛋白B(S100 calcium-binding protein B,S100-B)水平与介入治疗后早期神经功能恶化的关联性。方法纳入2021年7月–2024年7月期间本院收治的258例脑梗死患者,采用美国国立卫生研究院卒中量表(National Institutes of Health Stroke Scale,NIHSS)评分评估患者的神经功能状况,将死亡患者或介入治疗24 h后NIHSS评分增加4分及以上患者纳入早期神经功能恶化组,其余患者纳入未恶化组。测定所有患者MBP、S100-B水平,并分析其水平变化与介入治疗后神经功能恶化风险的关系。结果脑梗死患者早期神经功能恶化组血清MBP、S100-B水平高于未恶化组〔t=9.062(95%CI:2.348~3.663)、7.708(95%CI:0.221~0.375),P<0.001〕;Spearman相关性显示:恶化组血清MBP、S100-B水平与NIHSS评分增加情况呈正相关〔r=0.323(95%CI:0.095~0.542)、0.292(95%CI:0.066~0.488),P<0.05〕;分层回归分析显示:血清MBP〔比值比(odds ratio,OR)=1.996,95%CI:1.607~2.478〕、S100-B(OR=1.005,95%CI:1.003~1.007)水平是影响脑梗死患者早期神经功能恶化的危险因素(P<0.05),即使校正混杂因素后依然是其危险因素,此外入院NIHSS评分(OR=1.224,95%CI:1.142~1.310)及合并高血压(OR=2.542,95%CI:1.139~5.669)、高脂血症(OR=2.618,95%CI:1.101~6.228),其中入院NIHSS评分与MBP存在交互作用(OR=1.081,95%CI:1.034~1.130);受试者工作特征曲线显示:血清MBP、S100-B水平评估脑梗死患者早期神经功能恶化的曲线下面积分别为0.822(95%CI:0.764~0.879)、0.788(95%CI:0.724~0.853)。结论脑梗死患者介入治疗后血清MBP、S100-B水平较高与早期神经功能恶化风险相关,且对神经功能恶化风险有一定的评估价值。
文摘目的:探讨血清高迁移率族蛋白B1(HMGB1)、S100β联合脑电双频指数(BIS)在脓毒症相关性脑病(SAE)早期诊断中的应用价值。方法:回顾性分析脓毒症病人87例临床资料,根据是否合并SAE,分为SAE组35例和非SAE组52例。比较2组病人相关临床资料和血清HMGB1、S100β水平及24 h BIS,分析脓毒症病人发生SAE的影响因素和HMGB1、S100β、BIS联合检测早期诊断SAE的临床价值。结果:SAE组病人APACHEⅡ评分、SOFA评分均明显高于非SAE组(P<0.01);SAE组血清HMGB1、S100β水平均明显高于非SAE组(P<0.01),而BIS明显低于非SAE组(P<0.01)。APACHEⅡ评分、SOFA评分和HMGB1、S100β、BIS均为脓毒症病人发生SAE的独立影响因素(P<0.01)。ROC曲线分析显示,血清HMGB1、S100β联合BIS早期诊断脓毒症病人发生SAE的AUC为0.891,敏感度为91.43%,特异度为84.62%,优于各指标独立诊断。结论:血清HMGB1、S100β联合BIS在SAE早期诊断中具有较好的临床应用价值。
文摘海洋标量场可视化对于科研人员分析海洋极端天气、划定船只航线以及预测鱼群数量具有重要作用。本文以海洋环境再分析产品为基础,构建了网格海洋环境数据的文本格式转化方法,并借助ArcGISAPIforJa⁃vaScript完成可视化,实现了海洋标量场的轻量级架构展示,解决了以往服务器资源占用多、系统响应速度慢等问题。本文提出的可视化架构支撑了海水温度、盐度、海面高等各类海洋环境标量数据在西太海洋数据和信息网络(Ocean Data and Information Network for the WESTPAC,ODINWESTPAC)系统中的有效展示,可为海洋管理者及科研人员提供信息服务。