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V_(2)AlC粉体的形貌调控及其吸波性能研究
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作者 刘毅 李裴彤 +2 位作者 郭守武 罗威 张利锋 《陕西科技大学学报》 北大核心 2024年第1期118-124,共7页
V_(2)AlC粉体的形貌对其微波吸收性能有显著影响.然而,制备合成具有特殊形貌的高纯MAX相粉体仍然面临许多挑战.基于此,本文选取碳微球、碳纤维和玉米淀粉作为碳源材料,在高温混合熔盐中制得了具有微米球状、微米棒状和枝杈状的三种高纯V... V_(2)AlC粉体的形貌对其微波吸收性能有显著影响.然而,制备合成具有特殊形貌的高纯MAX相粉体仍然面临许多挑战.基于此,本文选取碳微球、碳纤维和玉米淀粉作为碳源材料,在高温混合熔盐中制得了具有微米球状、微米棒状和枝杈状的三种高纯V_(2)AlC.测试结果表明枝杈状V_(2)AlC有利于导电网络的形成,结合晶界诱发界面极化和各项异性导电性引起的偶极极化,使该类MAX相具有优异的微波吸收性能.当其厚度为2.42 mm时,最低反射损耗值为-42.91 dB,调整厚度至1.44 mm时,有效吸收宽度可达4.12 GHz. 展开更多
关键词 微波吸收 MaX相 形貌调控 v_(2)alC
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乙腈-水系混合电解液对Zn-Na_(3)V_(2)(PO_(4))_(3)电池电化学稳定性的影响
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作者 欧林娜 刘哲轩 +1 位作者 曹鑫鑫 梁叔全 《中国有色金属学报》 EI CAS CSCD 北大核心 2024年第6期1848-1860,共13页
Na_(3)V_(2)(PO_(4))_(3)正极材料具有稳定的三维框架结构、较高的工作电压和相对成熟的制备工艺,近年来也逐渐用于水系锌离子电池中。然而,二价Zn^(2+)的脱嵌和活泼的水系反应环境会加速磷酸盐晶格的破坏。本文在Zn-Na_(3)V_(2)(PO_(4)... Na_(3)V_(2)(PO_(4))_(3)正极材料具有稳定的三维框架结构、较高的工作电压和相对成熟的制备工艺,近年来也逐渐用于水系锌离子电池中。然而,二价Zn^(2+)的脱嵌和活泼的水系反应环境会加速磷酸盐晶格的破坏。本文在Zn-Na_(3)V_(2)(PO_(4))_(3)电池体系的水系电解液中加入适量的乙腈(AN),研究电解液中AN与水的比例对离子溶剂化结构和电化学行为的影响规律,并通过非原位XRD探究Na_(3)V_(2)(PO_(4))_(3)晶体结构的演变。结果表明:过少的AN会加快正极材料晶格框架的破坏,而过多的AN会减缓电极反应动力学;在含有适量AN的电解液中,Zn-Na_(3)V_(2)(PO_(4))_(3)电池不但在50 mA/g的电流密度下具有91.4 mA·h/g的较高比容量,同时在500 mA/g的电流密度下可以稳定循环1000次且无明显容量衰退。 展开更多
关键词 Zn-Na_(3)v_(2)(PO_(4))_(3)电池 乙腈 有机-无机混合电解液 电化学稳定性 离子可逆脱嵌
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Boosting Hydrogen Storage Performance of MgH_(2) by Oxygen Vacancy-Rich H-V_(2)O_(5) Nanosheet as an Excited H-Pump 被引量:2
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作者 Li Ren Yinghui Li +4 位作者 Zi Li Xi Lin Chong Lu Wenjiang Ding Jianxin Zou 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第8期398-416,共19页
MgH_(2) is a promising high-capacity solid-state hydrogen storage material,while its application is greatly hindered by the high desorption temperature and sluggish kinetics.Herein,intertwined 2D oxygen vacancy-rich V... MgH_(2) is a promising high-capacity solid-state hydrogen storage material,while its application is greatly hindered by the high desorption temperature and sluggish kinetics.Herein,intertwined 2D oxygen vacancy-rich V_(2)O_(5) nanosheets(H-V_(2)O_(5))are specifically designed and used as catalysts to improve the hydrogen storage properties of MgH_(2).The as-prepared MgH_(2)-H-V_(2)O_(5) composites exhibit low desorption temperatures(Tonset=185℃)with a hydrogen capacity of 6.54 wt%,fast kinetics(Ea=84.55±1.37 kJ mol^(-1) H_(2) for desorption),and long cycling stability.Impressively,hydrogen absorption can be achieved at a temperature as low as 30℃ with a capacity of 2.38 wt%within 60 min.Moreover,the composites maintain a capacity retention rate of~99%after 100 cycles at 275℃.Experimental studies and theoretical calculations demonstrate that the in-situ formed VH_(2)/V catalysts,unique 2D structure of H-V_(2)O_(5) nanosheets,and abundant oxygen vacancies positively contribute to the improved hydrogen sorption properties.Notably,the existence of oxygen vacancies plays a double role,which could not only directly accelerate the hydrogen ab/de-sorption rate of MgH_(2),but also indirectly affect the activity of the catalytic phase VH_(2)/V,thereby further boosting the hydrogen storage performance of MgH_(2).This work highlights an oxygen vacancy excited“hydrogen pump”effect of VH_(2)/V on the hydrogen sorption of Mg/MgH_(2).The strategy developed here may pave a new way toward the development of oxygen vacancy-rich transition metal oxides catalyzed hydride systems. 展开更多
关键词 Hydrogen storage MgH_(2) v_(2)O_(5)nanosheets Oxygen vacancies vH_(2)
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第一性原理计算研究V_(2)AlX(X=C、N)相的热力学性能
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作者 黄大建 史沛然 法涛 《热加工工艺》 北大核心 2024年第7期143-146,共4页
通过第一性原理基于PAW方法研究了V_(2)AlX(X=C、N)相的结构、电子、声子和热力学性质。讨论了V_(2)AlX(X=C、N)相的结构和电子特性;利用晶格动力学的超晶胞方法计算了声子色散曲线,并通过准简谐近似预测高温下V_(2)AlX(X=C、N)相的热... 通过第一性原理基于PAW方法研究了V_(2)AlX(X=C、N)相的结构、电子、声子和热力学性质。讨论了V_(2)AlX(X=C、N)相的结构和电子特性;利用晶格动力学的超晶胞方法计算了声子色散曲线,并通过准简谐近似预测高温下V_(2)AlX(X=C、N)相的热力学性质。结果表明:V_(2)AlC和V_(2)AlN具有金属性,且用N原子置换C原子后费米面处的态密度减低。V_(2)AlC和V_(2)AlN都是动力学稳定的。此外,还发现V_(2)AlN相的热力学性质比V_(2)AlC的更优异,且V_(2)AlN的体模量也高于V_(2)AlC。 展开更多
关键词 v_(2)alX 电子 声子 热力学性能
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自蔓延高温合成V_(1.8)Nb_(0.2)AlC 固溶体研究
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作者 吴海江 杨扬 +2 位作者 刘志勇 毕君 陈学文 《工程技术研究》 2024年第5期1-3,共3页
文章以钒粉、铌粉、铝粉、石墨粉为原料,按照V∶Nb∶Al∶C=1.8∶0.2∶1∶1(物质的量比)配制原料混合物,采用自蔓延高温合成技术制备了V_(1.8)Nb_(0.2)AlC固溶体。利用X射线衍射仪(XRD)、扫描电子显微镜(SEM)、X射线能谱分析仪(EDS)等分... 文章以钒粉、铌粉、铝粉、石墨粉为原料,按照V∶Nb∶Al∶C=1.8∶0.2∶1∶1(物质的量比)配制原料混合物,采用自蔓延高温合成技术制备了V_(1.8)Nb_(0.2)AlC固溶体。利用X射线衍射仪(XRD)、扫描电子显微镜(SEM)、X射线能谱分析仪(EDS)等分析技术对合成产物的组成、结构和微观形貌进行了表征。结果表明,随着Nb元素的引入,V2AlC的(002)和(110)的特征峰分别从13.62°和63.92°向下移动到13.24°和63.36°,表明V_(1.8)Nb_(0.2)AlC形成了固溶体,V_(1.8)Nb_(0.2)AlC固溶体具有典型MAX相的页岩层状形貌。 展开更多
关键词 v_(1.8)Nb_(0.2)alC 自蔓延高温合成技术 固溶体 MaX相
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VSe_(2)/V_(2)C heterocatalyst with built-in electric field for efficient lithium-sulfur batteries:Remedies polysulfide shuttle and conversion kinetics
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作者 Yanwei Lv Lina Bai +7 位作者 Qi Jin Siyu Deng Xinzhi Ma Fengfeng Han Juan Wang Lirong Zhang Lili Wu Xitian Zhang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第2期397-409,I0010,共14页
Lithium sulfur(Li-S)battery is a kind of burgeoning energy storage system with high energy density.However,the electrolyte-soluble intermediate lithium polysulfides(Li PSs)undergo notorious shuttle effect,which seriou... Lithium sulfur(Li-S)battery is a kind of burgeoning energy storage system with high energy density.However,the electrolyte-soluble intermediate lithium polysulfides(Li PSs)undergo notorious shuttle effect,which seriously hinders the commercialization of Li-S batteries.Herein,a unique VSe_(2)/V_(2)C heterostructure with local built-in electric field was rationally engineered from V_(2)C parent via a facile thermal selenization process.It exquisitely synergizes the strong affinity of V_(2)C with the effective electrocatalytic activity of VSe_(2).More importantly,the local built-in electric field at the heterointerface can sufficiently promote the electron/ion transport ability and eventually boost the conversion kinetics of sulfur species.The Li-S battery equipped with VSe_(2)/V_(2)C-CNTs-PP separator achieved an outstanding initial specific capacity of 1439.1 m A h g^(-1)with a high capacity retention of 73%after 100 cycles at0.1 C.More impressively,a wonderful capacity of 571.6 mA h g^(-1)was effectively maintained after 600cycles at 2 C with a capacity decay rate of 0.07%.Even under a sulfur loading of 4.8 mg cm^(-2),areal capacity still can be up to 5.6 m A h cm^(-2).In-situ Raman tests explicitly illustrate the effectiveness of VSe_(2)/V_(2)C-CNTs modifier in restricting Li PSs shuttle.Combined with density functional theory calculations,the underlying mechanism of VSe_(2)/V_(2)C heterostructure for remedying Li PSs shuttling and conversion kinetics was deciphered.The strategy of constructing VSe_(2)/V_(2)C heterocatalyst in this work proposes a universal protocol to design metal selenide-based separator modifier for Li-S battery.Besides,it opens an efficient avenue for the separator engineering of Li-S batteries. 展开更多
关键词 Li-S battery Shuttle effect Separator modifier vSe_(2)/v_(2)C heterostructure Built-in electric field
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Double enzyme mimetic activities of multifunctional Ag nanoparticle-decorated Co_(3)V_(2)O_(8)hollow hexagonal prismatic pencils for application in colorimetric sensors and disinfection
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作者 Ying Gao Peng Ju +4 位作者 Yu Zhang Yuxin Zhang Xiaofan Zhai Jizhou Duan Baorong Hou 《Nano Materials Science》 EI CAS CSCD 2024年第2期244-255,共12页
Since the catalytic activity of most nanozymes is still far lower than the corresponding natural enzymes,there is urgent need to discover novel highly efficient enzyme-like materials.In this work,Co_(3)V_(2)O_(8)with ... Since the catalytic activity of most nanozymes is still far lower than the corresponding natural enzymes,there is urgent need to discover novel highly efficient enzyme-like materials.In this work,Co_(3)V_(2)O_(8)with hollow hexagonal prismatic pencil structures were prepared as novel artificial enzyme mimics.They were then decorated by photo-depositing Ag nanoparticles(Ag NPs)on the surface to further improve its catalytic activities.The Ag NPs decorated Co_(3)V_(2)O_(8)(ACVPs)showed both excellent oxidase-and peroxidase-like catalytic activities.They can oxidize the colorless 3,3’,5,5’-tetramethylbenzidine rapidly to induce a blue change.The enhanced enzyme mimetic activities can be attributed to the surface plasma resonance(SPR)effect of Ag NPs as well as the synergistic catalytic effect between Ag NPs and Co_(3)V_(2)O_(8),accelerating electron transfer and promoting the catalytic process.ACVPs were applied in constructing a colorimetric sensor,validating the occurrence of the Fenton reaction,and disinfection,presenting favorable catalytic performance.The enzyme-like catalytic mechanism was studied,indicating the chief role of⋅O_(2)-radicals in the catalytic process.This work not only discovers a novel functional material with double enzyme mimetic activity but also provides a new insight into exploiting artificial enzyme mimics with highly efficient catalytic ability. 展开更多
关键词 Co_(3)v_(2)O_(8) ag NPs Enzyme mimetic Colorimetric sensor DISINFECTION
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Polypyride intercalation boosting the kinetics and stability of V_(3)O_(7)·H_(2)O cathodes for aqueous zinc-ion batteries
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作者 Qingqing He Jie Bai +4 位作者 Mengda Xue Yanxin Liao Huayu Wang Mujun Long Lingyun Chen 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第10期361-370,I0007,共11页
V_(3)O_(7)·H_(2)O(VO)is a high capacity cathode material in the field of aqueous zinc ion batteries(AZIBs),but it is limited by slow ion migration and low electrical conductivity.In this paper,polypyridine(PPyd)i... V_(3)O_(7)·H_(2)O(VO)is a high capacity cathode material in the field of aqueous zinc ion batteries(AZIBs),but it is limited by slow ion migration and low electrical conductivity.In this paper,polypyridine(PPyd)intercalated VO with nanoribbon structure was prepared by a simple in-situ pre-intercalation,which is noted VO-PPyd.The total density of states(TDOS)shows that after the pre-intercalation of PPyd,an intermediate energy level appears between the valence band and conduction band,which provides a step that can effectively reduce the band gap and enhance the electron conductivity.Furthermore,the density functional theory(DFT)results found that Zn^(2+)is more easily de-intercalated from the V-O skeleton,which proves that the embeddedness of PPyd improves the diffusion kinetics of Zn^(2+).Electrochemical studies have shown that VO-PPyd cathode materials exhibit excellent rate performance(high specific capacity of 465 and 192 mA h g^(-1)at 0.2 and 10 A g^(-1),respectively)and long-term cycling performance(92.7%capacity retention rate after 5300 cycles),due to their advantages in structure and composition.More importantly,the energy density of VO-PPyd//Zn at 581 and 5806 W kg^(-1)is 375 and 247 W h kg^(-1),respectively.VO-PPyd exhibits excellent electrochemical properties compared to previously reported vanadium based cathodes,which makes it highly competitive in the field of high-performance cathode materials of AZIBs. 展开更多
关键词 v_(3)O_(7)·H_(2)O POLYPYRIDINE Ion migration Electrical conductivity aqueous zinc ion batteries DFT calculation
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二维V_(3)CN对Na存储性能的理论研究
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作者 吴蒙各 汪丽莉 +2 位作者 马鹏举 赵新新 吴建宝 《化工新型材料》 CAS CSCD 北大核心 2024年第8期180-183,共4页
过渡金属碳氮化物MXenes具有优异的储能和导电性能,被认为是发展前景广阔的金属离子电极材料。采用密度泛函理论计算方法,对钒三碳氮(V_(3)CN)材料对钠离子的存储行为进行了理论研究,并研究了V_(3)CN作为钠离子电池负极材料的可行性。... 过渡金属碳氮化物MXenes具有优异的储能和导电性能,被认为是发展前景广阔的金属离子电极材料。采用密度泛函理论计算方法,对钒三碳氮(V_(3)CN)材料对钠离子的存储行为进行了理论研究,并研究了V_(3)CN作为钠离子电池负极材料的可行性。计算结果表明,V_(3)CN具有稳定的结构,良好的电子导电性。V_(3)CN吸附单层钠离子时,平均吸附能为-0.682eV,负吸附能表明单层钠离子可以吸附在V_(3)CN基底上;V_(3)CN吸附双层钠离子时,平均吸附能为-0.03eV,吸附能仍为负值,并且单层、双层钠离子吸附在V_(3)CN基底后体系仍具有导电性能。V_(3)CN作为钠离子电池负极材料最大容量为599.57mAh/g。 展开更多
关键词 v_(3)CN材料 密度泛函理论 钠离子电池 负极材料 吸附
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Robust Cross-Linked Na_(3)V_(2)(PO_(4))_(2)F_(3) Full Sodium-Ion Batteries
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作者 Jinqiang Gao Ye Tian +12 位作者 Lianshan Ni Baowei Wang Kangyu Zou Yingchang Yang Ying Wang Craig E.Banks Dou Zhang Kechao Zhou Huan Liu Wentao Deng Guoqiang Zou Hongshuai Hou Xiaobo Ji 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第1期9-20,共12页
Sodium-ion batteries(SIBs)have rapidly risen to the forefront of energy storage systems as a promising supplementary for Lithium-ion batteries(LIBs).Na_(3)V_(2)(PO_(4))_(2)F_(3)(NVPF)as a common cathode of SIBs,featur... Sodium-ion batteries(SIBs)have rapidly risen to the forefront of energy storage systems as a promising supplementary for Lithium-ion batteries(LIBs).Na_(3)V_(2)(PO_(4))_(2)F_(3)(NVPF)as a common cathode of SIBs,features the merits of high operating voltage,small volume change and favorable specific energy density.However,it suffers from poor cycling stability and rate performance induced by its low intrinsic conductivity.Herein,we propose an ingenious strategy targeting superior SIBs through cross-linked NVPF with multi-dimensional nanocarbon frameworks composed of amorphous carbon and carbon nanotubes(NVPF@C@CNTs).This rational design ensures favorable particle size for shortened sodium ion transmission pathway as well as improved electronic transfer network,thus leading to enhanced charge transfer kinetics and superior cycling stability.Benefited from this unique structure,significantly improved electrochemical properties are obtained,including high specific capacity(126.9 mAh g^(-1)at 1 C,1 C=128 mA g^(-1))and remarkably improved long-term cycling stability with 93.9%capacity retention after 1000 cycles at 20 C.The energy density of 286.8 Wh kg^(-1)can be reached for full cells with hard carbon as anode(NVPF@C@CNTs//HC).Additionally,the electrochemical performance of the full cell at high temperature is also investigated(95.3 mAh g^(-1)after 100 cycles at 1 C at 50℃).Such nanoscale dual-carbon networks engineering and thorough discussion of ion diffusion kinetics might make contributions to accelerating the process of phosphate cathodes in SIBs for large-scale energy storages. 展开更多
关键词 dual-nanocarbon networks full sodium-ion battery ion transfer kinetics Na_(3)v_(2)(PO_(4))_(2)F_(3) NaSICON structure
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Solid-state NMR study on sodium intercalation at low voltage window for Na_(3)V_(2)(PO_(4))_(3) as an anode
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作者 Yuxin Liao Fushan Geng +1 位作者 Ming Shen Bingwen Hu 《Magnetic Resonance Letters》 2024年第2期40-45,共6页
In-situ XRD,^(31)P NMR and ^(23)Na NMR were used to analyze the interaction behavior of Na_(3)V_(2)(PO_(4))_(3) at low voltage,and then a new intercalation model was proposed.During the transition from Na_(3)V_(2)(PO_... In-situ XRD,^(31)P NMR and ^(23)Na NMR were used to analyze the interaction behavior of Na_(3)V_(2)(PO_(4))_(3) at low voltage,and then a new intercalation model was proposed.During the transition from Na_(3)V_(2)(PO_(4))_(3) to Na_(4)V_(2)(PO_(4))_(3),Na ions insert into M1,M2 and M3 sites simultaneously.Afterwards,during the transition of Na_(4)V_(2)(PO_(4))_(3)to Na_(5)V_(2)(PO_(4))_(3),Na ions mainly insert into M3 site. 展开更多
关键词 Na_(3)v_(2)(PO_(4))_(3) aNODE Low voltage NMR Sodium ion battery
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Building stabilized Cu_(0.17)Mn_(0.03)V_(2)O_(5−□)·2.16H_(2)O cathode enables an outstanding room‐/low‐temperature aqueous Zn‐ion batteries
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作者 Ao Wang Dai‐Huo Liu +9 位作者 Lin Yang Fang Xu Dan Luo Haozhen Dou Mengqin Song Chunyan Xu Beinuo Zhang Jialin Zheng Zhongwei Chen Zhengyu Bai 《Carbon Energy》 SCIE EI CAS CSCD 2024年第8期25-35,共11页
Vanadium oxide cathode materials with stable crystal structure and fast Zn^(2+) storage capabilities are extremely important to achieving outstanding electrochemical performance in aqueous zinc‐ion batteries.In this ... Vanadium oxide cathode materials with stable crystal structure and fast Zn^(2+) storage capabilities are extremely important to achieving outstanding electrochemical performance in aqueous zinc‐ion batteries.In this work,a one‐step hydrothermal method was used to manipulate the bimetallic ion intercalation into the interlayer of vanadium oxide.The pre‐intercalated Cu ions act as pillars to pin the vanadium oxide(V‐O)layers,establishing stabilized two‐dimensional channels for fast Zn^(2+) diffusion.The occupation of Mn ions between V‐O interlayer further expands the layer spacing and increases the concentration of oxygen defects(Od),which boosts the Zn^(2+) diffusion kinetics.As a result,as‐prepared Cu_(0.17)Mn_(0.03)V_(2)O_(5−□)·2.16H_(2)O cathode shows outstanding Zn‐storage capabilities under room‐and lowtemperature environments(e.g.,440.3 mAh g^(−1) at room temperature and 294.3 mAh g^(−1)at−60°C).Importantly,it shows a long cycling life and high capacity retention of 93.4%over 2500 cycles at 2 A g^(−1) at−60°C.Furthermore,the reversible intercalation chemistry mechanisms during discharging/charging processes were revealed via operando X‐ray powder diffraction and ex situ Raman characterizations.The strategy of a couple of 3d transition metal doping provides a solution for the development of superior room‐/lowtemperature vanadium‐based cathode materials. 展开更多
关键词 aqueous zinc‐ion batteries Cu_(0.17)Mn_(0.03)v_(2)O_(5−□)·2.16H_(2)O oxygen defects room‐/lowtemperature performance stabilized nanostructure
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语义功能语法视阈下“Adv.+不+V_(状)”结构句法语义特点
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作者 柴淼 《哈尔滨师范大学社会科学学报》 2024年第2期104-109,共6页
状态动词是汉语动词体系中较为特殊的一类成员,[+静止][+持续]的语义特征直接影响其与相关句法成分间的组合关系。受语义特征影响,在由状态动词充当谓语中心语的“Adv.+不+V_(状)”结构中起到限定语义作用的副词主要为范围副词和程度副... 状态动词是汉语动词体系中较为特殊的一类成员,[+静止][+持续]的语义特征直接影响其与相关句法成分间的组合关系。受语义特征影响,在由状态动词充当谓语中心语的“Adv.+不+V_(状)”结构中起到限定语义作用的副词主要为范围副词和程度副词,且具有[+极性]语义特征;否定结构“Adv.+不+V_(状)”既可表达否定语义也可表达中性语义。文章着重考察“Adv.+不+V_(状)”结构的语义特征等内容,分析状态动词的语义特征对相关句法成分产生影响的内在动因,旨在呈现状态动词作为汉语动词体系中较为特殊的一类成员在句法结构中的语义功能。 展开更多
关键词 adv.+不+v_(状)”结构 状态动词 语义特点 句法功能
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V_(2)O_(5)-BaTiO_(3)添加对低温烧结NiCuZn材料磁性能的影响
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作者 罗元杰 兰中文 +5 位作者 王宏 余忠 窦海之 孙科 蒋晓娜 邬传健 《磁性材料及器件》 CAS 2024年第4期7-12,共6页
采用固相反应法制备NiCuZn软磁铁氧体材料,探究添加V_(2)O_(5)助熔剂和BaTiO_(3)(BTO)共同作用对铁氧体微观结构和磁性能的影响,以期实现NiCuZn铁氧体的低温烧结。V_(2)O_(5)作为助熔剂可以起到促进晶粒生长和晶界成型的作用,但过量的V_... 采用固相反应法制备NiCuZn软磁铁氧体材料,探究添加V_(2)O_(5)助熔剂和BaTiO_(3)(BTO)共同作用对铁氧体微观结构和磁性能的影响,以期实现NiCuZn铁氧体的低温烧结。V_(2)O_(5)作为助熔剂可以起到促进晶粒生长和晶界成型的作用,但过量的V_(2)O_(5)的添加会导致出现晶粒异常生长,恶化磁性能。通过对样品高频下的损耗进行分离和分析,明确了致密化的小晶粒尺寸样品可以获得低的功率损耗。添加0.5 wt%的V_(2)O_(5)和0.03 wt%BTO的样品获得了优良的磁性能,室温下起始磁导率μ_(i)为669、饱和磁感应强度B_(s)为373 mT、功率损耗P_(cv)为212 kW/m^(3)(1 MHz,30 mT)。 展开更多
关键词 NICUZN铁氧体 v_(2)O_(5)-BaTiO_(3)添加 低温烧结 高频损耗 磁性能
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Na_(3)V_(2)(PO_(4))_(3)的制备及其对二氧化碳的敏感性能研究
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作者 郝建淦 朱羽双 郑晓虹 《山东化工》 CAS 2024年第7期37-39,共3页
由于温室效应越来越严重,开发一种性能优异的二氧化碳传感器对其进行高效、准确地检测具有现实意义。本论文旨在于能够成功地制备出Na_(3)V_(2)(PO_(4))_(3)试样来对CO_(2)的气敏性能进行研究。采用高温固相球磨法以及溶胶凝胶法制备了... 由于温室效应越来越严重,开发一种性能优异的二氧化碳传感器对其进行高效、准确地检测具有现实意义。本论文旨在于能够成功地制备出Na_(3)V_(2)(PO_(4))_(3)试样来对CO_(2)的气敏性能进行研究。采用高温固相球磨法以及溶胶凝胶法制备了NVP材料,采用高温固相法合成了NASICON粉体,运用XRD、SEM技术研究了NVP与NASICON的晶体结构与微观形貌。以NASICON为固体电解质,以NVP为对电极材料,组装出了片式CO_(2)气体传感器,并进行了气体传感器性能研究。结果表明,传感器的最佳工作温度为150℃,在该温度下的灵敏度为2.03 nA/ppm。 展开更多
关键词 Na_(3)v_(2)(PO_(4))_(3) NaSICON 二氧化碳 电化学传感器 气敏性能
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改性水系钠离子电极材料Na_(3)V_(2)(PO_(4))_(3)的制备及性能
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作者 吕奕菊 梁勇清 +3 位作者 谭家栩 张晨霞 刘峥 邹品田 《材料工程》 EI CAS CSCD 北大核心 2023年第9期158-166,共9页
采用水热法合成水系钠离子电池正极材料Na_(3)V_(2)(PO_(4))_(3)(NVP),并通过非金属N和金属元素Al,Mn进行离子掺杂改性研究。考察掺杂量对NVP性能改性的影响,当Mn掺杂量为0.08 mol时,材料具有明显的层状结构,表现出最佳的放电比容量439.... 采用水热法合成水系钠离子电池正极材料Na_(3)V_(2)(PO_(4))_(3)(NVP),并通过非金属N和金属元素Al,Mn进行离子掺杂改性研究。考察掺杂量对NVP性能改性的影响,当Mn掺杂量为0.08 mol时,材料具有明显的层状结构,表现出最佳的放电比容量439.8 F/g。通过XRD,SEM,BET和XPS对样品结构和形貌进行表征,通过循环伏安和充放电测试结果分析样品的电化学性能。结果表明:所得样品均为纯相的NVP,离子掺杂并没有改变NVP的晶体结构;NVP/Al提高了颗粒的分散性,NVP/N和NVP/Mn形成孔道明显的层状结构。在1 A/g电流密度下,未掺杂的NVP的放电比容量为342 F/g,NVP/N的放电比容量为380.8 F/g,NVP/Al的放电比容量为405 F/g;NVP/Mn的放电比容量为439.8 F/g。由此可知,掺杂适量的金属离子和非金属离子能够显著提高水系NVP的电化学性能。 展开更多
关键词 Na_(3)v_(2)(PO_(4))_(3) 钠离子电池 电极材料 掺杂
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基于XGBoost算法的v_(P)/v_(S)预测及其在储层检测中的应用
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作者 田仁飞 李山 +1 位作者 刘涛 景洋 《石油地球物理勘探》 EI CSCD 北大核心 2024年第4期653-663,共11页
鄂尔多斯盆地碳酸盐岩地层蕴含着丰富的油气资源。在勘探实践中发现,大牛地气田马家沟组断层发育、断距小,类型多样且成因复杂,给勘探、开发带来了较多挑战。为了应对这些挑战,提高储层预测的精度变得至关重要。在分析大牛地气田敏感弹... 鄂尔多斯盆地碳酸盐岩地层蕴含着丰富的油气资源。在勘探实践中发现,大牛地气田马家沟组断层发育、断距小,类型多样且成因复杂,给勘探、开发带来了较多挑战。为了应对这些挑战,提高储层预测的精度变得至关重要。在分析大牛地气田敏感弹性参数的基础上,建立地震属性与储层纵横波速度比(v_(P)/v_(S))的关系,提出一种基于XGBoost算法的地震多属性v_(P)/v_(S)预测方法。为了进一步提升XGBoost算法的预测精度和泛化能力,采用贝叶斯算法对XGBoost算法的超参数进行优化,从而找到最佳的超参数组合,以确保模型在训练集和测试集上的性能均能得到提升。将XGBoost算法应用于Marmousi 2模型进行横波速度预测,预测值与实际值相关系数超过0.88,而均方误差、平均绝对百分比误差分别低于6.55×10^(-7)和4%,验证了该方法的准确性和可靠性。在鄂尔多斯盆地大牛地气田,应用该方法获得的v_(P)/v_(S)成功识别出含气储层,结果与实际钻井数据一致。理论模型和实际数据应用结果表明,XGBoost作为一种强大的机器学习算法预测精度较高,为直接由叠后地震属性预测v_(P)/v_(S)提供了一种有效的途径。 展开更多
关键词 横波速度 碳酸盐岩储层 地震属性 XGBoost算法 纵横波速度比(v_(P)/v_(S))
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深度小于30 m正常停钻V_(S30)预测公式精度分析
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作者 聂利英 韩刘 +1 位作者 邵云澜 冯江江 《防灾减灾学报》 2024年第1期29-37,54,共10页
我国钻孔测速中在正常停孔条件下产生大量深度小于30 m的钻孔数据。由于正常停钻,我国几乎没有此类场地下深度超30 m的钻孔实测数据,故无法以同类场地大于30 m数据直接回归V_(S30)公式。国外区域数据建立的V_(S30)预测公式有区域性,其... 我国钻孔测速中在正常停孔条件下产生大量深度小于30 m的钻孔数据。由于正常停钻,我国几乎没有此类场地下深度超30 m的钻孔实测数据,故无法以同类场地大于30 m数据直接回归V_(S30)公式。国外区域数据建立的V_(S30)预测公式有区域性,其在场地特征类似才适用;针对我国深度小于30 m正常停孔下V_(S30)预测线性外插公式LEE为具有潜在可行性公式。因此,为了从已有公式中得到可靠的V_(S30)预测公式,基于地质宏观类比,在停钻深度没有到30 m数据条件下发展了对已有公式的精度分析方法。通过对平均剪切波速竖向分布特点的分析,提出“精度分析区间”;并在缺乏停钻深度到30 m直接验证数据的前提下,提出两种分析公式预测精度的方法:方法一中校核对象是实测数据,具有一定直接检验的特点,但仅适用于具有反算能力的公式;方法二是基于所有公式都具有的——换算深度越靠近30 m则V_(S30)预测越准确的特点提出的,适用范围广。以滇中引水工程为案例,应用两种方法于该工程中深度小于30 m的正常停钻数据,为该工程选出精度最高公式LEE。 展开更多
关键词 v_(S30)预测公式 深度小于30 m钻孔 精度分析 平均剪切波速
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焙烧条件对Na_(3)V_(2)(PO_(4))_(3)/C的制备及储锌性能影响
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作者 梁勇清 许绍龙 +2 位作者 吕奕菊 刘峥 邹品田 《精细化工》 EI CAS CSCD 北大核心 2023年第3期638-649,672,共13页
采用喷雾干燥法合成了Na_(3)V_(2)(PO_(4))_(3)(NVP)前驱体,然后经过高温煅烧得到水系锌离子电池正极复合材料Na_(3)V_(2)(PO_(4))_(3)/C(NVP/C),考察了煅烧温度和煅烧时间对NVP/C性能的影响。通过XRD、SEM和BET对样品结构和形貌进行了... 采用喷雾干燥法合成了Na_(3)V_(2)(PO_(4))_(3)(NVP)前驱体,然后经过高温煅烧得到水系锌离子电池正极复合材料Na_(3)V_(2)(PO_(4))_(3)/C(NVP/C),考察了煅烧温度和煅烧时间对NVP/C性能的影响。通过XRD、SEM和BET对样品结构和形貌进行了表征,通过循环伏安和充放电测试了样品的电化学性能。结果表明,不同煅烧温度和煅烧时间制备样品均为纯相的NVP/C,且并没有改变NVP/C的晶体结构;煅烧温度过高或煅烧时间过长会导致晶粒尺寸增大,性能迅速衰减。NVP/C制备最佳条件为煅烧温度700℃、煅烧时间8 h,在该条件下所制备的NVP/C(记为NVP/C-700-8)形貌更为规整,结晶性良好,具有较小的阻抗以及更好的离子扩散能力,进而表现出最佳的电化学性能。在0.1 A/g电流密度下表现出最佳的放电比容量(122.4 mA·h/g)。在1.0 A/g电流密度下经过200圈循环后放电比容量仍高达103.9 mA·h/g。 展开更多
关键词 Na_(3)v_(2)(PO_(4))_(3) 锌离子电池 电极材料 电化学性能 有机电化学
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Rational construction of Ag@MIL-88B(V)-derived hierarchical porous Ag-V_(2)O_(5) heterostructures with enhanced diffusion kinetics and cycling stability for aqueous zinc-ion batteries 被引量:2
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作者 Yibo Zhang Zhihua Li +3 位作者 Liangjun Gong Xuyu Wang Peng Hu Jun Liu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第2期561-571,I0015,共12页
With the advantages of the multiple oxidation states and highly open crystal structures,vanadium-based composites have been considered as the promising cathode materials for aqueous zinc-ion batteries(ZIBs).However,th... With the advantages of the multiple oxidation states and highly open crystal structures,vanadium-based composites have been considered as the promising cathode materials for aqueous zinc-ion batteries(ZIBs).However,the inherent inferior electrical conductivity,low specific surface area,and sluggish Zn^(2+)diffusion kinetics of the traditional vanadium-based oxides have greatly impeded their development.Herein,a novel hierarchical porous spindle-shaped Ag-V_(2)O_(5) with unique heterostructures was rationally designed via a simple MOF-assisted synthetic method and applied as stable cathode for aqueous ZIBs.The high specific surface area and hierarchically porous superstructures endowed Ag-V_(2)O_(5) with sufficient electrochemical active sites and shortened the diffusion pathways of Zn^(2+),which was beneficial to accelerate the reversible transport of Zn^(2+)and deliver a high specific capacity(426 mA h g^(-1) at 0.1 A g^(-1) and 96.5%capacity retention after 100 cycles).Meanwhile,the self-built-in electric fields at the heterointerface of Ag-V_(2)O_(5) electrode could strengthen the synergistic coupling interaction between Ag and V_(2)O_(5),which can effectively enhance the electric conductivity and maintain the structural integrity,resulting in superb rate capability(326.1 mA h g^(-1) at 5.0 A g^(-1))and remarkable cycling stability(89.7%capacity retention after 2000 cycles at 5.0 A g^(-1)).Moreover,the reversible Zn^(2+)storage mechanism was further investigated and elucidated by kinetics analysis and DFT calculations. 展开更多
关键词 aqueous zinc-ion batteries Metal-organic frameworks v_(2)O_(5) HETEROSTRUCTURES Nano silver
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