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Water molecules and oxygen-vacancy modulation of vanadium pentoxide with fast kinetics toward ultrahigh power density and durable flexible all-solid-state zinc ion battery
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作者 Wenda Qiu Yunlei Tian +7 位作者 Shuting Lin Aihua Lei Zhangqi Geng Kaitao Huang Jiancong Chen Fuchun Huang Huajie Feng Xihong Lu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第10期581-591,I0014,共12页
Aqueous zinc ion battery(ZIB)with many virtues such as high safety,cost-effective,and good environmental compatibility is a large-scale energy storage technology with great application potential.Nevertheless,its appli... Aqueous zinc ion battery(ZIB)with many virtues such as high safety,cost-effective,and good environmental compatibility is a large-scale energy storage technology with great application potential.Nevertheless,its application is severely hindered by the slow diffusion of zinc ions in desirable cathode materials.Herein,a technique of water-incorporation coupled with oxygen-vacancy modulation is exploited to improve the zinc ions diffusion kinetics in vanadium pentoxide(V_(2)O_5)cathode for ZIB.The incorporated water molecules replace lattice oxygen in V_(2)O_5,and function as pillars to expand interlayer distance.So the structural stability can be enhanced,and the zinc ions diffusion kinetics might also be promoted during the repeated intercalation/deintercalation.Meanwhile,the lattice water molecules can effectively enhance conductivity due to the electronic density modulation effect.Consequently,the modulated V_(2)O_5(H-V_(2)O_5)cathode behaves with superior rate capacity and stable durability,achieving 234 mA h g^(-1)over 9000 cycles even at 20 A g^(-1).Furthermore,a flexible all-solid-state(ASS)ZIB has been constructed,exhibiting an admirable energy density of 196.6 Wh kg^(-1)and impressive power density of 20.4 kW kg^(-1)as well as excellent long-term lifespan.Importantly,the assembled flexible ASS ZIB would be able to work in a large temperature span(from-20 to 70℃).Additionally,we also uncover the energy storage mechanism of the H-V_(2)O_5 electrode,offering a novel approach for creating high-kinetics cathodes for multivalent ion storage. 展开更多
关键词 Interlayer engineering Water intercalation vanadium pentoxide Ion diffusion kinetics Zinc ion battery
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Free-standing vanadium pentoxide nanoribbon film as a high-performance cathode for rechargeable sodium batteries 被引量:2
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作者 Yi Sun Xin Liang +1 位作者 Hongfa Xiang Yan YU 《Chinese Chemical Letters》 SCIE CAS CSCD 2017年第12期2251-2253,共3页
Vanadium pentoxide (V2O5.nH2O) nanoribbons are synthesized via a hydrothermal process. These ribbons are 20nm thick, 200nm to 1 μm wide and several tens of micrometers long. Free-standing binder-free films are prep... Vanadium pentoxide (V2O5.nH2O) nanoribbons are synthesized via a hydrothermal process. These ribbons are 20nm thick, 200nm to 1 μm wide and several tens of micrometers long. Free-standing binder-free films are prepared by using these nanoribbons with multi-walled carbon nanotubes (MWCNTs) and used as the cathode for rechargeable sodium batteries. The large interlayer space between the V20s5 bilayers can enhance the kinetics of sodium ion intercalation/deintercalation. In addition, the intertwining network of the V2O5. 0.34H2O film provides efficient electron conduction pathways and shortens diffusion distances of sodium ion. The electrochemical tests prove that the free- standing V2O5. 0.34H2O film cathode delivers high reversible specific capacities (190 mAh/g) and good cycling stabilities (170 mAh/g after 150 cycles) in the voltage range between 1.5V and 3.5V. 展开更多
关键词 vanadium pentoxide CATHODE Free-standing electrode Rechargeable sodium batteries
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Facile Synthesis,Characterization of Flower-Like Vanadium Pentoxide Powders and Their Photocatalytic Behavior
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作者 Yao Li Jian-Lei Kuang +1 位作者 Yi Lu Wen-Bin Cao 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2017年第10期1017-1026,共10页
In this paper, V2O5 sol was firstly prepared using vanadyl sulfate as a vanadium source by modified sol-gel method at room temperature. Then flower-like V2O5 powders were prepared by coagulating as-prepared sol with a... In this paper, V2O5 sol was firstly prepared using vanadyl sulfate as a vanadium source by modified sol-gel method at room temperature. Then flower-like V2O5 powders were prepared by coagulating as-prepared sol with anhydrous ethanol and subsequent annealing crystallization. The X-ray diffraction analysis indicated that V2O5 powders exhibited orthorhombic crystal structure after annealing at 450 ℃. The experimental data obtained from both field emission scanning electron microscopy and high-resolution transmission electron microscopy identified that V2O5 powders were approximately flower-like in shape and about 5 μm in size. Besides, the Brunauer-Emmett-Teller specific surface area of flowerlike V2O5 powders was 24.25 m^2/g. According to Uv-Vis spectroscopy, the degradation rate of toluidine blue O(TBO) on as-prepared flower-like V2O5 powders during 10 h of visible light irradiation with an intensity of 15.4 mW/m^2 was 88%,which was faster than those over P25(46%) as a comparison. In addition, the mineralization process of TBO was investigated, which primarily consisted of demethylation and ring-opening oxidation processes, and confirmed by liquid chromatograph-mass spectrometry. The precipitation-oxidation-peptization, coagulation, and crystallization processes were proposed as the formation mechanism for the preparation of flower-like V2O5. 展开更多
关键词 vanadium pentoxide PHOTOCATALYST Toluidine Blue O MECHANISM DEMETHYLATION
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Fluorinated inverse opal carbon nitride combined with vanadium pentoxide as a Z-scheme photocatalyst with enhanced photocatalytic activity
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作者 Ningkai Ding Bin Chen +4 位作者 Liang Zhou Lingzhi Wang Yongdi Liu Jinlong Zhang Juying Lei 《Chinese Chemical Letters》 SCIE CAS CSCD 2022年第8期3797-3801,共5页
In this work,Z-scheme V_(2)O_(5) loaded fluorinated inverse opal carbon nitride(IO F-CN/V_(2)O_(5)) was synthesized as a product of ternary collaborative modification with heterostructure construction,element doping a... In this work,Z-scheme V_(2)O_(5) loaded fluorinated inverse opal carbon nitride(IO F-CN/V_(2)O_(5)) was synthesized as a product of ternary collaborative modification with heterostructure construction,element doping and inverse opal structure.The catalyst presented the highest photocatalytic activity and rate constant for degradation of typical organic pollutants Rhodamine B(RhB)and was also used for the efficient removal of antibiotics,represented by norfloxacin(NOR),sulfadiazine(SD)and levofloxacin(LVX).Characterizations confirmed its increased specific surface area,narrowed bandgap,and enhanced visible light utilization capacity.Further mechanism study including band structure study and electron paramagnetic resonance(EPR)proved the successful construction of Z-scheme heterojunction,which improved photogenerated charge carrier migration and provide sufficient free radicals for the degradation process.The combination of different modifications contributed to the synergetic improvement of removal efficiency towards different organic pollutants. 展开更多
关键词 Carbon nitride Inverse opal structure vanadium pentoxide Fluorinate Organic pollutants degradation
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Vanadium recovery from clay vanadium mineral using an acid leaching method 被引量:23
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作者 LI Haoran FENG Yali +2 位作者 LIANG Jianglong LUO Xiaobing DU Zhuwei 《Rare Metals》 SCIE EI CAS CSCD 2008年第2期116-120,共5页
A technique including direct acid leaching, vanadium precipitation with alkaline, sodium hydroxide releaching, impurity removing by adjusting pH value, precipitation vanadium with ammonium chloride, and vanadium pento... A technique including direct acid leaching, vanadium precipitation with alkaline, sodium hydroxide releaching, impurity removing by adjusting pH value, precipitation vanadium with ammonium chloride, and vanadium pentoxide by roasting steps was proposed according to the characteristic of Xichuan clay vanadium mineral. The factors influencing leaching vanadium such as temperature and the concentration of sulfuric acid were investigated and optimized. The experimental results indicate that the extract ratios of V205 can reach 94% and 92% at a sodium chlorate ratio of 3% and a manganese dioxide ratio of 3%, respectivdy. A completely chemical precipitation method was adopted to decontaminate and enrich the vanadium in the acid leaching solution. The X-ray diffraction (XRD) pattern and the purity analysis of vanadium pentoxide indicate that the purity of final vanadium pentoxide can reach 99% and meet the standard specifications. The total recovery can reach about 75%. The technique has the characteristics of simplicity, less investment, and more environment safety as compared with the traditional salt roasting method. 展开更多
关键词 clay vanadium mineral vanadium EXTRACTION acid leaching vanadium pentoxide
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Direct electrochemical reduction of solid vanadium oxide to metal vanadium at low temperature in molten CaCl_2-NaCl 被引量:11
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作者 Zhuo-fei Cai Zhi-mei Zhang Zhan-cheng Guo Hui-qing Tang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2012年第6期499-505,共7页
V205 sintered pellets and graphite rods were employed as the cathode and the anode, respectively; a molten CaC12-NaCI salt was used as the electrolyte. Then, V205 was directly reduced to metal vanadium by the Fray-Far... V205 sintered pellets and graphite rods were employed as the cathode and the anode, respectively; a molten CaC12-NaCI salt was used as the electrolyte. Then, V205 was directly reduced to metal vanadium by the Fray-Farthing-Chen (FFC) method at 873 K to realize low-temperature electrolysis. Two typical experimental conditions, electrolysis time and voltage, were taken into account to investigate the current efficiency and remaining oxygen content in electrolyzed products. The composition and microstmcture of the products were charac- terized by X-ray diffraction (XRD) and scanning electron microscopy (SEM). SEM observations show that a higher voltage (1.8-3.4 V) and a longer electrolysis time (2-5 h) can improve the product quality separately, that is, a lower remaining oxygen content and a more uniform microstructure. The products with an oxygen content of 0.205wt% are successfully obtained below 3.4 V for 10 h. However, the current effi- ciency is low, and further work is required. 展开更多
关键词 vanadium metallurgy vanadium pentoxide direct reduction ELECTROLYSIS
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Structure of V_2O_5-P_2O_5-Sb_2O_3-Bi_2O_3 glass 被引量:1
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作者 Hong-yan Li Zhi-liang Zhu +3 位作者 Feng-li Yang Wei-dong Zhuang Yun-sheng Hu Xiao-fan Wen 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2012年第7期628-635,共8页
The structure ofV2O5-P2O5-Sb2O3-Bi2O3glass and its state of crystallization were studied by means of infrared spectroscopy and X-ray diffraction analysis. The results indicate that, in this glass, V and P exist mainly... The structure ofV2O5-P2O5-Sb2O3-Bi2O3glass and its state of crystallization were studied by means of infrared spectroscopy and X-ray diffraction analysis. The results indicate that, in this glass, V and P exist mainly in the form of a single-stranded linear (VO3)n and an isolated (PO4) tetrahedral with no double bond. Partial V and P are connected through O, forming an amorphous structure of layered vana- dium phosphate. Trivalent Sb3+ and Bi3+ open the V=O bond and appear in interlayers, so a weak three-dimensional structure is connected successfully. Along with the substitution of Sb203 for partial V205 or that of P205 for partial V205, the network structure of the glass is rein- forced, and the crystallization is reduced. 展开更多
关键词 GLASS STRUCTURE SEALING vanadium pentoxide phosphorus pentoxide antimonous oxide bismuth trioxide
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Preparation of narrow band gap V_2O_5/TiO_2 composite films by micro-arc oxidation 被引量:1
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作者 Qiang Luo Xin-wei Li +2 位作者 Qi-zhou Cai Qing-song Yan Zhen-hua Pan 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2012年第11期1045-1051,共7页
V2Os/TiO2 composite films were prepared on pure titanium substmtes via micro-arc oxidation (MAO) in electrolytes consisting of NaVO3. Their morphology and dements were characterized by scanning electron microscopy ... V2Os/TiO2 composite films were prepared on pure titanium substmtes via micro-arc oxidation (MAO) in electrolytes consisting of NaVO3. Their morphology and dements were characterized by scanning electron microscopy (SEM) and energy-dispersive X-ray (EDX) analysis. Phase composition and valence states of species in the films were characterized by X-ray diffraction (XRD) and X-ray photoelec- tron spectroscopy (XPS). Ultraviolet-visible diffuse reflectance spectra (UV-Vis DRS) were also employed to evaluate the photophysical property of the films. The VEOs/TiO2 composite films show a sheet-like morphology. Not only V205 phase appears in the films when the NaVO3 concentration of the electrolyte is higher than 6,10 g/L and is loaded at the surface of anatase, but also V4+ is incorporated into the crystal lattice of anatase. In comparison with pure TiO2 films the V2Os/TiO2 composite films exhibit significantly narrow band gap energy. The film prepared in an electrolyte consisting of NaVO3 with a concentration of 8.54 g/L exhibits the narrowest band gap energy, which is approximately 1.89 eV. The V2Os/TiO2 composite films also have the significantly enhanced visible light photocatalytic activity. The film prepared in an electrolyte consisting of NaVO3 with a concentration of 8.54 g/L exhibits the best photocatalytic activity and about 93% of rhodamine is degraded after 14 h visible light radiation. 展开更多
关键词 composite films titanium dioxide vanadium pentoxide micro-arc oxidation sodium metavanadate RHODAMINE PHOTOCATALYSIS
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A porous puckered V_(2)O_(5) polymorph as new high performance cathode material for aqueous rechargeable zinc batteries 被引量:1
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作者 Dauren Batyrbekuly Barbara Laïk +2 位作者 Jean-Pierre Pereira-Ramos Zhumabay Bakenov Rita Baddour-Hadjean 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第10期459-468,I0012,共11页
Aqueous rechargeable zinc batteries are getting increasing attention for large-scale energy storage owing to their advantages in terms of cost,environmental friendliness and safety.Here,the layered puckeredγ’-V_(2)O... Aqueous rechargeable zinc batteries are getting increasing attention for large-scale energy storage owing to their advantages in terms of cost,environmental friendliness and safety.Here,the layered puckeredγ’-V_(2)O_(5) polymorph with a porous morphology is firstly introduced as cathode for an aqueous zinc battery system in a binary Zn^(2+)/Li^(+)electrolyte.The Zn‖γ’-V_(2)O_(5) cell delivers high capacities of 240 and190 mAh g^(-1) at current densities of 29 and 147 mA g^(-1),respectively,and remarkable cycling stability in the 1.6 V-0.7 V voltage window(97%retention after 100 cycles at 0.15 A g^(-1)).The detailed structural evolution during first discharge-charge and subsequent cycling is investigated using X-ray diffraction and Raman spectroscopy.We demonstrate a reaction mechanism based on a selective Li insertion in the1.6 V-1.0 V voltage range.It involves a reversible exchange of 0.8 Li^(+)in γ’-V_(2)O_(5) and the same structural response as the one reported in lithiated organic electrolyte.However,in the extended 1.6 V-0.7 V voltage range,this work puts forward a concomitant and gradual phase transformation from γ’-V_(2)O_(5) to zinc pyrovanadate Zn_(3)V_(2)O_(7)(OH)2.2 H_(2)O(ZVO)during cycling.Such mechanism involving the in-situ formation of ZVO,known as an efficient Zn and Li intercalation material,explains the high electrochemical performance here reported for the Zn‖γ’-V_(2)O_(5) cell.This work highlights the peculiar layered-puckeredγ’-V_(2)O_(5) polymorph outperforms the conventionalα-V_(2)O_(5) with a huge improvement of capacity of 240 mAh g^(-1)vs 80 mAh g^(-1) in the same electrolyte and voltage window. 展开更多
关键词 vanadium pentoxide γ-V_(2)O_(5) Cathode Aqueous zinc battery High performance Layered structure Energy storage Renewable energy
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Formation of Na_(1+x)V_3O_8 Nanoribbon Thin Film from V_2O_5 Xerogel on Sodium Silicate Glass Substrate
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作者 GUO Yi XU Jin-jie LI Jun YANG Wen-sheng 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2007年第4期381-383,共3页
Na1+xV3O8 nanoribbon thin film was successfully fabricated by annealing the V2O5 xerogel film on sodium sili-cate glass substrate at 450℃. It has been identified that the amount of sodium ions diffused into the V2O5... Na1+xV3O8 nanoribbon thin film was successfully fabricated by annealing the V2O5 xerogel film on sodium sili-cate glass substrate at 450℃. It has been identified that the amount of sodium ions diffused into the V2O5 xerogel film increases with the high temperature of annealing treatment. The sodium glass substrate serves as a limited sodium source to induce the transformation from V2O5 to Na1+xV3O8. 展开更多
关键词 vanadium pentoxide Sodium silicate glass NANORIBBON Cathode materials
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Electrochemical and structural evolution of structured V_(2)O_(5) microspheres during Li-ion intercalation
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作者 Sul Ki Park Puritut Nakhanivej +6 位作者 Jeong Seok Yeon Kang Ho Shin Wesley M.Dose Michael De Voider Jin Bae Lee Hae Jin Kim Ho Seok Park 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第4期108-113,共6页
With the development of stable alkali metal anodes,V_(2)O_(5) is gaining traction as a cathode material due to its high theoretical capacity and the ability to intercalate Li,Na and K ions.Herein,we report a method fo... With the development of stable alkali metal anodes,V_(2)O_(5) is gaining traction as a cathode material due to its high theoretical capacity and the ability to intercalate Li,Na and K ions.Herein,we report a method for synthesizing structured orthorhombic V_(2)O_(5) microspheres and investigate Li intercalation/deintercalation into this material.For industry adoption,the electrochemical behavior of V_(2)O_(5) as well as structural and phase transformation attributing to Li intercalation reaction must be further investigated.Our synthesized V_(2)O_(5) microspheres consisted of small primary particles that were strongly joined together and exhibited good cycle stability and rate capability,triggered by reversible volume change and rapid Li ion diffusion.In addition,the reversibility of phase transformation(a,e,d,c and xLixV_(2)O_(5))and valence state evolution(5+,4+,and 3.5+)during intercalation/de-intercalation were studied via in-situ X-ray powder diffraction and X-ray absorption near edge structure analyses. 展开更多
关键词 Lithium ion batteries vanadium pentoxide(V2O5) In-situ analysis Phase transformation Intercalation/de-intercalation
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Synthesis and Characterization of Self-Assembled V_2O_5 Mesostructures Intercalated by Polyaniline
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作者 LiLi ZifengYan 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2005年第1期35-39,共5页
A new nanocomposite of vanadium pentoxide (V_2O_5) and polyaniline (PANI)were synthesized by in situ oxidative polymerization/intercalation on V_2O_5 powder at roomtemperature. The reaction was facile and topotactic, ... A new nanocomposite of vanadium pentoxide (V_2O_5) and polyaniline (PANI)were synthesized by in situ oxidative polymerization/intercalation on V_2O_5 powder at roomtemperature. The reaction was facile and topotactic, forming polyaniline as the emeraldine salt. Itwas indicated that V_2O_5 itself can catalyze the oxidative polymerization of aniline and thatlayered structure could make aniline intercalate into the V_2O_5 framework. It makes the in situpolymerization feasible to occur in the layer of V_2O_5 structure. XRD results showed PANI/V_2O_5nanocomposite possessed lamellar mesostructure, which was determined by an X-ray diffraction peak at6.5° and SEM photograph. And FT-IR spectrum suggested that there was interaction between PANI andV_2O_5. The hybrid had better thermal stability in N_2 and air ambience. 展开更多
关键词 in situ POLYMERIZATION vanadium pentoxide POLYANILINE
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Studies on Kinetic Properties of Active Oxygen on the Surfaces of V_2O_5/SiO_2, V_2O_5-MoO_3/SiO_2 and V_2O5-P_2O5/SiO_2 Catalysts
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作者 Zheng Xiaoming, Zhu Yifei and Zhou Lihua (Department of Chemistry, Hangzhou University, Hangzhou) 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 1989年第4期304-312,共9页
Applying the TPD-MS with a high sensitivity of determination, the TPD spectrum of surface oxygen of V2O5/SiO2, V2O5-MoO3/SiO2 and V2O6-P2O5/SiO2 catalysts was obtained. The surface oxygen of these catalysts can be div... Applying the TPD-MS with a high sensitivity of determination, the TPD spectrum of surface oxygen of V2O5/SiO2, V2O5-MoO3/SiO2 and V2O6-P2O5/SiO2 catalysts was obtained. The surface oxygen of these catalysts can be divided into three groups according to the desorption temperature. O2- desorbs mainly from 373K. to 423K, O- from 673K to 873K and O2- at above 873K. The activation energy and frequency factor of all the three kinds of oxygen species were calculated. Based on these results, the mechanism of oxygen desorption and the influence of P2O5 and MoO3 on the properties of oxygen supply of V2O5/SiO2 catalst were investigated. MoO3 and a small amount of P2Os increase the number of supplying oxygen and increase the activity of O- species. A large amount of P2O5 increases the number of supplying oxygen and restrains the activity of O- species. 展开更多
关键词 Catalyst vanadium pentoxide Oxygen
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Calcium ion pinned vanadium oxide cathode for high-capacity and long-life aqueous rechargeable zinc-ion batteries 被引量:2
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作者 Min Du Feng Zhang +5 位作者 Xiaofei Zhang Wentao Dong Yuanhua Sang Jianjun Wang Hong Liu Shuhua Wang 《Science China Chemistry》 SCIE EI CAS CSCD 2020年第12期1767-1776,共10页
Rechargeable aqueous zinc ion batteries (ZIBs),with the easy operation,cost effectiveness,and high safety,are emerging candidates for high-energy wearable/portable energy storage systems.Unfortunately,the unsatisfacto... Rechargeable aqueous zinc ion batteries (ZIBs),with the easy operation,cost effectiveness,and high safety,are emerging candidates for high-energy wearable/portable energy storage systems.Unfortunately,the unsatisfactory energy density and undesired long-term cycling performance of the cathode hinder the development of ZIBs.Here,we report the chemical preintercalation of a small amount of calcium ions into V2O5 as the cathode material.The cathode of Ca0.04V2O5·1.74H2O (CVO)was demonstrated to have a high specific capacity of 400 mA h g^-1at the current density of 0.05 A g^-1and 187 mA h g^-1at 10 A g^-1,along with impressive capacity retention (100%capacity retention at 10 A g^-1 for 3,000 cycles).Meanwhile,the CVO//Zn battery exhibits a high energy density of 308 Wh kg^-1and a power density of 467 W kg^-1at 0.5 A g^-1.The superior performance originates from the pinning effect of the calcium ions and the lubricating effect of the structural water.The energy storage mechanism of the CVO cathode was also investigated in detail.The new phase (Zn3(OH)2V2O7·2H2O) generated upon cycling participates in the electrochemical reaction and thus contributes to the excellent electrochemical performance.The small amount of Ca^2+ pre-inserted into the interlayer of V2O5 sheds light on constructing cathodes with high energy density for ZIBs. 展开更多
关键词 aqueous zinc-ion battery ion pre-intercalation vanadium pentoxide phase transition energy storage mechanism
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Vanadium-Doped Magnesium Oxide Nanoparticles Formation in Presence of Ionic Liquids and Their Use in Photocatalytic Degradation of Methylene Blue
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作者 Harshad R.Patil Z.V.P.Murthy 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2016年第3期253-264,共12页
Magnesium oxide(MgO) is one of the metal oxides having unique properties with numerous potential industrial applications.In this study,MgO and vanadium-doped MgO nanoparticles were synthesized by sol–gel method in ... Magnesium oxide(MgO) is one of the metal oxides having unique properties with numerous potential industrial applications.In this study,MgO and vanadium-doped MgO nanoparticles were synthesized by sol–gel method in 1-butyl-3-methylimidazolium tetrafluoroborate [BMIM][BF_4] and 1-octyl-3-methylimidazolium tetrafluoroborate [OMIM][BF_4] ionic liquids.Vanadium-doped MgO nanoparticles exhibited nanosphere and nanorod morphologies with 40–80 nm in particle size,primarily due to the influence of ionic liquids as demonstrated by high-resolution scanning electron microscopy and transmission electron microscopy.Characteristics of nanoparticles were also studied by thermal gravimetric analysis,X-ray diffraction and energy-dispersive X-ray spectroscopy.Photodegradation ability of synthesized nanoparticles was evaluated for methylene blue(MB) in specially designed UV reactor.Photodegradation is found to be dependent on doping,and particle characteristics change due to the influence of ionic liquid.The ionic liquid-assisted vanadium-doped MgO nanoparticles showed good reusability under UV irradiation and MB degradation ability under visible light. 展开更多
关键词 Ionic liquid vanadium pentoxide Magnesium oxide Sol–gel Photocatalytic activity
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Transport Properties of K_xV_2O_5·nH_2O Nanocrystalline Films
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作者 A.A.Bahgat H.A.Mady +2 位作者 A.S.Abdel Moghny A.S.Abd-Rabo Samia E.Negm 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2011年第10期865-872,共8页
Five different compositions of KxV2O5-nH2O (where prepared by the sol-gel process. Electrical conductiv x=0.00, 0.0017, 0.0049, 0.0064 and 0.0091 mol) were ty and thermoelectric power were measured parallel to the s... Five different compositions of KxV2O5-nH2O (where prepared by the sol-gel process. Electrical conductiv x=0.00, 0.0017, 0.0049, 0.0064 and 0.0091 mol) were ty and thermoelectric power were measured parallel to the substrate surface in the temperature range of 300-480 K. The electrical conductivity showed that all samples were semiconductors and that conductivity increased with increasing K content. The conductivity of the present system was primarily determined by hopping carrier mobility. The carrier density was evaluated as well. The conduction was confirmed to obey non-adiabatic small polaron hopping. The thermoelectric power or Seebeck effect, increased with increasing K ions content. The results obtained indicated that an n-type semiconducting behavior within the temperature range was investigated. 展开更多
关键词 vanadium pentoxide xerogel Nanocrystalline film Electrical conductivity Small polaron hopping
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