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Electrodeposition of chitosan/graphene oxide conduit to enhance peripheral nerve regeneration 被引量:2
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作者 Ya-Nan Zhao Ping Wu +6 位作者 Zi-Yuan Zhao Fei-Xiang Chen Ao Xiao Zhi-Yi Yue Xin-Wei Han Yong Zheng Yun Chen 《Neural Regeneration Research》 SCIE CAS CSCD 2023年第1期207-212,共6页
Currently available commercial nerve guidance conduits have been applied in the repair of peripheral nerve defects.However,a conduit exhibiting good biocompatibility remains to be developed.In this work,a series of ch... Currently available commercial nerve guidance conduits have been applied in the repair of peripheral nerve defects.However,a conduit exhibiting good biocompatibility remains to be developed.In this work,a series of chitosan/graphene oxide(GO)films with concentrations of GO varying from 0-1 wt%(collectively referred to as CHGF-n)were prepared by an electrodeposition technique.The effects of CHGF-n on proliferation and adhesion abilities of Schwann cells were evaluated.The results showed that Schwann cells exhibited elongated spindle shapes and upregulated expression of nerve regeneration-related factors such as Krox20(a key myelination factor),Zeb2(essential for Schwann cell differentiation,myelination,and nerve repair),and transforming growth factorβ(a cytokine with regenerative functions).In addition,a nerve guidance conduit with a GO content of 0.25%(CHGFC-0.25)was implanted to repair a 10-mm sciatic nerve defect in rats.The results indicated improvements in sciatic functional index,electrophysiology,and sciatic nerve and gastrocnemius muscle histology compared with the CHGFC-0 group,and similar outcomes to the autograft group.In conclusion,we provide a candidate method for the repair of peripheral nerve defects using free-standing chitosan/GO nerve conduits produced by electrodeposition. 展开更多
关键词 CHITOSAN electrodeposition FREE-STANDING graphene oxide nerve conduit nerve factors Schwann cells tissue engineerin
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Inverse-opal structured TiO_(2) regulating electrodeposition behavior to enable stable lithium metal electrodes
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作者 Xuewen Wu Shaolun Cui +3 位作者 Minfei Fei Sheng Liu Xueping Gao Guoran Li 《Green Energy & Environment》 SCIE EI CAS CSCD 2023年第6期1664-1672,共9页
Lithium metal anode is almost the ultimate choice for high-energy density rechargeable batteries, but its uneven electrochemical dissolution-deposition characteristics lead to poor cycle stability and lithium dendrite... Lithium metal anode is almost the ultimate choice for high-energy density rechargeable batteries, but its uneven electrochemical dissolution-deposition characteristics lead to poor cycle stability and lithium dendrites safety problems. The fundamental solution to the problems is to interfere electrodeposition process of lithium metal so that it can be carried out reversibly and stably. In this work, an inverse-opal structured TiO2membrane with a thickness of only ~1 μm is designed to regulate the electrodeposition behavior of lithium metal, in which the ordered channels homogenize mass transfer process, the anatase TiO_(2)walls of the ion channels reduce desolvation barrier of solvated lithium-ions, and the spherical cavities with a diameter of ~300 nm confine migration of the adsorbed lithium atoms during electrocrystallization to diminish overpotential of lithium. These systematic effects cover and essentially change the whole process of electrodeposition of lithium metal and eliminate the possibility of lithium dendrite formation. The as-obtained lithium metal electrode delivers a Coulombic efficiency of 99.86% in the 100th cycle, and maintains a low deposition overpotential of 0.01 V for 800 h. 展开更多
关键词 Lithium metal anode Inverse-opal structure TiO2 electrodeposition Lithium-sulfur battery
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Three-dimensional structural Cu^(6)Sn_(5)/carbon nanotubes alloy thin-film electrodes fabricated by in situ electrodeposition from the leaching solution of waste-printed circuit boards
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作者 Shuqing Nie Yu Xin +4 位作者 Qiuyun Wang Chengjin Liu Chang Miao Limin Yu Wei Xiao 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2023年第6期1171-1180,共10页
Tin-based materials are very attractive anodes because of their high theoretical capacity,but their rapid capacity fading from volume expansions limits their practical applications during alloying and dealloying proce... Tin-based materials are very attractive anodes because of their high theoretical capacity,but their rapid capacity fading from volume expansions limits their practical applications during alloying and dealloying processes.Herein,the improved binder-free tin-copper intermetallic/carbon nanotubes(Cu6Sn5/CNTs)alloy thin-film electrodes are directly fabricated through efficient in situ electrodeposition from the leaching solution of treated waste-printed circuit boards(WPCBs).The characterization results show that the easily agglomerated Cu6Sn5 alloy nanoparticles are uniformly dispersed across the three-dimensional network when the CNTs concentration in the electrodeposition solution is maintained at 0.2 g·L−1.Moreover,the optimal Cu6Sn5/CNTs-0.2 alloy thin-film electrode can not only provide a decent discharge specific capacity of 458.35 mAh·g^(−1)after 50 cycles at 100 mA·g^(−1)within capacity retention of 82.58%but also deliver a relatively high reversible specific capacity of 518.24,445.52,418.18,345.33,and 278.05 mAh·g^(−1)at step-increased current density of 0.1,0.2,0.5,1.0,and 2.0 A·g^(−1),respectively.Therefore,the preparation process of the Cu6Sn5/CNTs-0.2 alloy thin-film electrode with improved electrochemical performance may provide a cost-effective strategy for the resource utilization of WPCBs to fabricate anode materials for lithium-ion batteries. 展开更多
关键词 tin-copper intermetallic in situ electrodeposition carbon nanotubes anode material lithium-ion battery
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Effect of Electrodeposition Methods of Cuprous Oxide on Antibacterial Properties of Concrete
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作者 徐怡 XU Ning +5 位作者 GUO Mingzhi LUO Jie LI Yi 储洪强 ZENG Youxu JIANG Linhua 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2023年第4期823-833,共11页
Three types of electrodeposition,DC electrodeposition,low-frequency pulsed electrodeposition and high-frequency pulsed electrodeposition,were used to deposit cuprous oxide on the concrete surface to improve the antiba... Three types of electrodeposition,DC electrodeposition,low-frequency pulsed electrodeposition and high-frequency pulsed electrodeposition,were used to deposit cuprous oxide on the concrete surface to improve the antibacterial properties of concrete.The effects of pulse deposition frequency on the antibacterial property of concrete were studied using sulfate-reducing bacteria(SRB)and Escherichia coli(E.coli)as model bacteria.The bacterial concentration and the antibacterial rate were measured to evaluate the antibacterial performance of concrete.The effects of different deposition methods on the elemental content of copper and the amount of copper ions exuded were studied.XRD and SEM were used to analyze the microstructure of the deposited layers.The experimental results show that the concrete treated by electrodeposition exhibited good antibacterial properties against SRB and E.coli.The antibacterial effect of cuprous oxide deposited on concrete by pulse method was better than that by direct current(DC)method.The antibacterial rate of concrete was positively correlated with the exudation rate of copper ion.As the pulse frequency increased,the deposits content on the surface was increased with an accompanying improvement in the antibacterial property.Besides,the pulsed current had an indiscernible effect on the composition of the sediments,which were all mainly composed of Cu_(2)O,but the morphology of the Cu_(2)O differed greatly.Cubic octahedral cuprous oxide had better antibacterial properties with the highest copper ion leaching rate compared with cubic and spherical cuprous oxide. 展开更多
关键词 cuprous oxide electrodeposition mode microbial corrosion antibacterial properties
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Electrodeposition of aluminium and aluminium-copper alloys from a room temperature ionic liquid electrolyte containing aluminium chloride and triethylamine hydrochloride 被引量:10
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作者 P.V. Suneesh T.G. Satheesh Babu T. Ramachandran 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2013年第9期909-916,共8页
The electrodeposition of A1 and A1-Cu binary alloys on to gold substrates from a room temperature ionic liquid electrolyte containing A1C13-EtaNHC1 was studied. The electrochemical behavior of the electrolyte and the ... The electrodeposition of A1 and A1-Cu binary alloys on to gold substrates from a room temperature ionic liquid electrolyte containing A1C13-EtaNHC1 was studied. The electrochemical behavior of the electrolyte and the mechanism of deposition were investigated through cyclic voltammetry (CV), and the properties of deposits obtained were assessed by scanning electron microscopy with energy dispersive X-ray spectroscopy (SEM-EDS) and X-ray diffraction (XRD). A1 of 70μm in thickness and an A1-Cu alloy of 30μm in thickness with 8at% copper were deposited from the electrolyte. SEM images of the deposits indicate that the A1 deposit was smooth and uniform, whereas the Al-Cu deposit was nodular. The average crystalline size, as determined by XRD patterns, was found to be (30±5) and (29±5) nm, respectively, for A1 and A1-Cu alloys. Potentiodynamic polarization (Tafel plots) and electrochemical impedance spectroscopic (EIS) measurements showed that Al-Cu alloys are more corrosion resistant than Al. 展开更多
关键词 electrodeposition aluminium copper alloys ionic liquids triethylamine hydrochloride copper acetylacetonate
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Electrochemical behaviors of Zn-Fe alloy and Zn-Fe-TiO_2 composite electrodeposition 被引量:10
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作者 王云燕 彭文杰 +1 位作者 柴立元 舒余德 《Journal of Central South University of Technology》 EI 2003年第3期183-189,共7页
Electrochemical behaviors of Zn-Fe alloy and Zn-Fe-TiO2 composite electrodeposition in alkaline zincatesolutions were studied respectively by the methods of linear potential sweep and cyclic voltammetry. From the re-s... Electrochemical behaviors of Zn-Fe alloy and Zn-Fe-TiO2 composite electrodeposition in alkaline zincatesolutions were studied respectively by the methods of linear potential sweep and cyclic voltammetry. From the re-sults it can be concluded that Zn shows under potential deposition, Zn-Fe alloy codeposition is anomalous codeposi-tion and Zn-Fe alloy cathode polarization is increased with the introduction of additive. From the view point of elec-trochemistry, the reasons that the content of Fe in the Zn-Fe coating changes with the composition of the electrolyteand the process conditions altering and the relationship between the content of Fe and the appearance of the coatingare interpreted. The cathode polarization of Zn-Fe alloy codeposition is enhanced obviously with addition of additive.In the course of composite electrodeposition, TiO2 has less promotion to electrodeposition of zinc ions than to iron i-ons, while the electrodeposition of iron ions improves the content of TiO2 in composite coating, which is inagreement with the results of process experiments. 展开更多
关键词 ZN-FE ALLOY electrodeposition Zn-Fe-TiO2 COMPOSITE ELECTROCHEMICAL BEHAVIOR
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Direct electrodeposition of ionic liquid-based template-free Sn Co alloy nanowires as an anode for Li-ion batteries 被引量:6
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作者 Le-ping Wang Gang Chen +3 位作者 Qi-xin Shen Guo-min Li Shi-you Guan Bing Li 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2018年第9期1027-1034,共8页
Sn Co alloy nanowires were successfully electrodeposited from Sn Cl2-Co Cl2-1-ethyl-3-methylimidazolium chloride(EMIC) ionic liquid without a template. The nanowires were obtained from the molar ratio of 5:40:60 for S... Sn Co alloy nanowires were successfully electrodeposited from Sn Cl2-Co Cl2-1-ethyl-3-methylimidazolium chloride(EMIC) ionic liquid without a template. The nanowires were obtained from the molar ratio of 5:40:60 for Sn Cl2(25)Co Cl2(25)EMIC at-0.55 V and showed a minimum diameter of about 50 nm and lengths of over 20 μm. The as-fabricated SnCo nanowires were about 70 nm in diameter and featured a Sn/Co weight ratio of 3.85:1, when used as an anode for a Li-ion battery, they presented respective specific capacities of 687 and 678 m Ah·g^(-1) after the first charge and discharge cycle and maintained capacities of about 654 m Ah·g^(-1) after 60 cycles and 539 m Ah·g^(-1) after 80 cycles at a current density of 300 m A·g^(-1). Both the nanowire structure and presence of elemental Co helped buffer large volume changes in the Sn anode during charging and discharging to a certain extent, thereby improving the cycling performance of the Sn anode. 展开更多
关键词 SnCo alloy NANOWIRES template electrodeposition ionic liquid
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Electrodeposition:Synthesis of advanced transition metal-based catalyst for hydrogen production via electrolysis of water 被引量:6
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作者 Ruopeng Li Yun Li +6 位作者 Peixia Yang Dan Wang Hao Xu Bo Wang Fan Meng Jinqiu Zhang Maozhong An 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第6期547-566,I0013,共21页
Developing lower-cost and higher-effective catalyst to support hydrogen(H_(2))production by electrochemical water-splitting has been recognized as a preferred strategy to drive the clean energy utilization.As a credib... Developing lower-cost and higher-effective catalyst to support hydrogen(H_(2))production by electrochemical water-splitting has been recognized as a preferred strategy to drive the clean energy utilization.As a credible technology for the synthesis of functional materials,electrodeposition has attracted widespread attention,especially suitable for non-noble transition metal-based catalysts(TMCs).Recently,lots of researchers have been devoted to this hot research direction with plentiful achievements,however,a comprehensive review towards this area is still missing.Hence,we summarize the past research progress,presents the technical characteristics of electrodeposition from the viewpoint of fundamental theory and influence factors for the electrochemical deposition behavior,and introduce its application in various of TMCs with versatile nanostructures and compositions.Except a deeper and more comprehensive cognition of electrodeposition,we further discuss the catalyst’s optimized hydrogen evolution reaction(HER),oxygen evolution reaction(OER)performance as well as overall water splitting that combined with the synthetic process.Finally,we conclude the technical advantages towards electrodeposition,propose challenge and future research directions in this promising field.This timely review aims to promote a deeper understanding of effective catalysts obtained via electrodeposition strategy,and provide new guidance for the design and synthesis of future catalysts for hydrogen production. 展开更多
关键词 electrodeposition Transition metal-based catalysts Hydrogen evolution reaction Oxygen evolution reaction Water splitting
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Electrodeposition of Ni-W Amorphous Alloy and Ni-W-SiC Composite Deposits 被引量:9
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作者 Zhongcheng GUO, Xiaoyun ZHU, Dacheng ZHAI and Xianwan YANG (Department of Metallurgy, Kunming University of Science and Technology, Kunming 650093, China) 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2000年第3期323-326,共4页
Ni-W alloys and their composite deposits are electroplated on the metals when an appropriate complex agent is selected on the base of the theories of electrochemistry and complex chemistry, and the principle of induce... Ni-W alloys and their composite deposits are electroplated on the metals when an appropriate complex agent is selected on the base of the theories of electrochemistry and complex chemistry, and the principle of induced codeposition. Effects of the bath composition, pH value, temperature and current density on the electrode position of Ni-W alloys and their composite deposits have been investigated, and the effect of heat treatment temperature on the hardness, structure and cohesive force of the amorphous Ni-W alloys and their composite deposits are also discussed. Results showed that the alloys containing more than 44 wt pct W content and the composite deposits containing 7.8 wt pct SiC content could be obtained by making use of the appropriate bath composition and plating conditions. Alloys and their composite deposits with over 44 wt pct W content show amorphous structure. The hardness of amorphous Ni-W alloys and their composite deposits increases obviously when heated, and can reach to 1350 HV and 1520 HV respectively for 46 wt pct W content. The cohesion on Cu, carbon steel and stainless steel is very good. 展开更多
关键词 SIC electrodeposition of Ni-W Amorphous Alloy and Ni-W-SiC Composite Deposits NI
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Continuous electrodeposition of silicon and germanium micro/nanowires from their oxides precursors in molten salt 被引量:4
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作者 Xingli Zou Li Ji +2 位作者 Zhongya Pang Qian Xu Xionggang Lu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第5期147-153,共7页
In recent years,silicon(Si)and germanium(Ge)materials have been considered as promising highperformance anode materials for lithium-ion batteries due to their high theoretical capacities.It is of great importance to d... In recent years,silicon(Si)and germanium(Ge)materials have been considered as promising highperformance anode materials for lithium-ion batteries due to their high theoretical capacities.It is of great importance to design and synthesize micro/nanostructured Si and Ge materials.In this work,we demonstrated that Si,Ge and SiGe micro/nanowires can be continuously synthesized from their oxides precursors through molten salt electrodeposition.The electrochemical synthesis processes have been investigated systematically,and the deposited Si,Ge and SiGe micro/nanowires have been characterized and compared.The results show that the micro/nanostructured Si and Ge materials with tunable morphology can be facilely and continuously produced via molten salt electrodeposition.The electrodeposition process generally includes calcium oxide-assisted dissolution and electrodeposition processes,and the morphologies of the deposited Si and Ge products can be controlled by varying conditions.Si micro/nanowires,Si films,Ge micro/nanowires,and Ge particles can be continuously synthesized in a controlled manner. 展开更多
关键词 Silicon MATERIALS GERMANIUM MATERIALS MOLTEN salt electrodeposition ELECTROCHEMISTRY
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Electrodeposition of Rare Earth Metals and Their Alloys in Organic Electrolytes 被引量:5
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作者 Liu, Peng Yang, Qiqin +1 位作者 Yang, Yansheng Tong, Yexiang 《Journal of Rare Earths》 SCIE EI CAS CSCD 1999年第2期72-75,共4页
The electrodeposition of rare earth metals and their alloys in organic electrolytes are reviewed. The solvents, electrolytes and operetating conditions are discussed. It is concluded that exploring the rare earth salt... The electrodeposition of rare earth metals and their alloys in organic electrolytes are reviewed. The solvents, electrolytes and operetating conditions are discussed. It is concluded that exploring the rare earth salt, which can be highly soluble in organic solvents and easily dehydrated, is the key to the pracitical utilization of electrodeposition of rare earth metals and their alloys in organic electrolytes. 展开更多
关键词 Rare earths Rare earthiron alloys electrodeposition Organic electrolytes
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Hydrogen peroxide biosensor based on electrodeposition of zinc oxide nanoflowers onto carbon nanotubes film electrode 被引量:4
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作者 Hui Ping Bai Xu Xiao Lu Guang Ming Yang Yun Hui Yang 《Chinese Chemical Letters》 SCIE CAS CSCD 2008年第3期314-318,共5页
A new amperometric biosensor for hydrogen peroxide was developed based on adsorption of horseradish peroxidase at the glassy carbon electrode modified with zinc oxide nanoflowers produced by electrodeposition onto mul... A new amperometric biosensor for hydrogen peroxide was developed based on adsorption of horseradish peroxidase at the glassy carbon electrode modified with zinc oxide nanoflowers produced by electrodeposition onto multi-walled carbon nanotubes (MWNTs) film. The morphology of the MWNTs/nano-ZnO electrode has been investigated by scanning electron microscopy (SEM), and the electrochemical performance of the electrode has also been studied by amperometric method. The resulting electrode offered an excellent detection for hydrogen peroxide at -0.11 V with a linear response range of 9.9×10^-7 to 2.9×10^-3 mol/L with a correlation coefficient of 0.991, and response time 〈5 s. The biosensor displays rapid response and expanded linear response range, and excellent stability. 展开更多
关键词 Multi-walled carbon nanotubes BIOSENSOR electrodeposition Horseradish peroxidase ZnO nanoflowers
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Ni nanocomposite films formed by Ni nanowires embedded in Ni matrix using electrodeposition 被引量:4
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作者 周兆锋 潘勇 雷维新 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第4期637-642,共6页
Ni nanocomposite films formed by Ni nanowires embedded in Ni matrix(Ni nanowire/Ni composite films)were fabricated by electrodeposition combined with supersonic stirring in a conventional Watts'bath containing Ni ... Ni nanocomposite films formed by Ni nanowires embedded in Ni matrix(Ni nanowire/Ni composite films)were fabricated by electrodeposition combined with supersonic stirring in a conventional Watts'bath containing Ni nanowires with diameter about 30 nm.The deposition temperature-dependent microstructure,crystal orientation,lattice constant and corrosion behavior of the Ni nanowire/Ni composite films were investigated by field emission scanning electron microscope,X-ray diffraction and potentiodynamic polarization tests,respectively.And the possible mechanism was discussed.It is found that to some extent,the deposition temperature has an impact on the microstructure,crystal orientation,lattice constant and corrosion property of the Ni nanowire/Ni composite films.The Ni nanowire/Ni composite films prepared at 50℃exhibit a novel inter-twisted-nanowire microstructure and have the best corrosion resistance. 展开更多
关键词 nickel nanowire composite film electrodeposition corrosion resistance
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Electrodeposition and Characterization of Polyaniline Film 被引量:3
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作者 WANG Hong-zhi, ZHANG Peng, ZHANG Wei-guo and YAO Su-wei Shanshan Research Office of Surface Technology, College of Chemical Engineering, Tianjin University, Tianjin 300072, P. R. China 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2012年第1期133-136,共4页
Abstract Polyaniline film was prepared by electrochemical method in an acidic solution of aniline. The micromor- phology of the polyaniline film was transformed to three-dimensional network structure instead of little... Abstract Polyaniline film was prepared by electrochemical method in an acidic solution of aniline. The micromor- phology of the polyaniline film was transformed to three-dimensional network structure instead of little particles while the deposition time was extended. The peak wavelength of the photoluminescence spectrum was 491 nm. The luminous intensity increased with the extension of deposition time, and so did the electrochemical activity. 展开更多
关键词 POLYANILINE electrodeposition PHOTOLUMINESCENCE Electrochemical activity
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INFLUENCE OF 2-BUTYNE-1,4-DIOL ON THE STRUCTURE AND PERFORMANCE OF THE Co-Ni ALLOY PLATED BY ELECTRODEPOSITION 被引量:3
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作者 S.L. Wang L.L. Hong W.W. Yu 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2008年第1期50-56,共7页
The effect of 2-butyne-1, 4-diol (BD) on the deposition behavior of the Co-Ni alloy was investigated by linear sweep voltammetry. The results showed that BD could prevent the deposition of the Co-Ni alloy. The effec... The effect of 2-butyne-1, 4-diol (BD) on the deposition behavior of the Co-Ni alloy was investigated by linear sweep voltammetry. The results showed that BD could prevent the deposition of the Co-Ni alloy. The effect of BD concentration in the sulfate plating bath, on the structure of the Co-Ni deposit was studied by energy dispersive x-ray spectroscopy, scanning electron microscope, and X-ray diffraction, respectively. As a result, BD could smoothen the deposit surface and decrease the diameter of the grain, but too much of BD was not good for the size of the grain. In general, a hexagonal close-packed (hcp) phase of the Co-Ni alloy, with a preferentially oriented (110) plane, was prepared by electrodeposition in the presence of BD. The Co-Ni alloy as a catalyst for the electro-oxidation of ethanol in alkaline medium was investigated by cyclic voltammetry. The deposit plated from the bath containing BD possessed better electro-oxidation of ethanol performance compared with that of the deposit plated from only the sulfate plating bath, but too much of BD was not beneficial for catalytic activity. The Co-Ni film was suitable as a magnetic recording material. 展开更多
关键词 Co-Ni 2-butyne-1 4-diol (BD) electrodeposition Electro-oxidation ethanol Magnetic property
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Electrodeposition of functionally graded Ni-W/Er2O3 rare earth nanoparticle composite film 被引量:3
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作者 Guo-quan Lai Hong-zhong Liu +3 位作者 Bang-dao Chen Dong Niu Biao Lei Wei-tao Jiang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2020年第6期818-829,共12页
Multi-layered functionally graded(FG)structure Ni-W/Er2O3 nanocomposite films were prepared by continuously changing the deposition parameters,in which the Er2O3 and W contents varied with thickness.The microstructure... Multi-layered functionally graded(FG)structure Ni-W/Er2O3 nanocomposite films were prepared by continuously changing the deposition parameters,in which the Er2O3 and W contents varied with thickness.The microstructure and chemical composition of the electrodeposited Ni-W/Er2O3 films were determined by scanning electron microscopy(SEM)and energy-dispersive X-ray spectroscopy(EDS).The anti-corrosion and wear properties of the electrodeposition films were investigated by electrochemical measurement and ball-on-disk friction test.The microhardness distribution of the cross section of nanocomposites was measured by nanoindentation.The results showed that with decreasing agitation rate or increasing average current density,the contents of Er2O3 nanoparticles and tungsten were distributed in a gradient along the thickness,and the contents on the surface were larger.By comparison,FG Ni-W/Er2O3 films had better anti-corrosion and wear properties than the uniform Ni-W/Er2O3 films.Atomic force microscopy(AFM)and profilometry measurements indicated that Er2O3 nanoparticles had an effect on the surface roughness. 展开更多
关键词 nickel-tungsten electrodeposition functionally graded material nanocomposite erbium oxide nanoparticle
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Characterization and optimization of pulse electrodeposition of Ni/nano-Al_2O_3 composite coatings 被引量:2
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作者 A.Jegan R.Venkatesan 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2013年第5期479-485,共7页
Nickel/nano-A1203 composite coatings produced by the pulse electrodeposition method and the influence of pulse parameters, i.e., pulse frequency, duty cycle, and current density on the microstructure, hardness, and co... Nickel/nano-A1203 composite coatings produced by the pulse electrodeposition method and the influence of pulse parameters, i.e., pulse frequency, duty cycle, and current density on the microstructure, hardness, and corrosion resistance, were critically investigated on an AISI 1018 mild steel specimen electroplated in a Watt's type bath. The experiments were carried out with different combinations of pulse parameters using Taguchi's L27 orthogonal array, and 27 trials were conducted to study the effect of pulse parameters in view to maximize the hardness of the specimen. The assessment results clearly reveal that the specimen exhibits the maximum hardness at the pulse frequency of 20 Hz, duty cycle of 30%, and peak current density of 0.4 A/cm2, which are designated as the optimal parameters herein. Furthermore, the influences of those optimized pulse parameters over the microstructure and corrosion resistance were investigated, and some conclusions were drawn. Also, from the ANOVA examination, it is clear that duty cycle is predominant in affecting the hardness, while current density has relatively low impact. 展开更多
关键词 composite coatings NICKEL ALUMINA nanoparticles electrodeposition corrosion resistance HARDNESS
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Effects of Br^- and I^- concentrations on Zn electrodeposition from ammoniacal electrolytes 被引量:2
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作者 Zhi-mei Xia Sheng-hai Yang +1 位作者 Liang-hong Duan Mo-tang Tang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2015年第7期682-687,共6页
The effects of Br- and I- concentrations on the cell voltage, anodic polarization, current efficiency (CE), and energy consumption (EC) of zinc electrodeposition from ammoniacal ammonium chloride solutions were in... The effects of Br- and I- concentrations on the cell voltage, anodic polarization, current efficiency (CE), and energy consumption (EC) of zinc electrodeposition from ammoniacal ammonium chloride solutions were investigated. The surface morphology of zinc deposits was also examined. Scanning electron microscopy (SEM) and X-ray diffraction (XRD) were used to characterize the morphology of zinc deposits and the phase of anodic sediments produced during electrolysis. The results clearly showed that the CE slightly increased from approximately 95.12% in the absence of F and Br- to 97.08% in the presence of 10 g·L-1 Br; in contrast, the CE significantly decreased to less than 83% in the presence of 10 g·L-1 I- . The addition of Br and I- positively affected the EC, which decreased from 2514 kW·h·t-1 to approximately 2300 kW·h·t-1. The results of anodic polarization measurements showed that the voltage drops were 130 and 510 mV when the concentrations of Br- and I- were 10 g·L-1 at a eUlTent density of 400 A·m2, respectively. SEM images showed that the addition of Br- and I- caused different crystal growth mechanisms, which resulted in the production of compact and smooth zinc deposits. The anodic reactions of I were also studied. 展开更多
关键词 ZINC electrodeposition BROMIDE IODIDE ammonium chloride current efficiency energy consumption
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Supercapacitor characteristic of La-doped Ni(OH)_2 prepared by electrodeposition 被引量:2
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作者 Shao Guangjie Yao Yue +1 位作者 Zhang Shipin He Pei 《Rare Metals》 SCIE EI CAS CSCD 2009年第2期132-136,共5页
Samples of lanthanum-doped nickel hydroxide were prepared by electrodeposition method. The structure and electrochemical properties of the samples were studied by X-ray diffraction and a home-made open three-electrode... Samples of lanthanum-doped nickel hydroxide were prepared by electrodeposition method. The structure and electrochemical properties of the samples were studied by X-ray diffraction and a home-made open three-electrode cell system,respectively. The results show that the deposition process of Ni(OH)2 and La(OH)3 is mainly controlled by electrochemical polarization,which makes it easy to form uniform fine crystals. In addition,La(OH)3 is not a separate phase and lanthanum ions are doped into Ni(OH)2 crystal la... 展开更多
关键词 nickel hydroxide LANTHANUM DOPING SUPERCAPACITOR electrodeposition
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Prompt Electrodeposition of Ni Nanodots on Ni Foam to Construct a High-Performance Water-Splitting Electrode:Efficient, Scalable,and Recyclable 被引量:2
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作者 Hongtao Yu Ting Quan +4 位作者 Shilin Mei Zdravko Kochovski Wei Huang Hong Meng Yan Lu 《Nano-Micro Letters》 SCIE EI CAS CSCD 2019年第3期79-91,共13页
In past decades,Ni-based catalytic materials and electrodes have been intensively explored as low-cost hydrogen evolution reaction(HER)and oxygen evolution reaction(OER)catalysts for water splitting.With increasing de... In past decades,Ni-based catalytic materials and electrodes have been intensively explored as low-cost hydrogen evolution reaction(HER)and oxygen evolution reaction(OER)catalysts for water splitting.With increasing demands for Ni worldwide,simplifying the fabrication process,increasing Ni recycling,and reducing waste are tangible sustainability goals.Here,binder-free,heteroatom-free,and recyclable Ni-based bifunctional catalytic electrodes were fabricated via a one-step quick electrodeposition method.Typically,active Ni nanodot(NiND)clusters are electrodeposited on Ni foam(NF)in Ni(NO3)2 acetonitrile solution.After drying in air,NiO/NiND composites are obtained,leading to a binder-free and heteroatom-free NiO/NiNDs@NF catalytic electrode.The electrode shows high efficiency and long-term stability for catalyzing hydrogen and oxygen evolution reactions at low overpotentials(10ηHER= 119 mV and 50ηOER=360 mV)and can promote water catalysis at 1.70 V@ 10mA cm-2.More importantly,the recovery of raw materials(NF and Ni(NO3)2)is quite easy because of the solubility of NiO/NiNDs composites in acid solution for recycling the electrodes.Additionally,a large-sized(S^70 cm2)NiO/NiNDs@NF catalytic electrode with high durability has also been constructed.This method provides a simple and fast technology to construct high-performance,low-cost,and environmentally friendly Ni-based bifunctional electrocatalytic electrodes for water splitting. 展开更多
关键词 electrodeposition NI NANODOTS BIFUNCTIONAL catalysts Water splitting Large-size
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