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1.
采用目标调控的阳极氧化工艺制备了超大比表面、管与管相互分离的有序TiO2纳米管阵列(TiO2 NTAs)基体,进而分别采用电化学氢化法和循环浸渍沉积法对晶化退火后的TiO2 NTAs实施电化学氢化和高比电容MnO2沉积的双重功能化改性,调控构筑了一种新型MnO2/H-TiO2纳米异质阵列电极材料。利用场发射扫描电子显微镜(FESEM)、高分辨透射电子显微镜(TRTEM)、X射线衍射仪(XRD)、X光电子能谱仪(XPS)、拉曼光谱(Raman)和电化学工作站等对样品进行综合表征与超电容特性测试,结果表明:电化学氢化改性有效提高了H-TiO2 NTAs的导电性和电化学特性,当电流密度为0.2 mA·cm-2时H-TiO2 NTAs的面积电容达到7.5 mF·cm-2,是相同电流密度下TiO2 NTAs的75倍;经过2个浸渍循环所获得的MnO2/H-TiO2 NTAs-2样品在电流密度为3 mA·mg-1时比电容可达481.26 F·g-1,电流密度为5 mA·mg-1时循环充放电1000圈后比电容仅下降约11%。  相似文献   

2.
本文在泡沫镍上生长三维网络状结构的石墨烯(3DG),以此为模板合成石墨烯复合电极并将其应用于超级电容器. 采用一步水热法在3DG上合成得到Ni3S2纳米棒结构(Ni3S2/3DG). 通过TEM、XRD、SEM和拉曼光谱等手段表征对Ni3S2/3DG复合材料的形态与结构进行表征. 电化学测试表明,Ni3S2/3DG复合材料具有高的比电容(在扫速为5 mV·s-1下,具有1825.3 F·g-1的比容量)和放电电容(在电流密度10 mA下电容高达516.7 F·g-1). 此外,在电流密度20 mA下具有良好的循环性能(循环1000周后仍能保留约100%的初始电容). 本工作为得到高能量密度和良好的长期稳定性的复合材料提供了参考.  相似文献   

3.
通过两步法先在泡沫镍(nickel foam,NF)上原位生长Co金属有机骨架(Co metal-organic framework,Co-MOF)纳米片阵列,再浸入不同浓度Ni2+离子溶液刻蚀Co-MOF纳米片,在NF表面得到NiCo水滑石(NiCo layered double hydroxide,NiCo-LDH)。NiCo-LDH/NF继承了Co-MOF纳米片结构形成一级纳米片阵列,并在一级纳米片表面形成次级纳米片褶皱。在2 mmol Ni(NO3)2·6H2O溶液中刻蚀得到的NiCo-LDH/NF表现出高容量、高倍率性能,在电流密度为5 mA·cm-2时比电容为7 764.5 mF·cm-2,电流密度为20 mA·cm-2时比电容为6 098.2 mF·cm-2,容量保持率为78.5%,在20 A·g-1电流密度下经过5 000次长循环后,容量保持率为85.9%。与活性炭组装的混合...  相似文献   

4.
徐惠  蒲金娟  陈泳  刘健 《电化学》2016,22(1):64
以苯胺为单体,采用界面聚合法合成了不同浓度的Ag+掺杂的聚苯胺(PANI/Ag+),使用傅里叶变换红外光谱(FT-IR)、X射线衍射(XRD)和场发射扫描电镜(SEM)等手段对其结构和形貌进行了分析和表征. 在0.5 mol•L-1 Na2SO4电解液中,通过循环伏安(CV)、恒流充放电(CP)以及电化学阻抗(EIS)等技术研究了其电化学性能. 结果表明,当电流密度为5 mA•cm-2时,PANI/0.12mol•L-1 Ag+的比电容达529 F•g-1,循环1000次后比电容保持51%,相对于无Ag+掺杂的PANI,表现出更优良的电化学电容特性.  相似文献   

5.
采用一步固相煅烧工艺制备了碳纳米管原位封装Ni3S2纳米颗粒(Ni3S2@CNT),并研究了其作为钠离子电池(SIBs)负极材料的电化学性能. 通过X射线衍射(XRD)、扫描电子显微镜(SEM)、透射电子显微镜(TEM)、循环伏安测试、恒流充放电以及交流阻抗等研究了Ni3S2@CNT的物相结构、形貌特征以及电化学性能. 电化学测试表明,材料在100 mA·g -1电流密度下,放电容量可以达到541.6 mAh·g -1,甚至在2000 mA·g -1的大电流密度下其放电比容量也可以维持在274.5 mAh·g -1. 另外,材料在100 mA·g -1电流密度下,经过120周充放电循环后其放电和充电比容量仍然可以保持在374.5 mAh·g -1和359.3 mAh·g -1,说明其具有良好倍率性能和循环稳定性能. 良好的电化学性能归因于这种独特的碳纳米管原位封装Ni3S2纳米颗粒结构. 碳纳米管不但可以提高复合材料的导电性,也可以缓冲Ni3S2纳米颗粒在反复充放电过程中产生的体积膨胀效应,明显改善了Ni3S2@CNT负极复合材料的电化学性能.  相似文献   

6.
Mo对脱合金制备的Ni-Mo电极骨架结构与析氢性能的影响   总被引:1,自引:0,他引:1  
采用快速凝固结合脱合金化方法制备了不同Mo含量的纳米多孔Ni-Mo合金,通过X射线衍射(XRD)、扫描电子显微镜(SEM)、透射电子显微镜(TEM)和N2吸附-脱附分析等对多孔合金的物相、形貌结构及孔径分布进行了表征,并通过线性扫描伏安、Tafel斜率、交流阻抗和循环伏安等方法测试了多孔合金电极的电催化析氢性能.结果显示,多孔合金电极材料在50 mA/cm2电流密度下析氢过电位随着Mo含量的增加先降低后升高,Ni2.5Mo2.5合金析氢活性最强,过电位为218 mV,析氢过程由Volmer-Heyrovsky步骤控制,交换电流密度为0.29 mA/cm2,经1000周循环后的极化曲线基本保持原状,50 mA/cm2电流密度下过电位增加3.67%,表现出优良的析氢稳定性.  相似文献   

7.
本研究采用[Fe(CN)6]3-阴离子交换2-甲基咪唑再于空气气氛下退火衍生的策略,制备了一种负载在氮掺杂中空纳米笼碳骨架上的Fe掺杂Co3O4电催化剂(Fe-Co3O4/NC),用于电催化OER。XRD和HRTEM表征证实了Fe掺人Co3O4的晶格中。XPS表征明确了Fe引入后Co价态升高,这是基于Co2+/Co3+和Fe3+的价电子构型诱导的电子由Co2+/Co3+向Fe3+的转移,这会促使Co位点在OER过程中衍生为CoOOH活性物种,作为真正的电催化活性中心,这也被OER稳定性测试后的HRTEM和XPS表征所证实。电化学性能测试显示,该电催化剂的OER过电位仅有275 mV且能够在100 mA/cm2的电流密度下稳定维持20 h,兼具优异的电催化活性和稳...  相似文献   

8.
采用快速凝固与脱合金相结合的方法制备了纳米多孔Ni,经热处理氧化获得纳米多孔NiO,利用X射线衍射仪(XRD)、扫描电子显微镜(SEM)、透射电子显微镜(TEM)和氮气吸附-脱附仪(BET)对纳米多孔Ni和NiO的物相、形貌结构和孔径分布进行了表征,并通过循环伏安、稳态极化和电化学阻抗分析研究了电极的电催化析氧性能.结果表明,由Ni30Al70所得纳米多孔Ni具有多层次纳米多孔结构,在10 mA/cm2电流密度下析氧过电位仅为224 mV,交换电流密度为0. 63297 m A/cm2,表观活化自由能为40. 297 k J/mol,经1000次循环后,过电位降低了5 mV(j=10 mA/cm2),表现出良好的催化稳定性和耐久性;热处理氧化降低了NiO的比表面积与电化学活性面积,平衡电位下扩散传质速率明显减小,析氧活性较Ni电极有所下降.  相似文献   

9.
用石墨烯和Co(CH3COO)2·4H2O作为原料,利用超声辅助法合成了锂离子电池的负极材料CoO纳米颗粒/中空石墨烯纳米纤维复合物.采用X射线衍射(XRD)确定材料的物相组成,采用扫描电子显微镜(SEM)和透射电子显微镜(TEM)观察材料的表面形貌和微观结构,采用X射线光电子能谱(XPS)确定材料的价态结构.采用循环伏安、恒电流充放电和交流阻抗谱表征材料的电化学性能.结果显示,在100 mA/g的电流密度下,循环了160次后,可逆容量仍超过800 mA/g,库仑效率保持在99%以上.该材料优异的电化学性能主要归因于石墨烯的中空纤维结构,中空内部可以容纳电解液,能直接将离子输送到颗粒表面,实现了离子的快速传输;二维中空纤维搭建成三维网络结构,实现了三维电子传导网络.  相似文献   

10.
高稳定性、高性能、低成本的氧还原反应(ORR)非贵金属催化剂对碱性燃料电池的发展具有重大意义。本研究利用杂原子(N,S)掺杂多孔碳材料和ZIF-67中非贵金属的协同作用制备出性能优良的非贵金属催化剂Co-N/S@CET。物理表征得出炭化后的催化剂表面具有介孔结构,且Co和N进行了大量配位,并且通过XPS测试揭示了催化剂中具有大量Co-Nx活性位点。电化学测试结果表明,Co-N/S@CET具有良好的ORR活性和稳定性,极限电流密度达5.0mA/cm2,半波电位达0.85V,且具有优异的稳定性(10000s后仅衰减4%)。  相似文献   

11.
Hierarchical and well-defined cobalt sulfide with flower-like, cube-like, ball-like, and surface hollowed-out nanostructures were successfully prepared by a facile one-pot hydrothermal synthesis approach, employing Co(NO(3))(2)·6H(2)O as a cobalt precursor and thiourea as a sulfur source. The morphologies of these structures can be easily controlled by simply adjusting the molar ratio of reactants and solvents, reaction time, reaction temperature, and ligand types. Thiourea plays two important roles in the growth process of CoS nanostructures. First, it is decomposed to produce S(2-) for the final formation of CoS. On the other hand, it serves as a structure-directing agent to control the crystalline growth of CoS. The electrochemical capacitance performances of the CoS nanostructures were studied, and the flower-like CoS nanostructures show the best charge-discharge performance among all CoS products with the highest specific capacitance values of 389 F g(-1) at current density of 5 mA cm(-2), and 277 F g(-1) at higher current density of 50 mA cm(-2).  相似文献   

12.
Hollow nanostructures have attracted increasing research interest in hydrogen evolution reaction owing to their unique structural features.Herein,Ni-Co mixed metal phosphide hollow and porous polyhedrons was successfully composited(expressed as NiCoP).Benefiting from the synergistic effects of ZIF-67 by doping Ni elements and the well-defined hollow and porous structure,the as-synthesized NiCoP hollow and porous polyhedrons exhibit better electrochemical properties and mechanical stability for hydrogen evolution reaction over a pH-universal range,with a small Tafel slopes of 72,101,176 mV/dec,and a low overpotential of 82,102,261 mV at a current density of 10 mA/cm2 in 0.5 mol/L H2SO4,1 mol/L KOH and1 mol/L phosphate buffer solution(PBS).This general strategy can also be applied to fabricate other hollow cobalt-based phosphides and MOFs-derived materials for HER.  相似文献   

13.
掺铝Co_3O_4的制备及其电容性能研究   总被引:2,自引:0,他引:2  
葛鑫  陈野  张春霞  舒畅 《电化学》2007,13(3):249-252
以KOH作沉淀剂制备掺杂Al(Ⅲ)的Co3O4粉体.X射线衍射显示,掺Al的Co3O4不改变其晶型结构.循环伏安、恒流充放电等测试表明,化学掺Al后的Co3O4电极,其比容量提高,当Co(Ⅱ)与Al(Ⅲ)的摩尔比为1∶0.05时,在0~400 mV的电位区间内,5 mA/cm2电流密度下,单电极放电比容量可达518.07 F/g.  相似文献   

14.
In order to compare the effect of additive agent on the electrochemical capacitance of activated carbon, three additive agents like carbon nanotubes (CNTs), activated carbon fibre (ACF) and acetylene black (AB) were added to activated carbon by ultrasonic dispersion. Two electrodes including 95wt.% activated carbon, 2wt.% additive agent and 3wt.% PTFE binder were prepared. ECs were assembled in an argon-filled glove box by sandwiching a microporous separator (Celgard 2400) between two ele…  相似文献   

15.
化学氧化法制备聚苯胺/多壁碳纳米管复合材料(PANI/MWCNT),扫描电镜(SEM)、XRD及IR表征样品结构及形貌,电化学方法测定复合电极循环伏安曲线、恒流充放电曲线及电极交流阻抗.结果表明,PANI/MWCNT电极在1mol/L的Li2SO4溶液中具有较好电容性能,在电流密度为5mA/cm2时,比电容为412F/g.PANI/MWCNT电极较PANI电极有更好的大电流放电能力,50mA/cm2下复合电极的比电容仍达318F/g,为5mA/cm2时该电极比电容的77.2%,而PANI电极的比电容仅为其5mA/cm2时的56.2%.交流阻抗证明碳纳米管降低复合电极的电阻,显著提高大电流放电能力.  相似文献   

16.
Rational designing and controlling of nanostructures is a key factor in realizing appropriate properties required for the high-performance energy fields. In the present study, hollow SnO2@C nanoparticles (NPs) with a mean size of 50 nm have been synthesized in large-scale via a facile hydrothermal approach. The morphology and composition of as-obtained products were studied by various characterized techniques. As an anode material for lithium ion batteries (LIBs), the as-prepared hollow SnO2@C NPs exhibit significant improvement in cycle performances. The discharge capacity of lithium battery is as high as 370 mAh g-1, and the current density is 3910 mA g-1(5 C) after 573 cycles. Furthermore, the capacity recovers up to 1100 mAh g-1 at the rate performances in which the current density is recovered to 156.4 mA g-1(0.2 C). Undoubtedly, sub-100 nm SnO2@C NPs provide significant improvement to the electrochemical performance of LIBs as superior-anode nanomaterials, and this carbon coating strategy can pave the way for developing high-performance LIBs.  相似文献   

17.
Leaf-like nanostructures of ??-Co(OH)2 were successfully prepared via galvanostatically cathodic electrodeposition at the current density of 1?mA?cm?2 from an aqueous 0.005?M Co(NO3)2 bath. The bath temperature was fixed at 60?°C. The XRD and FTIR results revealed that the prepared sample has a single phase of the hexagonal brucite-like ??-Co(OH)2. Morphological characterization by SEM showed that the prepared ??-Co(OH)2 was composed of discrete leaf-like nanostructures with edge lengths ranging from 250 to 450?nm. The electrochemical performance of the prepared ??-Co(OH)2 was evaluated using cyclic voltammetry and charge?Cdischarge tests. A maximum specific capacitance of 772.8?F?g?1 was obtained in aqueous 1?M KOH with the potential range of ?0.3?C0.5?V (vs. Ag/AgCl) at scan rate of 10?mV?s?1, suggesting the potential application of the prepared nanostructures in electrochemical supercapacitors. Result of this work showed that cathodic electrodeposition can be recognized as a facile method for the preparation of cobalt hydroxide.  相似文献   

18.
Yolk–shell‐structured Zn–Fe–S multicomponent sulfide materials with a 1:2 Zn/Fe molar ratio were prepared applying a sulfidation process to ZnFe2O4 yolk–shell powders. The Zn–Fe–S powders had mixed sphalerite (Zn,Fe)S and hexagonal FeS crystal structures. The discharge capacities of the Zn–Fe–S powders sulfidated at 350 °C at a constant current density of 500 mA g?1 for the first, second, and fiftieth cycles were 1098, 912, and 913 mA h g?1, respectively. The powders exhibited a high discharge capacity of 602 mA h g?1 even at the high current density of 10 A g?1. The synergistic effect of yolk–shell structure and multicomponent composition improved the electrochemical properties of Zn–Fe–S powders.  相似文献   

19.
高军  黄行康  杨勇 《电化学》2007,13(3):279-283
应用乙炔黑直接还原高锰酸钾制备MnO2/C复合材料.样品结构及性能由XRD和SEM表征.研究了MnO2/C电极(正极)在不同电解液中的法拉第"准电容行为",及其循环伏安、交流阻抗与恒电流充放电等性能.实验表明,MnO2/C复合材料具有良好的电化学电容特性.在1 mol/L的KOH电解液中和电流密度为5 mA/cm2下,MnO2/C复合材料的比电容量可达258 F/g,并表现出良好的循环性能.  相似文献   

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