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1.
本实验采用水热法合成了Co_(3)V_(2)O_(8)纳米粒子,并将其滴涂至玻碳电极(GCE)上形成Co_(3)V_(2)O_(8)修饰电极,通过循环伏安法(CV)和差分脉冲伏安法(DPV)测试了修饰电极的电化学性能,并用于检测水中的对硝基苯酚。研究了Co_(3)V_(2)O_(8)的修饰量、电解质缓冲溶液的pH值和扫描速率对修饰电极的电催化性能的影响。研究结果表明,在优化的实验条件下,经Co_(3)V_(2)O_(8)修饰过的电极对对硝基苯酚表现出优异的检测性能,其线性范围和检出限分别为0.33~3000μmol·L^(-1)和0.08μmol·L^(-1)。该修饰电极具有良好的选择性、重复性与稳定性,应用于实际水样目标物的检测,回收率在95.7%~102.7%之间。  相似文献   

2.
采用溶剂热法一步合成氨基改性的Fe_(2)O_(4)(NH_(2)-Fe_(3)O_(4))纳米材料,通过扫描电镜、红外光谱、X射线衍射等方法对合成纳米材料进行表征,并将NH_(2)-Fe_(3)O_(4)滴涂在玻碳电极(GCE)表面制成电化学传感电极(NH_(2)-Fe_(3)O_(4)/GCE)。结果发现,NH_(2)-Fe_(3)O_(4)/GCE在最优条件下可以同时测定Cd^(2+)和Pb^(2+),Cd^(2+)在1.2×10^(-8)~9.6×10^(-5)mol·L^(-1)浓度范围内与峰电流值呈良好的线性关系(R=0.9949),检测限为1.4×10^(-9)mol·L^(-1);Pb^(2+)在4.8×10^(-8)~9.6×10^(-5)mol·L^(-1)时浓度范围内与峰电流值呈良好的线性关系(R=0.9843),检测限是2.7×10^(-9)mol·L^(-1)。  相似文献   

3.
以三聚氰胺和六水合氯化钴为原料,一锅法制备Co_3O_4负载的多孔石墨相氮化碳(Co_3O_4/g-C_3N_4)复合光催化材料。采用X射线衍射(XRD)、傅里叶变换红外(FT-IR)光谱、X射线光电子能谱(XPS)、扫描电子显微镜(SEM)、透射电子显微镜(TEM)、紫外-可见漫反射光谱(UV-Vis DRS)、光致发光光谱(PL)等手段对其结构和光学特性进行表征。以盐酸四环素(TC)为目标污染物,评价了不同负载量Co_3O_4/g-C_3N_4复合光催化剂的可见光催化性能。结果表明,所制备的Co_3O_4/g-C_3N_4复合光催化剂为多孔结构,其比表面积较大,并在可见光区域具有显著的吸收。利用原位生成的Co_3O_4纳米粒子在氮化碳表面形成异质结构,可有效转移光生载流子,降低光生电子-空穴的再结合率,从而提高光催化活性。并且存在最佳Co_3O_4复合量,当六水合氯化钴加入量为三聚氰胺的8%(w/w)时,所制备的复合光催化剂CoCN-8具有最佳的光催化性能。在可见光的照射下,60 min内可降解85%的TC,而同样条件下,纯g-C_3N_4仅降解23%的TC。  相似文献   

4.
王恩通  杨林芳 《应用化学》2022,39(8):1209-1215
以LiNi_(0.6)Co_(0.2)Mn_(0.2)O_(2)为研究对象,通过共沉淀法制备了不同F物质的量分数(0%、1%、3%、5%)的LiNi_(0.6)Co_(0.2)Mn_(0.2)O_(2)三元正极材料(NCM),通过对NCM材料的晶格结构、微观形貌、电化学性能进行分析,结果表明:F掺杂后提高了NCM材料的结晶度,降低了阳离子混乱程度,适量的F掺杂有助于减小NCM三元正极材料的尺寸和提高均匀性,F的掺杂还能够降低NCM三元正极材料的极化现象,初始放电比容量随着F的掺杂含量升高呈现出先升高后降低的趋势,循环性能随着F的掺杂得到了提高,F掺杂物质的量分数为3%的NCM三元正极材料初始放电比容量167.2 mA·h/g,容量保持率达到98.5%,阻抗较小,电化学性能最优。  相似文献   

5.
通过简易的两步法制备一系列Co_3O_4/CeO_2异质结。其结构、形貌和微结构分别通过X射线衍射(XRD)、扫描电镜(SEM)和高分辨透射电镜(HRTEM)表征。在碱性介质中,其电催化析氧性能随着Co_3O_4/CeO_2质量比的变化而变化,并有一最佳值。当Co_3O_4和CeO_2质量比为58.5%时,在1.0 mol·L~(-1)KOH溶液中,10 mA·cm~(-2)的电流密度下,过电位为347 mV,Tafel斜率为72.7mV·dec~(-1),并且稳定性良好。此时的过电位低于Co_3O_4(440 mV)、商用RuO_2(359 mV)和CeO_2(570 mV)。X射线光电子能谱(XPS)显示Co_3O_4的部分电子向CeO_2转移。这导致复合材料的导电性提高,CeO_2表面的氧空位浓度和活性氧物种增加。  相似文献   

6.
CO氧化由其广泛的应用而成为催化领域中研究的重要反应,Co_3O_4催化剂具有价格低廉、催化活性高等优点而引起研究者的关注,其中,催化剂的结构、表面特性及反应机理等是研究的重点.催化剂的原位研究对观察相变过程,理解相应的表面化学反应和反应机理起着重要的作用.本文采用煅烧法制备了Ce O_2掺杂的Co_3O_4,并对其催化CO氧化反应性能进行了研究.通过扫描电镜、高分辨率透射电镜、拉曼光谱和X射线光电子能谱对催化剂的微观结构和形态进行了表征.通过原位X射线衍射(原位XRD)和原位漫反射红外傅立叶变换光谱(原位DRIFTS)表征了Ce O_2掺杂Co_3O_4对CO氧化的效果.原位XRD测试是在氢气气氛中进行,借以评估催化剂的氧化还原特性.结果表明,由于Ce O_2的补氧能力,CeO_2掺杂可以提高Co~(2+)的还原能力,并促进了Co~(3+)-Co~(2+)-Co~(3+)循环.采用原位DRIFTS对CeO_2改性的Co_3O_4表面吸附的碳酸盐物种进行了探究.结果表明,吸附碳酸盐物种的CeO_2掺杂Co_3O_4催化剂的红外峰与纯Co_3O_4相比有所不同.CeO_2掺杂的Co_3O_4上吸附的碳酸盐物种较为活泼,其与催化剂表面的结合作用力比较弱,不会覆盖催化剂表面的活性位点,能有效抑制催化剂的失活.本文揭示了CeO_2掺杂Co_3O_4促进CO氧化的机理,为设计高效氧化CO的催化剂提供了理论支持.原位XRD的结果表明,由于CeO_2的补氧能力,引入CeO_2可以显著提高Co~(2+)的稳定性.换句话说,它可以通过降低Co~(2+)的氧化能力来提高Co~(2+)的还原能力,有利于促进Co~(3+)-Co~(2+)-Co~(3+)循环的稳定性,从而使Co~(2+)更容易转化为Co~(3+).原位DRIFTS表明,在某种程度上,吸附在CeO_2-Co_3O_4表面的碳酸盐物种呈游离态,与催化剂表面的结合作用力较弱.这种类型的碳酸盐更活泼,而且不会像那些强作用在催化剂表面的碳酸盐物种那样使表面钝化.CeO_2-Co_3O_4与Co_3O_4的表面吸附的碳酸盐物种的差异是由于引入的CeO_2对氧化钴表面进行修饰改性的结果.在高温和N_2气氛下进行预处理后,CeO_2表面变得光洁且形成了一些氧空位,其特殊的储氧能力通过弱吸附氧使其表面更加活泼.这些结果证实,经过CeO_2的修饰后,氧化钴表面更加活泼,且更适合CO氧化反应的发生.  相似文献   

7.
以题示方法测定蔬菜样品中磷胺、倍硫磷、喹硫磷、丙溴磷等4种有机磷农药的残留量。采用硝酸钴和甘氨酸燃烧法制备Co_(3)O_(4)多孔材料,通过粉末X射线衍射仪(XRD)、场发射电子扫描显微镜(FESEM)、吸附比表面测试(BET)、热重分析(TG)对材料进行了表征,结果表明,该净化剂为具有层状疏松多孔结构的尖晶石型Co_(3)O_(4)材料,比表面积为22.054 m~2·g^(-1),Co_(3)O_(4)的质量分数为87.0%。蔬菜样品经切碎、研磨后,分取2.5 g,用甲苯5.0 mL涡旋提取5 min。离心,分取4.0 mL上清液,加入0.07 g Co_(3)O_(4)多孔材料,涡旋净化5 min。离心,分取0.6 mL上清液,过0.22μm滤膜,滤液进入气相色谱仪,在HP-5毛细管色谱柱上用程序升温条件分离,用火焰光度检测器测定。结果显示,Co_(3)O_(4)多孔材料的用量仅为QuEChERS法的百分之一;4种有机磷农药均在15 min内实现了基线分离,磷胺还实现了顺反异构的拆分和分离;标准曲线的线性范围分别为0.032~0.60 mg·L^(-1)(磷胺和丙溴磷)和0.016~0.30 mg·L^(-1)(倍硫磷和喹硫磷),检出限(3S/N)为0.004~0.010 mg·L^(-1)。对空白油麦菜样品进行4个浓度水平的加标回收试验,4种有机磷农药的回收率为89.2%~95.8%,测定值的相对标准偏差(n=6)均不大于7.0%;方法用于11种蔬菜样品的分析,均未检出4种有机磷农药的残留,符合GB 2763-2021的规定。  相似文献   

8.
以Li_2CO_3,TiO_2为原料,葡萄糖为碳源,采用固相煅烧工艺合成了亚微米级的Li_4Ti_5O_(12)/C复合负极材料.并将之与AgNO_3复合,采用固相方法制备出了Ag表面修饰的Li_4Ti_5O_(12)(AG+C)复合材料.采用XRD、SEM和TEM测试方法对材料的微结构进行了表征.结果表明,C的存在对Ag单质在Li_4Ti_5O_(12)/C颗粒表面的大量形成起到了积极的促进作用.从而很大程度地提高了Li_4Ti_5O_(12)/C的电导率,因此有效地改善了其电化学性能.在1C倍率下,Li_4Ti_5O_(12)/(Ag+C)复合材料的首次放电容量达到了164 mAh·g(-1).  相似文献   

9.
LiNi_(0.85)Co_(0.15)O_2合成和结构与电化学性能关系   总被引:4,自引:0,他引:4  
朱先军  詹晖  周运鸿 《化学学报》2002,60(10):1742-1746
介绍了一种以LiOH·H_2O, Co_2O_3和Ni_2O_3为原料通过高温法合成LiNi_(0. 85)Co_(0.15)O_2的方法,通过XRD和电化学测试对制得的产物进行了表征,讨论了 合成条件对产物结构的影响以及结构与电化学性能之间的关系。实验结果表明,合 成反应温度、Li/Ni/Co摩尔比对LiNi_(0.85)Co_(0.15)O_2的结构和电化学性能有 较大的影响,合成出具有电化学活性的LiNi_(0.85)Co_(0.15)O_2需要严格控制反 应条件。本文合成出具有高度结晶层状结构的LiNi_(0.85)Co_(0.15)O_2, Rietveld精化结果表明a = 0.2874 nm, c = 1.4229 nm,最大晶胞体积V = 0. 10180 nm~3,其首次放电容量可达197 mA·h/g, 15次循环后,其放电容量仍在 180 mA·h/g以上。  相似文献   

10.
钛基氧化物电极的性能及电化学行为   总被引:6,自引:2,他引:6  
王岚  金世雄 《应用化学》1993,10(3):35-38
本文研究了某些氧化物中间层对Ti/PbO_2、Ti/MnO_2、Ti/Co_3O_4和Ti/CuCo_2O_4电极性能及电化学行为的影响。结果表明,Ti/MnO_2或Ti/PbO_2电极在加入Co_3O_4、PdO_x、SnO_2或Sb_2O_3中间层后,界面电阻大大降低。在低于出现电阻极化电流密度时,极化曲线符合Tafel规律(无论对于O_2或Cl_2,低极化区的Tafel斜率为厶b_1=2.303RT/(1+β)F;高极化区为b_2=2,303RT/βF,其中β=0.5)这时主要为电化学极化。对有中间层Sb_2O_3+PdO_x的Ti/PbO_2电极和具有中间层SnO_2+PdO_x的Ti/Co_3O_4电极,其阳极析Cl_2的反应活性与工业用的Ti/RuO_2+TiO_2电极相近,而氧的过电位则高于Ti/RuO_2+TiO_2电极。  相似文献   

11.
Co3O4/reduced graphene oxide composites were synthesized via a simple electrochemical method from graphene oxide and Co(NO3)2·6H2O as raw materials.Co3O4 nanoparticles with sizes of around 30-50 nm were distributed on the surface of graphene nanosheets confirmed by scanning electron microscopy and transmission electron microscopy.Electrochemical properties of Co3O4/graphene composite were tested by cyclic voltammetry,galvanostatic charge-discharge,and electrochemical impedance spectroscopy.The Co3O4/reduced graphene oxide composite was used as the pseudocapacitor electrode in the 2 mol/L NaOH aqueous electrolyte solution.The Co3O4/reduced graphene oxide composite electrode exhibited a specific capacitance of 357 F/g at a current density of 0.5 A/g in a three-electrode system.72% of capacitance was retained when the current density increased to 3 A/g.The Co3O4/reduced graphene oxide composite prepared electrodes show a high rate capability and excellent long-term stability.After 1000 cycles of charge and discharge,the capacitance is still maintained 87% at a current density of 1 A/g,indicating that the composite is a oromising alternative electrode material used for supercapacitors.  相似文献   

12.
Developing enzyme-free sensors with high sensitivity and selectivity for H2O2 and glucose is highly desirable for biological science.Especially,it is attractive to exploit noble-metal-free nanomaterials with large surface area and good conductivity as highly active and selective catalysts for molecular detection in enzyme-free sensors.Herein,we successfully fabricate hollow frameworks of Co3O4/N-doped carbon nanotubes(Co3O4/NCNTs)hybrids by the pyrolysis of metal-organic frameworks followed by calcination in the air.The as-prepared novel hollow Co3O4/NCNTs hybrids exhibit excellent electrochemical performance for H2O2 reduction in neutral solutions and glucose oxidation in alkaline solutions.As sensor electrode,the Co3O4/NCNTs show excellent non-enzymatic sensing ability towards H2O2 response with a sensitivity of 87.40μA(mmol/L)^-1 cm^-2,a linear range of 5.00μmol/L-11.00 mmol/L,and a detection limitation of 1μmol/L in H2O2 detection,and a good glucose detection performance with 5μmol/L.These excellent electrochemical performances endow the hollow Co3O4/NCNTs as promising alternative to enzymes in the biological applications.  相似文献   

13.
The effects of doping of Co3O4with MgO (0.4–6 mol%) and V2O5 (0.20–0.75 mol%) on its surface and catalytic properties were investigated using nitrogen adsorption at −196°C and decomposition of H2O2 at 30–50°C. Pure and doped samples were prepared by thermal decomposition in air at 500–900°C, of pure basic cobalt carbonate and basic carbonate treated with different proportions of magnesium nitrate and ammonium vanadate. The results revealed that, V2O5 doping followed by precalcination at 500–900°C did not much modify the specific surface area of the treated Co3O4 solid. Treatment of Co3O4 with MgO at 500–900°C resulted in a significant increase in the specific surface area of cobaltic oxide. The catalytic activity in H2O2 decomposition, of Co3O4 was found to suffer a considerable increase by treatment with MgO. The maximum increase in the catalytic reaction rate constant (k) measured at 40°C on Co3O4 due to doping with 3 mol% MgO attained 218, 590 and 275% for the catalysts precalcined at 500, 700 and 900°C, respectively. V2O5-doping of Co3O4 brought about a significant progressive decrease in its catalytic activity. The maximum decrease in the reaction rate constant measured at 40°C over the 0.75 mol% V2O5-doped Co3O4 solid attained 68 and 93% for the catalyst samples precalcined at 500 and 900°C, respectively. The doping process did not modify the activation energy of the catalyzed reaction but much modified the concentration of catalytically active constituents without changing their energetic nature. MgO-doping increased the concentration of CO3+–CO2+ ion pairs and created Mg2+–CO3+ ion pairs increasing thus the number of active constituents involved in the catalytic decomposition of H2O2. V2O5-doping exerted an opposite effect via decreasing the number of CO3+–CO2+ ion pairs besides the possible formation of cobalt vanadate.  相似文献   

14.
制备了系列甲烷化学链燃烧用CeO2/Co3O4复合氧载体,采用XRD、H2-TPR、甲烷程序升温和恒温反应对氧载体进行了表征与评价。研究了不同CeO2的负载量对复合氧载体的结构、氧化还原性、产物选择性的影响。结果表明,氧化铈的添加不仅降低了氧载体的初始反应温度,还延长了有效反应时间,但铈添加量过高会降低产物CO2选择性,使甲烷向部分氧化进行。CeO2(30%)/Co3O4氧载体在650 ℃经20次循环后甲烷转化率和CO2选择性均未明显降低,表现出较高的活性和化学链循环稳定性。  相似文献   

15.
锂空气电池高容量长寿命Co3O4纳米空心球阴极催化剂   总被引:1,自引:0,他引:1  
刘通  李娜  刘清朝  张新波 《电化学》2015,21(2):157-161
以六水合硝酸钴(Co(NO3)2·6H2O)、六次甲基四胺(HMT)、蔗糖、柠檬酸钠(Na3C6H5O7)为原料,140 oC下水热碳化处理即得反应前驱物,经煅烧处理后,可得多孔Co3O4纳米空心球. 锂空气电池Co3O4/SP阴极催化剂具有优异的循环寿命性能,这归因于Co3O4空心球的纳米颗粒构成、较高比表面积的多孔结构,为电池反应提供了大量的反应位点,为充放电产物提供了足够的存储空间.  相似文献   

16.
将柠檬酸(CA)作为络合剂添加至CeO2-Al2O3复合载体中,并考察了CA对MoO3/CeO2-Al2O3催化剂耐硫甲烷化性能的影响。活性评价结果显示,催化剂活性随柠檬酸添加量的增大而增大,当n(CA)/n(Ce)为3时,CO转化率可达60%。催化剂BET、XRD、H2-TPR及XPS等表征结果表明,在CeO2-Al2O3复合载体中加入CA,可以增大载体及催化剂的比表面积,使Mo物种分散性提高。同时,CA对Ce物种起络合作用,致使催化剂表面Ce元素含量明显增加,进而减弱了活性组分Mo物种与载体间相互作用力,并最终导致了催化剂活性的提升。  相似文献   

17.
先用十二烷基硫酸钠(SDS)对聚苯硫醚(PPS)滤料进行表面改性,随后通过氧化还原沉淀法制得不同质量比的Mn-Ce-Co-Ox/PPS复合滤料。考察了复合滤料在低温选择性催化还原(SCR)反应过程中的催化活性,并通过XRD、FESEM、TEM和XPS等表征手段对复合滤料的结构及性能进行表征分析。结果表明,Mn-Ce-Co-Ox/PPS复合滤料在120-160 ℃时的脱硝效率达到86%-100%,明显优于超声法制备的Mn-Ce-Co-Ox/PPS-UM复合滤料的低温SCR活性,且1.2Mn-Ce-Co-Ox/PPS复合滤料的活性最优。1.2Mn-Ce-Co-Ox/PPS复合滤料中MnO2、Ce2O3、CeO2、CoO、Co3O4以蜂窝状形式均匀分散在PPS纤维表面,且呈弱结晶性结构;其较高的Ce3+/(Ce3++Ce4+)比值和Co元素浓度是该1.2Mn-Ce-Co-Ox/PPS复合滤料具有优异低温SCR活性的主要原因。此外,与Mn-Ce-Co-Ox/PPS-UM复合滤料相比,1.2Mn-Ce-Co-Ox/PPS复合滤料也具有良好的抗H2O和抗SO2性能。  相似文献   

18.
Highly efficient Co3O4/TiO2 monolithic catalysts with enhanced stability were in-situ grown on Ti mesh for CO oxidation,which could completely oxidize CO at 120℃.The comprehensive catalytic performance is competitive to some noble metal catalysts and conventional Co3O4 powder catalysts,which holds great potential toward industrial applications.Meanwhile,the in-situ synthesis strategy of Co3O4/TiO2 monolithic catalysts on flexible mesh substrate in this work can be extended to the development of a variety of oxide-based monolithic catalysts towards diverse catalysis applications.  相似文献   

19.
Nanocomposite of Co3O4 and MCNT was synthesised using one step solvothermal method, and an electrochemical non-enzymatic glucose sensor (Co3O4-MCNT/GCE) was successfully constructed. This sensor was used successfully for the quantitative analysis of trace glucose in serum sample.  相似文献   

20.
We report an efficient catalyst composed of ternary components prepared by inlaying Pd/Co3O4 nanoparticles in alkaline Al2O3 nanosheets for catalytic oxidation of methane. Pd/Co3O4 inlaid in alkaline Al2O3 exhibited a higher ability to break the C-H bond of methane than Pd/Co3O4 supported on SiO2, ZrO2, CeO2, and acidic or neutral Al2O3. Our results show more oxygen vacancies and higher amounts of surface adsorbed oxygen on the surface of Pd/Co3O4/alkaline Al2O3 than on other catalysts, which is responsible for methane activation and conversion. Further, the Pd/Co3O4/alkaline Al2O3 catalyst can almost restore to its initial value in the absence of water when 5% (volume fraction) vapor water was cut off, although a decrease in activity occurred when water vapor was introduced to the reaction system. Even under a condition similar to the exhaust of a lean-burn natural gas engine, the catalytic performance of the Pd/Co3O4/alkaline Al2O3 catalyst is excellent, that is, methane could be completely converted when the sample temperature in the reaction atmosphere was ramped to 400℃.  相似文献   

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