首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 78 毫秒
1.
通过在碱液中阴极还原铁酸铜(t-CuFe2O4)简便地实现了纳米Fe/Cu复合材料的自组装。采用循环伏安(CV)与X射线衍射(XRD)分析了自组装过程中的相变。通过透射电镜(TEM)、选区电子衍射(SAED)以及扫描透射-能谱分析(STEM-EDX)的表征可以发现电结晶得到的铁、铜纳米颗粒分布均匀且接触紧密。当用于铁镍电池负极时,Fe/Cu纳米复合电极展现了较好的放电容量与充电接收能力,并具备优异的高倍率与低温性能。当电流密度高达4 500 mA·gFe-1或运行温度仅为-40℃时,该电极仍拥有很好的输出容量与电位特性。线性扫描伏安(LSV)分析证明了该电极中原位生成的Cu纳米颗粒催化了活性Fe的阳极溶解动力学性能,因而明显改善了电极的高倍率与低温放电性能。  相似文献   

2.
通过在碱液中阴极还原铁酸铜(t-CuFe_2O_4)简便地实现了纳米Fe/Cu复合材料的自组装。采用循环伏安(CV)与X射线衍射(XRD)分析了自组装过程中的相变。通过透射电镜(TEM)、选区电子衍射(SAED)以及扫描透射-能谱分析(STEM-EDX)的表征可以发现电结晶得到的铁、铜纳米颗粒分布均匀且接触紧密。当用于铁镍电池负极时,Fe/Cu纳米复合电极展现了较好的放电容量与充电接收能力,并具备优异的高倍率与低温性能。当电流密度高达4 500 m A·g_(Fe)~(-1)或运行温度仅为-40℃时,该电极仍拥有很好的输出容量与电位特性。线性扫描伏安(LSV)分析证明了该电极中原位生成的Cu纳米颗粒催化了活性Fe的阳极溶解动力学性能,因而明显改善了电极的高倍率与低温放电性能。  相似文献   

3.
马淳安  汤俊艳  李国华  盛江峰 《化学学报》2006,64(20):2123-2126
碳化钨具有类铂催化性能和较强的抗中毒能力, 但其催化活性远低于铂等贵金属催化剂. 如何提高其催化活性是碳化钨应用研究所面临的主要难点与热点之一. 为寻找改善碳化钨催化性能的技术方法, 本文将表面修饰与原位还原碳化技术相结合, 成功制备了碳化钨/纳米碳管复合材料, 采用XRD, HRTEM等手段对其形貌和晶相组成进行了表征, 并应用粉末微电极对其电催化性能进行了评价. 实验结果表明, 样品由碳化钨颗粒和纳米碳管组成, 碳化钨为形态不规则纳米颗粒, 均匀地生长于纳米碳管的外表面; 在碱性溶液中, 复合材料对对硝基苯酚的电催化性能明显强于具有介孔结构的纯碳化钨样品. 这说明将碳化钨复合到纳米碳管的外表面是提高碳化钨电催化活性的有效技术方法之一.  相似文献   

4.
荣凤霞  周俊  刘薇  王锐  白燕 《合成化学》2011,19(1):11-14
经混酸纯化处理的多壁碳纳米管(MWCNTs)负载纳米硒(Nano-Se0)制备纳米硒/多壁碳纳米管复合材料(Nano-Se0/MWCNTs,简称1),其结构经IR,TEM和SEM表征.以Fe(CN)4-/3-6 为探针离子,采用循环伏安法和电化学阻抗法考察了1的电化学性能.  相似文献   

5.
分别采用粉末碳纳米管(CNT)和带连接点的碳纳米管网(CNTN)为模板,通过与聚苯胺(PANI)有限域聚合得到了CNT/PANI和CNTN/PANI 2种复合材料.采用透射电子显微镜和扫描电子显微镜对材料的形貌进行了表征,采用氮气吸附-脱附分析研究了材料的孔结构参数,运用双电四探针测试仪对材料的导电性能进行了测试,利用恒流充放电、循环伏安、循环寿命及交流阻抗等电化学测试手段表征了材料的电化学储能性能.结果表明,CNTN/PANI复合材料比CNT/PANI复合材料表现出更好的导电性能和电化学储能性能,其放电比容量可达到143.2 F/g(有机电解液).  相似文献   

6.
MPNS/PMA纳米复合材料的制备与性能;纳米SiO2;聚马来酸酐;复合材料  相似文献   

7.
高分子自组装Mn2O3花瓣状纳米带、纳米线的研究   总被引:1,自引:0,他引:1  
通过控制热处理工艺条件, 利用Mn(CH3COO)2和具有特殊空间构型的聚乙烯醇(PVA), 在600 ℃合成了类花瓣状Mn2O3纳米带和纳米线结构. SEM, XRD表征分析证明Mn2O3纳米带结构为方铁锰矿晶型结构, 沿(222)方向择优生长. 分析了热处理工艺对一维纳米结构的影响机制. 初步探讨了Mn2O3一维纳米结构的生长机理.  相似文献   

8.
本文从开发替代贵金属催化剂(如RuO2,IrO2,Pt)的廉价催化剂方面着手,以金属有机框架化合物ZIF-67为前驱物,通过室温溶剂热法合成金属有机骨架ZIF-67,将其高温炭化制备出包覆Co纳米颗粒的氮掺杂的碳基复合材料,即Co@NC. 研究炭化温度对其形貌结构、元素组成和电催化性能的影响. 制备形貌结构最优的Co@NC催化剂,并研究了其在碱性条件下析氧反应的催化活性和稳定性.  相似文献   

9.
以乙酸铜为铜源、硝酸银为银源并利用天然蜂蜜为还原剂在无模板剂无需高压反应釜的条件下,环保地、简便地制备了Cu_2O/Ag复合材料。并采用X射线衍射、扫描电镜对材料的结构与形貌进行了表征。通过抑菌圈法证明Cu_2O/Ag复合材料相比Cu_2O对大肠杆菌有着更好的抑菌性能,通过分析Cu_2O/Ag对大肠杆菌生长过程的影响发现,当Cu_2O/Ag复合材料的浓度达到10μg/m L时,Cu_2O/Ag复合材料能够彻底抑制大肠杆菌的生长。通过SEM观察了Cu_2O/Ag复合材料对大肠杆菌作用过程中菌种形貌的变化表明,Cu_2O/Ag复合材料对大肠杆菌的抗菌作用过程是先破坏细胞膜结构使细菌断裂成小段,这些小段颗粒逐渐皱缩进而彻底被分解为大分子物质。本文制备的Cu_2O/Ag复合材料在抗菌剂领域具有潜在的应用价值。  相似文献   

10.
聚苯乙烯/蒙脱土纳米复合材料的自组装行为   总被引:5,自引:0,他引:5  
聚合物/层状硅酸盐(PLS)纳米复合材料由于具有常规复合材料所没有的结构、形态以有较常规聚合物基复合材料更优异的物理力学性能等而引起人们的关注^[1],但以往文献^[1-3]主要报道PLS纳米复合材料的制备与性能表征,对于熔融加工过程中粘土粒子吸高分子的取向和结构研究很少。作者等^[4-6]发现了剥离型聚苯乙烯(PS)/蒙脱土纳米复合材料中的剪切诱导有序结构,并采用广角X射线衍射法(WAXD)、透射电镜法(TEM)和红外二向色性法对其形成机理进行了研究。结果表明,该有序结构的主要来源是分散在PS基体中的蒙脱土初级粒子(Primary particles)内部片层的规整排列以及沿平行于样品表面方面的平面取向,PS的苯环平面平行剪切流动方向取向,而烷项链未见明显取向。本文报道该纳米复合材料的剪切诱导有序结构在升温过程中出现的自组装行为,并用原位升温X射线衍射法和红外二向色性法对蒙脱土初级粒子的规整度以及PS的苯环和烷基链在升温过程中的取向行为进行了研究,在此基础上提出了可能的形成机理。  相似文献   

11.
胡晨  金翼  朱少青  徐晔  水江澜 《应用化学》2020,37(4):380-386
LiFePO4电极材料具有比容量高、工作电压稳定、成本低及环境友好等优点,被视为理想的锂离子电池正极材料,是目前电动汽车主要正极材料之一。 然而在低温下LiFePO4电池性能显著降低,限制了其在冬季和高寒地区中的使用。 研究人员分析了低温下磷酸铁锂电池性能快速下降的原因,并提出解决办法。 本文概述了提高磷酸铁锂电池低温性能的4个方法:1)脉冲电流;2)电解液添加剂;3)表面包覆;4)体相掺杂。  相似文献   

12.
13.
A procedure for simultaneous solvent extraction of Cu(II) and Fe(III) from river surface waters as diethyldithiocarbamates (DDC) 1,1,1-trifluoroacetylacetonates into isobutyl methyl ketone (IBMK) has been developed prior to their determination by flame atomic absorption spectrometry. Experimental design approaches were used in order to obtain the best compromise conditions for simultaneous solvent extraction. Variables such as pH, sodium DDC or 1,1,1-trifluoro-2,4-pentanodione (H(TFA)) concentrations, reaction time, IBMK volume and extraction time have been optimized. First, Plackett–Burman designs involving 13 experiments and 2 replicates were used as screening designs to determine which variables were significant. DDC or H(TFA) concentration, as well as pH and IBMK volume were found statistically significant and they were finally optimized by applying a central composite design (15 experiments and 2 replicates). Optimum values for these variables were selected for compromise extraction conditions of Cu(II) and Fe(III) species. An optimum pH of 5.3 was chosen for Cu–H(TFA) and Fe–H(TFA) formation with an optimum H(TFA) concentration of 0.20% (m/v). The optimum IBMK volume for extraction was 8 ml, allowing a pre-concentration factor of 10. A microwave-assisted peroxydisulfate oxidation was used to break down the metal–organic matter complexes in river surface waters in order to assess the total Cu and Fe contents. Applying the experimental design approach, optimum conditions was an irradiation for 5.0 min at a microwave power of 500 W using 0.5 g of ammonium peroxydisulfate. The method was applied to determine total Cu and Fe contents and also labile Cu(II) and Fe(III) contents in several river surface water samples.  相似文献   

14.
Cu/Sn/C composite nanofibers were synthesized by using dual‐nozzle electrospinning and subsequent carbonization. The composite nanofibers are a homogeneous amorphous matrix comprised of Cu, Sn, and C with a trace of crystalline Sn. The Li‐ and Na‐ion storage performance of the Cu/Sn/C fiber electrodes were investigated by using cyclic voltammetry, galvanostatic cycling, and electrochemical impedance spectroscopy. Excellent, stable cycling performance indicates capacities of 490 and 220 mA h g?1 for Li‐ion (600 cycles) and Na‐ion (200 cycles) batteries, respectively. This is a significant improvement over other reported Sn/C nanocomposite devices. These superior electrochemical properties could be attributed to the advantages of incorporating one‐dimensional nanostructures into the electrodes, such as short electron diffusion lengths, large specific surface areas, ideal homogeneous structures for buffering volume changes, and better electronic conductivity that results from the amorphous copper and carbon matrix.  相似文献   

15.
An automatic on-line system is developed for the trace determination of copper and iron species in fresh waters by flame atomic absorption spectrometry using only 5 and 2?mL of sample, for copper and iron determination, respectively. This system, which includes a home-made minicolumn of commercially available resin containing aminomethylphosphonic acid functional groups (Chelite P), comprises two operational modes. The first, used for the determination of the dissolved labile fraction (free copper and iron ions and their weak complexes) is based on the elution of this fraction from a minicolumn containing the chelating resin loaded in-situ with the sample. The second mode is used for the determination of total trace copper and iron concentrations. This last mode is based on the retention/preconcentration of total metals on the Chelite P resin after on-line sonoassisted digestion of water samples acidified with nitric acid (0.5?mol?L?1 final concentration) to break down metal organic complexes present in fresh waters as river waters. The figures of merit for copper and iron determination in both fractions are given and the obtained values are discussed. The analytical method was characterized and the limit of detection and limit of quantification for the two metals were 0.5 and 1.6?µg?L?1 for Cu and 2.3 and 6.1?µg?L?1 for Fe, respectively. The repeatability, expressed as relative standard deviation, was in the range 1.0–2.1%. The speciation scheme was applied to the analysis of river surface water samples collected in Galicia (Northwest, Spain).  相似文献   

16.
17.
The infrared spectra of isotopically dilute (matrix-isolated HDO molecules) isostructural compounds M(HCOO)2·2H2O (M=Mn,Fe,Co,Ni,Zn,Cu) are presented and discussed in the region of the OD stretching modes. According to the structural data the compounds under study are divided into two groups: in M(HCOO)2·2H2O (M=Mn,Ni,Zn) the H2O(1) molecules form stronger hydrogen bonds as compared to H2O(2); in M(HCOO)2·2H2O (M=Fe,Co,Cu) the H2O(2) molecules form stronger hydrogen bonds as compared to the H2O(1) molecules. The influence of the metal–water interactions (synergetic effect) and the unit-cell volumes (repulsion potential of the lattice) on the hydrogen bond strength within the isostructural series is discussed. The wavenumbers of the uncoupled OD stretching modes of the HDO molecules influenced by guest ions (Cu2+ ions matrix-isolated in M(HCOO)2·2H2O and M2+ ions matrix-isolated in Cu(HCOO)2·2H2O) are presented and commented. For example, the analysis of the spectra reveals that when Cu2+ ions are included in the structure of M(HCOO)2·2H2O the hydrogen bonds of the type M–OH2OCHO–Cu are considerably weaker as compared to those of the same type formed when M2+ ions are included in the structure of Cu(HCOO)2·2H2O if the cations remain unchanged.  相似文献   

18.
为了提高用于油气以及地热钻井热电池正极材料的比容量和电压稳定性,将Cr和Ni离子同时掺杂到尖晶石锰酸锂中。通过固相法制备的LiCr_xNi_yMn_(2-x-y)O_4(0≤x≤0.3,0≤y≤0.3)材料显示出结晶度良好的尖晶石相结构和规则的八面体形态。研究了LiCr_xNi_yMn_(2-x-y)O_4材料与LiNO_3-KNO_3共晶电解质的热相容性以及LiCr_xNi_yMn_(2-x-y)O_4/Li-Mg-B电池体系在10~30 mA·cm~(-2)的电流密度以及200~300℃的温度范围内的放电性能。用Cr~(3+)和Ni~(2+)部分取代尖晶石中的锰,增强了尖晶石结构的稳定性,从而提高电池的电压和容量。其中,LiCr_(0.1)Ni_(0.3)Mn_(1.6)O_4在10 m A·cm~(-2)和300℃的条件下具有最大比容量713.29 mAh·g~(-1),在LiNO_3-KNO_3熔盐电池中放电性能良好。  相似文献   

19.
《Arabian Journal of Chemistry》2020,13(12):8935-8964
This review depicts the exposure of chitin and chitosan base multifunctional nanomaterial composites for promising applications in field of biomedical science structure, synthesis as well as potential application from a colossal angle. We elaborated critically each of the chitin and chitosan base nanomaterial with its potential application toward biomedical science. For different biomedical applications it use in form of hydrogels, microsphere, nanoparticles, aerogels, microsphere and in form of scaffold. Due to this it had been blended with different polymer such as starch, cellulose, alginate, lipid, hyaluronic acid, polyvinyl alcohol and caboxymethyl cellulose. In this review article, a comprehensive overview of combination of chitin and chitosan base nanomaterial with natural as well as synthetic polymers and their biomedical applications in biomedical field involving drug delivery system all the technical scientific issues have been addressed; highlighting the recent advancements.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号