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1.
聚苯胺(PANI)作为一种研究最广泛的导电高分子材料,具有高导电性及良好的氧化还原性。但PANI具有的共轭离域结构使其难溶于有机溶剂,在中性和碱性环境中电导性差,应用受到制约。将具有优异电学性能、导热性能、光学性能和机械性能的碳纳米管(CNTs)与PANI复合,克服PANI的结构缺陷,充分发挥二者的协同作用,可有效提高电容和循环稳定性。综述了近年来国内外有关PANI/CNTs复合材料的制备方法,如化学氧化聚合法和电化学聚合法等,详细介绍了PANI/CNTs复合材料在超级电容器、电化学分析与电池及传感器等方面的应用研究进展,并根据PANI和CNTs性能特点,对复合材料的应用和发展进行展望。  相似文献   

2.
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   

3.
TiO2纳米微粒对聚苯胺性能的影响   总被引:26,自引:0,他引:26  
纳米微粒具有量子尺寸效应, 其光、电、声及磁等方面的性能与常规材料有显著的不同, 其中以TiO2纳米微粒的电荷载体、光电活性中心、光学微腔和光电特性等特征[1,2]尤为引人注目. 导电聚合物的纳米复合材料是纳米材料的研究热点之一, 在导电材料、电流体和高密度信息存储材料等方面具有良好的应用前景[3]. 在导电聚合物中, 聚苯胺(PANI)因其具有较高的电导率, 原料便宜, 稳定性好而成为目前最有希望获得实际应用的导电聚合物[4~6]. 将纳米微粒和PANI制成复合材料, 其光电性能等与PANI相比均有所改变. 目前已相继有PANI-ZrO2, PANI-MnO2, PANI-SiO2纳米复合材料的报道[7,8], 而有关PANI-TiO2研究工作尚少见报道. 本文制备了PANI-TiO2纳米复合材料, 通过红外光谱、紫外可见光谱及透射电镜等探讨了复合材料的微结构及性能.  相似文献   

4.
导电水凝胶结合了水凝胶和导电高分子电性能的独特特性,并且具有特殊三维网络结构。其中聚苯胺(PANI)由于其独特的导电性能得到了广泛应用,因此PANI导电水凝胶是导电水凝胶中研究最为广泛的。本文综述了PANI导电水凝胶的制备方法及其发展,详述了PANI导电水凝胶的四种制备方法:直接填充、原位聚合、化学交联和物理交联。其中,利用直接填充和原位聚合方法制得PANI水凝胶是较传统的方法,获得的PANI水凝胶是由绝缘的水凝胶组分和导电的PNAI组分组合在一起,电化学性能不高。化学交联法的应用提高了导电水凝胶的电化学性能,物理交联法应用较少。最后,对导电水凝胶材料的应用以及未来发展方向进行了展望。  相似文献   

5.
采用甲基磺酸(MSA)掺杂聚苯胺(PANI),并以MSA为溶剂,将其与聚(2,6-亚吡啶基)苯并二嗯唑(PBOPy)采用溶液共混法制备了不同PANI质量分数的PANIPBOPy复合材料。采用红外光谱、wXRD、Uv—Vis、TGA以及SEM对复合材料的结构和性能进行了表征。研究了PANI的质量分数、温度、频率等因素对PANIPBOPy复合材料导电性能和介电性能的影响。研究表明:当PANI的质量分数达到20%时,复合材料的电导率增大了10个数量级;复合材料的介电常数和介电损耗则随着PANI质量分数的增加呈现先增大后减小的趋势,随着频率的升高先迅速降低而后趋于稳定,并且随温度升高而增大,40℃时PANI质量分数为15%的复合材料的介电常数约为230。  相似文献   

6.
利用紫外光作为辅助条件,在反胶束体系中采用一步双原位法合成了硝酸(HNO3)、对甲基苯磺酸(TSA)和5-磺基水杨酸(SSA)掺杂的银/聚苯胺(Ag/PANI)纳米复合材料.通过对复合材料进行红外光谱(FTIR)、紫外光谱(UV-Vis)、扫描电镜(SEM)、X射线衍射(XRD)和导电性能的测试,研究了不同质子酸对Ag/PANI纳米复合材料结构、形貌和导电性能的影响.测试结果表明,3种酸掺杂制备的Ag/PANI纳米复合材料均为聚苯胺包覆银粒子的核-壳结构.不同的质子酸掺杂会对Ag/PANI纳米复合材料的电性能有重要影响.在3种酸掺杂的复合材料中,TSA掺杂的复合材料的电导率最佳,为215.14 S·cm-1.  相似文献   

7.
运用改进的溶胶凝胶-原位聚合法制备出了兼具电、磁性能的PANI/ZnFe2O4纳米复合材料,借助TEM、XRD、FTIR、四探针电导率仪和VSM(振动样品磁强计)等技术研究了复合材料的结构及其电磁性能。结果表明,通过该法可以实现ZnFe2O4与PANI的有机复合,制得纳米尺寸的、ZnFe2O4与PANI相间以化学键结合的纳米复合材料;复合材料兼具电、磁性能,其导电率随ZnFe2O4含量增加而降低,饱和磁化强度随之而升高,复合物的矫顽力在所研究的含量范围内均较纯ZnFe2O4大,且随ZnFe2O4含量的增加呈先升高后降低的变化趋势。此外,对ZnFe2O4进行HNO3预处理可以有效改善复合材料的电磁性能。  相似文献   

8.
李娟  崔利 《应用化学》2011,28(3):297-301
在聚苯胺(PANI)和二氧化锰(MnO2)存在的条件下,以FeCl3/甲基橙为模板,通过化学氧化法聚合吡咯(Py)单体,制备MnO2/PPy/PANI纳米管复合材料。 利用X射线衍射、透射电子显微镜、红外光谱和电化学测试等多种测试技术对复合材料进行物性表征和电化学电容性能测试,并讨论了不同含量的PANI对复合物材料的结构和性能的影响。 结果表明,由于PANI、MnO2与PPy三者的相互协同作用,以及材料管状结构的大比表面积,使三元复合材料具有比二元复合材料要大的电化学活性。 所合成的三元复合材料最大比容量达到458.4 F/g。  相似文献   

9.
导电高分子复合材料(Conductive Polymer Composites,CPCs)研究的重点和热点之一是如何控制导电粒子的分布,有效降低CPCs逾渗值,提高CPCs综合性能,其中具有隔离结构的CPCs因能大大降低复合材料的逾渗值而受到研究者的广泛关注。本文综述了制备隔离结构CPCs的方法,包括机械共混法、溶液共混法、乳液法等,分析了此类材料具有较低逾渗值的机理,总结了此类材料对温度、溶剂等外场的响应规律。根据复合材料微观结构指出提高此类材料力学性能是推进此类材料应用的关键。  相似文献   

10.
石墨烯是一种单原子层厚度的石墨材料,具有独特的二维结构和优异的电学、力学以及热学性能。同时它也是一种具有良好应用前景的锂离子电池电极材料。电极材料的微观结构对其性能有很大影响,利用石墨烯获得具有特殊形貌和微观结构的电极材料,能有效改善材料的各项电化学性能。本文综述了石墨烯及其复合材料在锂离子电池中的应用研究进展。在负极复合材料中,石墨烯不仅可以缓冲材料在充放电过程中的体积效应,还可以形成导电网络提升复合材料的导电性能,提高材料的倍率性能和循环寿命。通过优化复合材料的微观结构,例如夹层结构或石墨烯片层包覆结构,可进一步提高材料的电化学性能。在正极复合材料中,石墨烯形成的连续三维导电网络可有效提高复合材料的电子及离子传输能力。此外,相比于传统导电添加剂,石墨烯导电剂的优势在于能用较少的添加量,达到更加优异的电化学性能。最后对石墨烯复合材料的研究前景进行了展望。  相似文献   

11.
有序介孔二氧化硅/聚苯胺复合物   总被引:1,自引:0,他引:1  
本文综述了有序介孔二氧化硅/聚苯胺复合物从出现至今的10余年里的研究进展,介绍了复合物的合成方法,包括气相法、液相法和一步合成法,以及模板剂单体原位合成法等。引入苯胺单体后在孔道内聚合生成聚苯胺,即聚苯胺与有序介孔二氧化硅形成了复合物。该复合物的结构和形貌,以及孔道中聚苯胺的结构形态和电学性质,与本体聚苯胺相比具有显著的变化。这种以有序介孔二氧化硅为模板制备的聚苯胺的单分子导线,有潜力应用在新型的电子或光电子器件上。此外,该复合物因为其独特性质很可能在燃料电池的聚合物电解质膜、湿度传感器、电流变材料以及电化学电容器等方面得到应用。  相似文献   

12.
碳纳米管/聚苯胺复合材料因其独特的电磁学、热力学和机械性能,在很多领域具有潜在应用价值.本文作者对近年来该复合材料的制备方法、性能及应用方面的研究进展进行了综述.  相似文献   

13.
舒建华  仇伟  郑少琴 《化学进展》2009,21(5):1015-1022
由于聚苯胺/纳米金复合材料不仅同时具有纳米金和聚苯胺原有的特异性能,而且两组分之间还存在着相互协同作用,极大地提升了聚苯胺基体的性能,从而表现出突出的固有电导性、优异的反应催化性和特殊的电荷传递性,因此成为近年来的研究热点。本文综述了聚苯胺/纳米金复合材料的最新研究进展:归纳了聚苯胺/纳米金复合材料的制备方法和各种方法的机理,简单介绍了复合材料在生物医学、传感器和微电子装置等方面的应用,展望了今后复合材料研究的方向。  相似文献   

14.
Composites based on aligned carbon nanotubes and polyaniline are prepared via the electrochemical polycondensation of aniline in a sulf uric acid solution. The structure of the composites and the character of interaction of polyaniline and the surface of carbon nanotubes are studied by scanning and transmission electron microscopy, X-ray diffraction, and IR and X-ra y photoelectron spectroscopy. It is shown that in the composites, electron density is transferred from the carbon nanotube to the polyaniline film. The occurrence of polyaniline on the surface of nanotubes increases the mean current in cyclic voltammograms of the composite material and leads to a marked increase in the calculated specific capacity of electrodes formed on its basis.  相似文献   

15.
聚苯胺/金属纳米粒子复合物的制备及性能   总被引:3,自引:0,他引:3  
李新贵  孙晋  黄美荣 《化学进展》2007,19(5):787-795
基于国内外最新研究文献及本课题组研究工作,从发展历史、制备方法、多功能性方面系统综述了近年来发展起来的聚苯胺/金属纳米粒子复合物。在聚苯胺基体中引入金属纳米粒子的方法可归纳为3大类:原位复合法、直接共混法和层层自组装法。所形成的有机聚苯胺和无机金属杂化复合物不仅能保留各自原有的特异性能,而且二组分之间还存在着相互协同作用,能够极大地提升基体聚苯胺材料的性能,电导率最高可提高100倍,电氧化催化电流最高可提高10倍。分散在聚苯胺膜中的极少量铂微粒就能使不锈钢板的腐蚀电位稳定在钝化区域。聚苯胺/金属纳米粒子复合物所表现出的突出的固有电导性、优异的反应催化性和极强的金属防腐性,使其跻身于为数不多的新型高性能复合材料之列,显示出了诱人的应用前景。  相似文献   

16.
A genetic algorithm (GA) was used to optimize a multilayer electromagnetic shield of polyaniline (PANI)–polyurethane (PU) conducting composites in the microwave band. First, the electronic properties of freestanding films with different mass fractions of polyaniline were studied. A very low percolation threshold (0.2%) was found, with a maximum of conductivity of 104 S/m. Second, the electromagnetic shielding effectiveness of the films were investigated in the X and Ku bands (8.2–18 GHz), showing an attenuation increase of 1–40 dB with the mass fraction of polyaniline in the blends. Then, the electromagnetic shielding properties of multi‐layered PAni–PU composites were investigated in order to obtain an attenuation superior to 40 or 80 dB, depending on the application. To improve the performances of the electromagnetic shields, three‐layered PAni–PU composites were made, using an optimization method. The intrinsic physical parameters of the composites were used as a database for the optimization calculation. The optimization results showed that materials with a thickness of <500 µm could answer many industrial or military shielding applications. As the electronic properties can be tuned easily with the mass fraction of polyaniline in the blends, conducting multi‐layered composite materials can be made following the results of the optimization. Their electromagnetic shielding effectiveness was measured, showing good agreement between the measurements and modeling. These results demonstrated that the genetic algorithm allows us to conceive lightweight and high performance electromagnetic shields using intrinsically conducting polymers. The mass per unit of surface of the shield was <200 g/m2, giving potential applications in the aeronautics domain. Copyright © 2007 John Wiley & Sons, Ltd.  相似文献   

17.
The present article deals with current trends in spinel based modified polymer composite materials for applications in the field of electromagnetic shielding. The interaction between the various spinel based materials and polymers is an emerging field of studies among various researchers. The thermal stability, electrical conductivity, the bonding between the metal ferrites and the polymer plays an important role in the interaction of electromagnetic radiation. These properties also effect the mechanism of the EM waves for the shielding applications. Considering these all properties, polyaniline appears to be an suitable polymer for electromagnetic shielding applications. Polyaniline composites not only reinforced the properties of spinel materials but also enhanced the dielectric properties of the composite material. When carbon based materials such as graphene, graphene oxide and CNT was added along with spinel material in polyaniline based composite, they accelerate the electrical properties and enhances the shielding applications. In this paper the various synthesis methods, fabrication methods of polyaniline, and the properties of polyaniline based composites have been discussed. In addition, the various salient features and futuristic challenges of polyaniline based composite materials for EMI shielding applications were attempted to make a well equipped material for radar absorption.  相似文献   

18.
Conducting polymer-silver composites   总被引:1,自引:0,他引:1  
Preparations of hybrid composites composed of two conducting components, a conducting polymer and silver, are reviewed. They are produced mainly by the oxidation of aniline or pyrrole with silver ions. In another approach, polyaniline or polypyrrole are used for the reduction of silver ions to metallic silver. Other synthetic approaches are also reviewed. Products of oxidation of aniline derivatives, including phenylenediamines, are considered. Morphology of both the conducting polymers and the silver in composites displays a rich variety. Conductivity of the composites seldom exceeds 1000 S cm?1 and seems to be controlled by percolation. Interfacial effects are also discussed. Potential applications of hybrid composites are outlined; they are likely to extend especially to conducting inks, printed electronics, noble-metal recovery, antimicrobial materials, catalysts, and sensors.  相似文献   

19.
An express method of synthesis of surface-modified membrane composites is suggested that allows obtaining heterogeneous materials featuring effects of the blocking of the transport of solvent ions and molecules. Studies using the methods of atomic force microscopy (AFM), differential scanning calorimetry (DSC), thermogravimetric analysis (TGA), and IR spectroscopy show that polyaniline is in the form of emeraldine and water at the interface of polyaniline aromatic chains and initial membrane sulfogroups is in a structured state due to formation of interpolymer complexes. This determines higher thermal stability of composites and specific morphology of the polyaniline layer. Measurement of electroosmotic and diffusion permeability and also membrane conductivity in HCl solutions (with the concentration of 0.01 to 2 M) shows the blocking effect of the polyaniline layer causing a significant decrease in transport characteristics in a wide range of concentrations of equilibrium solutions. A model of structural heterogeneity of composites is offered that takes into account the presence of an additional structural element, polyaniline, in the basic polymer matrix. Mechanisms of the observed barrier effects are discussed. Comparison of the transport-structural parameters of the MF-4SK membrane and MF-4SK/PAn composites allows elucidating the role of polyaniline in formation of transport routes for ion and solvent fluxes.  相似文献   

20.
聚苯胺复合材料研究进展   总被引:6,自引:0,他引:6  
综述了聚苯胺/无机物复合材料和聚苯胺/有机高聚物复合材料的合成方法,性能特征,并展望了聚苯胺复合材料的研究,应用前景。  相似文献   

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