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1.
Z型异质结由于具有促进载流子分离能力和保持较高氧化还原能力的优点成为近几年光催化领域的研究热点之一.本文通过水热法制备了ZnO/CoO/CDs(碳点)的Z型异质结复合材料,有效的电荷传输促进了复合材料光催化产氢能力.同时CDs的引入调节了复合材料的形貌,提供更多的反应活性位点.产氢测试结果表明,ZnO/CoO/CDs Z型异质结复合材料的产氢量是ZnO/CDs单一光催化剂的2倍多,说明该材料在光催化分解水领域具有潜在应用前景.该工作思路为基于CDs的Z型异质结光催化剂材料的设计合成提供一定理论指导.  相似文献   

2.
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   

3.
多壁碳纳米管填充高密度聚乙烯复合材料的导电特性   总被引:6,自引:1,他引:5  
自20世纪90年代Iijima发现碳纳米管(Carbon nanotubes,CNTs)以来,由于其独特的力学性能、电学性能和极高的纵横比,使CNTs在纳米电子器件、催化剂载体、电极材料、储氢材料等方面的应用取得了引人注目的进展,迄今,CNTs填充高分子复合材料的研究主要集中在力学增强以及光学性能的改进方面,其制备方法主要是溶液法和原位聚合方法,  相似文献   

4.
以碳纳米管和氧化石墨烯(CNTs/GO)为主体材料, 通过化学还原法制备了CNTs/GO 负载硫的复合正极材料CNTs/GO/S. 扫描电子显微镜(SEM)及透射电子显微镜(TEM)测试表明, CNTs 均匀插层在GO片间, 从而形成三维多孔结构, 有利于电解液的浸润; 活性物质硫均匀地负载在CNTs/GO 表面. 电化学测试表明,CNTs/GO/S复合材料具有高的比容量和良好的循环稳定性: 在1C倍率电流密度下, 复合材料首次放电比容量高达904 mAh·g-1, 经过50圈循环之后, 复合材料的比容量仍保持在578 mAh·g-1.  相似文献   

5.
寻找理想的骨修复材料一直是骨科材料领域研究热点。自然骨是由纳米羟基磷灰石和胶原构成的纳米复合材料。源于仿天然硬组织构想的纳米磷灰石-有机高分子复合材料是把高韧性的高分子基质与高刚性的纳米无机磷灰石晶体巧妙结合,使其最大程度地实现两种成分的优势互补和协同优化,赋予仿生纳米复合材料高强韧的力学性能。与组成同样重要的是结构因素,这种材料包括不同尺寸的架构组织和可控取向。纳米羟基磷灰石/高分子复合材料已成为骨组织修复材料领域的研究热点和发展方向。本文综述了近些年用于人体骨组织修复材料的纳米羟基磷灰石/天然(或非天然)高分子材料的制备技术、性能等方面研究进展及现状,并对其发展提出了展望。  相似文献   

6.
碳纳米管-Mg65Cu25Gd10非晶复合材料玻璃转变的动力学性质   总被引:1,自引:2,他引:1  
制备了Mg65Cu25Gd10大块非晶合金及其碳纳米管(CNTs)复合材料,对两种材料进行了不同扫描速率下的差热扫描量热分析,研究了加入CNTs对材料玻璃转变和晶化动力学效应的影响。结果表明:加入CNTs后,复合材料的玻璃转变和晶化行为仍然具有动力学效应,但加入的CNTs减小了材料晶化行为对升温速率的依赖程度;同时,加入CNTs加大了材料发生玻璃转变时需要克服的能量势垒,增大了峰值温度时的晶化反应速率常数,从而降低了材料的玻璃形成能力(GFA);对CNTs降低GFA的原因也进行了探讨。  相似文献   

7.
将力学性能优良的碳纳米管(CNTs)与羟基磷灰石(HA)生物陶瓷相复合,发展CNTs/HA复合材料来应用于骨组织修复领域,有望解决HA生物陶瓷力学性能的不足。通过3种不同的制备方法,即通过表面活性剂将CNTs分散在HA基体中、通过酸碱中和反应将CNTs与HA共沉淀以及通过体外浸泡在CNTs上矿化生长HA等方法来获得CNTs/HA复合材料。深入研究CNTs的表面结构和分散状态对CNTs/HA复合材料力学性能的影响。结果表明,CNTs的添加改变了HA的脆性,导致复合材料抗压力学性能得到提高。但是,由于复合材料制备方法的不同,导致CNTs在HA基体中的分散状态、表面结构的完整性以及与HA的界面结合情况不同,导致其抗压力学性能不同。其中,通过表面活性剂将CNTs分散在HA基体中而获得复合材料的抗压力学性能表现最好,而CNTs与HA通过共沉淀法所获得复合材料的抗压力学性能表现最差。  相似文献   

8.
将力学性能优良的碳纳米管(CNTs)与羟基磷灰石(HA)生物陶瓷相复合,发展CNTs/HA复合材料来应用于骨组织修复领域,有望解决HA生物陶瓷力学性能的不足.通过3种不同的制备方法,即通过表面活性剂将CNTs分散在HA基体中、通过酸碱中和反应将CNTs与HA共沉淀以及通过体外浸泡在CNTs上矿化生长HA等方法来获得CNTs/HA复合材料.深入研究CNTs的表面结构和分散状态对CNTs/HA复合材料力学性能的影响.结果表明,CNTs的添加改变了HA的脆性,导致复合材料抗压力学性能得到提高.但是,由于复合材料制备方法的不同,导致CNTs在HA基体中的分散状态、表面结构的完整性以及与HA的界面结合情况不同,导致其抗压力学性能不同.其中,通过表面活性剂将CNTs分散在HA基体中而获得复合材料的抗压力学性能表现最好,而CNTs与HA通过共沉淀法所获得复合材料的抗压力学性能表现最差.  相似文献   

9.
通过共挤出包覆-热压法制备了具有隔离结构的聚丙烯(PP)/碳纳米管(CNTs)电磁屏蔽复合材料。 其中,CNTs随机分布于PP基体中形成导电相,该导电复合物作为包覆层包敷在纯PP颗粒表面,形成包覆复合粒子,经热压后形成隔离导电网络。 结果表明,所制备的隔离结构复合材料呈现良好的导电性能,可获得较低的导电逾渗值0.28%(体积分数);在CNTs质量分数为5.6%时,该复合材料电磁屏蔽性能达到25.6 dB,同时具有良好的力学性能。 本文结果表明,共挤出包覆-热压法制备隔离结构导电复合材料方法简单可控、绿色环保,对开发高性能电磁屏蔽复合材料具有重要指导意义。  相似文献   

10.
通过化学气相沉积方法原位制备了氧化硅/碳纳米管(SiO/CNTs)极材料.扫描电镜(SEM)测试结果表明,碳纳米管沉积在氧化硅表面,形成笼状结构,将氧化硅粒子紧密包裹.SiO/CNTs负极材料的初始充放电容量分别为1171和789mAh/g,经过80次充放电循环后,可逆容量为500mAh/g.在循环过程中,碳纳米管和氧化硅之间的紧密接触使得SiO/CNTs复合材料保持了稳定的导电网络,循环性能得以提高.  相似文献   

11.
聚乙烯链在碳纳米管侧壁吸附的动力学模拟研究   总被引:2,自引:2,他引:0  
利用经典的分子动力学模拟方法对聚乙烯(PE)分子在两种不同类型的碳纳米管(CNT)中的吸附进行了研究. 计算了两者之间的扩散系数和相互作用能; 利用PE链自身的扭转角分布和取向参数对PE链构象进行了分析. 结果表明, PE链可以在CNT上很好的吸附, 且PE的构象和吸附位置主要与温度和CNT的半径有关, 与管的类型关系不大.  相似文献   

12.
Multiwalled carbon nanotubes (CNTs) were oxidized by sodium hypochlorite (NaOCl) solution and were employed as adsorbents to study their characterizations and adsorption performance of benzene, toluene, ethylbenzene and p-xylene (abbreviated as BTEX) in an aqueous solution. The physicochemical properties of CNTs such as purity, structure and surface nature were greatly improved after oxidation, which significantly enhanced BTEX adsorption capacity. The adsorption capacity of CNT(NaOCl) increased with contact time and initial adsorbate concentration, but changed insignificantly with solution ionic strength and pH. A comparative study on the BTEX adsorption revealed that the CNT(NaOCl) had better BTEX adsorption as compared to CNTs and granular activated carbon. This suggests that the CNT(NaOCl) are efficient BTEX adsorbents and that they possess good potential for BTEX removal in wastewater treatment.  相似文献   

13.
Batch adsorption technique was applied to study the adsorption of radiocobalt on multiwalled carbon nanotubes (CNTs) with deferent sizes. The aim of this work was to examine the effect of contact time, pH, solid content, foreign ions and CNT particle sizes on the removal of Co(II) ions from aqueous solutions by CNTs. The results indicated that the adsorption of Co(II) was strongly dependent on pH and the adsorption capacity was in inverse proportion to the particle sizes of CNTs. The adsorption of Co(II) was weakly affected by ionic strength and foreign ions. Ion exchange and surface complexation were the main adsorption mechanisms. The kinetics of Co(II) adsorption on CNTs was described well by pseudo-second-order model. The Langmuir and Freundlich models were applied to interpret the adsorption data. The results are important to understand the physicochemical behavior of Co(II) with CNTs, and for the application of CNTs in the preconcentration of radiocobalt from large volumes of aqueous solutions.  相似文献   

14.
Previous investigations have revealed that even long carbon nanotubes (CNTs) retain bond patterns that are characterized by the localization of Clar rings. Even for CNTs with 10 nm length, an alternated, oscillating structure of Clar and Kekulé patterning was also found, indicating that these arrangements may possibly persist for even longer nanotubes, given that they are finite. In the present work, we perform a detailed and comprehensive theoretical study of this phenomenon, in order to find the causes that give rise to these patterns. A complete set of CNTs with different chiralities, diameters (up to 2 nm), lengths (up to 10 nm) and endings (capped, uncapped, and tailored endings) was considered for such purposes. The results indicate that the Clar patterning appears not only on armchair CNTs, but also on those with chiral angle values close to 30°, and this results in a stabilization of the structure, when compared with the uniform, zigzag CNTs. This stabilizing effect points to the causes that underlie the three Nakamura CNT types, resulting as the superposition of structures with a maximal number of Clar rings. Although there is a strict dependence on the border shape, the main cause of the bond patterning in long tubes is to be found in the intrinsic wrapping of each CNT, because the type and number of oscillations present in the longest structures do not depend on the particular length. Nevertheless, the three Nakamura types of armchair tubes appear to subsist beyond the appearance of oscillations, because each of these sets evolves in a different manner, and energy properties that link them together. Apart from the geometry, Clar patterning was investigated through NICS (Nucleus Independent Chemical Shifts) measures, which reveal a connection between the Clar rings and a local concentration of aromaticity.  相似文献   

15.
Carbon nanotube (CNT) is one of the most extensively investigated nanomaterials. Patterning soft matter such as liquid crystals and polymers on CNTs could potentially enable various applications for CNTs. We have demonstrated that controlled polymer crystallization using CNTs as the 1D nucleation sites can lead to periodically functionalized CNTs. Here we show that selected crystalline block copolymers can be periodically decorated along CNTs. This facile technique opens a gateway to periodic patterning on 1-D nanomaterials.  相似文献   

16.
The factors that control carbon nanotube (CNT) adsorption onto aminopropyl siloxane (APS)-derivatized surfaces were investigated using two distinct types of well-characterized films with significant differences in their detailed structures. Both types of APS films showed a marked increase in CNT adsorption relative to untreated SiO2 surfaces but differed in the amount of CNTs adsorbed. To gain insight into the factors governing adsorption, the surface coverage of the CNTs was monitored as a function of the pH during the deposition, the surfactant used to suspend the CNTs, and the type and amount of salt added to the deposition solution. The adsorption is shown to be governed by electrostatic and VDW forces. In the case of complimentarily charged surfaces, the adsorption is proposed to occur through an ion exchange mechanism.  相似文献   

17.
Polymer crystallization-driven, periodic patterning on carbon nanotubes   总被引:4,自引:0,他引:4  
We report herein a unique means to periodically pattern polymeric materials on individual carbon nanotubes (CNTs) using a controlled polymer crystallization method. One-dimensional (1D) CNTs were periodically decorated with polymer lamellar crystals, resulting in nano-hybrid shish-kebab (NHSK) structures. The periodicity of the polymer lamellae varies from 20 to 150 nm. The kebabs are approximately 5-10 nm thick (along CNT direction) with a lateral size of approximately 20 nm to micrometers, which can be readily controlled by varying crystallization conditions. Both polyethylene and Nylon 66 were successfully decorated on single-walled carbon nanotubes (SWNTs), multiwalled carbon nanotubes (MWNTs), as well as vapor grown carbon nanofibers (CNFs). The formation mechanism was attributed to "size-dependent soft epitaxy". Because NHSK formation conditions depend on CNT structures, it further provides a unique opportunity for CNT separation. The reported method opens a gateway to periodically patterning polymers and different functional groups on individual CNTs in an ordered and controlled manner, an attractive research field that is yet to be explored.  相似文献   

18.
The effect of carbon nanotubes’ (CNT) crystal structure on chemical reactivity has been studied in much detail in the liquid phase using CNT suspension. This type of information is pertinent for developing CNT separation strategies. However, few experimental studies are available providing data for gas–CNT interactions utilizing ultra-high vacuum (UHV) surface science techniques. Structure–activity relationships (SAR) for gas–surface interactions are important for sensor designs and heterogeneous catalysis exploring, for example, CNT’s potential as a support for fuel cell catalysts. We report on UHV kinetics experiments with single-wall metallic, semiconducting, and mixed CNTs in order to provide the experimental basis to correlate CNT’s crystal structure and chemical activity. Thermal desorption spectroscopy (TDS), a simple temperature ramping technique, has been used to determine the binding energies of a number of probe molecules including alkanes, alcohols, thiophene, benzene, and water on CNTs at UHV conditions. TDS allows for the identification of adsorption sites of probe molecules in CNT bundles, using gold foil or silica as a support for the drop-and-dry technique. A weak and probe molecule dependent SAR is present for adsorption inside the CNTs but not for the population of external sites by the probe molecules. The experimental data are in part consistent with current theoretical predictions by other groups. In addition, the effect of different solvents (methanol, SDS, and NMP) and cleaning procedures will briefly be discussed using results of spectroscopic (Auger electron spectroscopy) and kinetic techniques. Furthermore, molecular beam scattering techniques were utilized to characterize the adsorption dynamics, i.e., the gas-to-surface energy transfer processes of alkanes on CNTs. For example, opening the CNT tube ends by high temperature annealing, increases the so-called initial adsorption probability, that is, the probability for adsorption in the limit of zero surface concentration (coverage). This result directly illustrates the effect of large surface areas of CNTs, using internal and external surfaces, for gas adsorption.  相似文献   

19.
A comparative study was performed on adsorption process of Zn(II) and Cd(II) ions using charged carbon nano tubes (CNTs). The results show that the adsorption behavior of Zn(II) and Cd(II) ions have different patterns. To understand the reason for this difference, the ion–water complex properties and the reduced density of water around CNT were studied. The results reveal that the water molecules make high-, low-, and bulk regions around CNTs, which can affect the ion movement toward CNT. The ion–water complex characteristics during the adsorption demonstrated that the Cd(II)–water complex has a large number of exchange events between 4 and 8 coordinate numbers where Zn(II) has only 6 coordinate numbers during the adsorption process. The Cd(II)–water complex was found less stable and therefore has faster translational dynamics. These properties help cadmium ion to be adsorbed faster into CNT despite its heavier weight.  相似文献   

20.
A high temperature gel permeation chromatograph (GPC) was coupled with a gas chromatograph (GC) oven to obtain an analytical temperature rising elution fractionation (TREF) system with evaporative light scattering detection. On this instrument, a new column partially filled with pristine carbon nanotubes (CNT) was tested by evaluating the elution profiles in function of temperature (thermograms) of different polyethylene (PE) types. By comparing these thermograms with those obtained with a traditional TREF column filled with metallic wires, the adsorption of polymer chains on the pristine CNT was clearly evidenced. The thermograms given by the column filled with CNT are similar with those provided by literature when chromatographic columns filled with porous graphitic carbon are used for this application, usually described as high temperature thermal gradient interaction chromatography (HT-TGIC).  相似文献   

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