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1.
粘胶基碳纤维表面结构的STM研究   总被引:1,自引:0,他引:1  
本文建立了用具有原子级分辨能力的扫描隧道显微镜 (STM)研究粘胶基碳纤维 (RCF)表面结构的方法。在较大尺度的STM图像上 ,RCF表面显得很粗糙 ,“峰”和“谷”的特征非常明显。增大放大率时 ,发现了约10nm宽的条状结构 ,其排列与纤维轴成一定角度 (45°~ 90°)。首次获得了RCF原子级的STM图像 ,在原子级尺度上 ,其原子排列并不规则 ,相邻原子间距为 0 .14 2nm ,最近六元环中心的距离是 0 .2 5 3nm。与高定向降解石墨 (HOPG)的对比研究进一步表明RCF表面的碳网是变形的六元环结构  相似文献   

2.
表面处理作为储氢合金性能改善的有效手段,近年来得到了很好的发展和应用,本文简要介绍了镁基储氢合金表面处理的主要方法及其对合金性能的影响。  相似文献   

3.
沥青基活性炭纤维复合活化工艺的研究   总被引:3,自引:0,他引:3  
以沥青基炭纤维为原料,研究了用铵盐作为化学活化剂对其进行浸渍预处理,然后采用(H2O+CO2)活化的方法制备活性炭纤维,讨论了工艺条件对活性炭纤维性能的影响并通过光电子能谱XPS探讨了活化过程中炭纤维表面官能团的变化。结果表明:采用这种物理和化学复合活化工艺,可以在较高得率下提高活性炭纤维比表面积。同时浸渍处理、H2O流量、活化温度和活化时间等工艺参数显著影响活性炭纤维的比表面积和得率,优化的工艺为:经铵盐浸渍6h,炭纤维在水蒸气与CO2流量比3:1的混合气氛中900℃活化30min。XPS研究表明,活化后炭纤维表面的含氧官能团C-O明显减少,铵盐浸渍未能增加活性炭纤维表面的含氮基团。  相似文献   

4.
碳纤维表面的液相氧化处理改性   总被引:7,自引:0,他引:7  
赵东宇  李滨耀 《应用化学》1997,14(4):114-116
碳纤维表面的液相氧化处理改性赵东宇*李滨耀余赋生(中国科学院长春应用化学研究所长春130022)关键词碳纤维,表面改性,氯酸钾,硫酸1996-10-24收稿,1997-05-29修回*现在黑龙江大学化学系(哈尔滨,150080)碳纤维具有高强、高模、...  相似文献   

5.
自制了邻苯二甲酰化壳聚糖、萘甲酰化壳聚糖、羧甲基化壳聚糖等3种壳聚糖衍生物对多壁碳纳米管(MWNTs)进行表面处理,发现邻苯二甲酰化壳聚糖(PhthCS)能有效提高MWNTs在极性6~10范围溶剂中的分散性及稳定性,并考察了PhthCS的分子量及浓度对MWNTs的分散性及稳定性的影响;通过微观形貌和元素分析,发现MWN...  相似文献   

6.
进口中间相沥青碳纤维超高温石墨化处理后的特性分析   总被引:1,自引:0,他引:1  
姜鹏飞 《化学通报》2022,85(1):127-131
对P25、P55及XN-90三种进口中间相沥青碳纤维3000℃石墨化处理前后的微观形貌、晶体尺寸、力学性能、导电导热性能及其抗氧化性能进行了表征.结果 表明,三种碳纤维微观结构差异较大,均呈现出较为明显的"指纹"特征.三种碳纤维中XN-90热处理温度最高,晶体尺寸最大,石墨化程度最高,抗氧化性能最好.经过3000℃石墨...  相似文献   

7.
苑慧萍  蒋利军 《无机化学学报》2018,34(12):2271-2279
采用相同浓度即6 mol·L-1 LiOH、NaOH和KOH对稀土镁镍基储氢合金进行表面处理,研究了不同碱溶液和不同处理时间对合金表面形貌、组成和电极电化学性能的影响。研究表明,合金经6 mol·L-1 NaOH溶液处理10 min后具有最好的综合电化学性能。但随着处理时间的延长,采用6 mol·L-1 NaOH溶液处理的合金放电容量衰减明显,实验证明这是由合金表面稀土元素和Al元素的大量溶解进入碱溶液造成的。3种碱溶液比较,LiOH溶液能有效去除合金表面镁元素减少合金在碱溶液处理过程中的氧化,虽然形成的表面不利于H在合金表面的吸脱附,却能有效提高合金在碱溶液中的抗腐蚀能力,提高合金的循环稳定性。  相似文献   

8.
采用二月桂酸二丁基锡为催化剂,N,N-二甲基乙醇胺与碳酸二甲酯酯交换反应制得二(N,N-二甲基胺基乙基)碳酸酯(Ⅰ),产率92%(以碳酸二甲酯计);再与1-溴代十六烷反应得到一种含碳酸酯基阳离子Gemini表面活性剂(Ⅱ),产率68.5%[以(Ⅰ)计],用IR、1 HNMR、元素分析表征了其结构.采用(Ⅱ)为固-液相转...  相似文献   

9.
分别用氧化法、稀土处理法、氧化后稀土处理法对碳纤维进行表面处理,然后开展拉伸试验来对不同方法处理的碳纤维填充聚四氟乙烯复合材料进行界面粘着研究,并在UMT-2MT型摩擦磨损试验机上对水润滑条件下聚四氟乙烯复合材料摩擦学性能进行研究,使用扫描电镜对磨损表面进行观察,研究结果表明稀土处理方法在提高复合材料摩擦学性能上优于氧化方法,稀土处理碳纤维填充的聚四氟乙烯复合材料优良的摩擦学性能来自于碳纤雏增强体与聚四氟乙烯基体间强的界面粘着力。  相似文献   

10.
李钊  王忠  班丽卿  王建涛  卢世刚 《化学学报》2019,77(11):1115-1128
随着电动汽车和储能电站等电力设备的快速发展,对高能量密度的锂离子电池的需求日益增加.高比容量(>250 mAh·g-1)的富锂锰基正极材料,有望成为锂离子电池实现高比能量(>350 Wh·kg-1)的关键正极材料.富锂锰基正极材料的Li2MnO3相和晶格氧参与电化学反应使其拥有了高容量,但这也导致表面结构和成分容易发生变化,进而造成富锂锰基正极材料存在着诸如首次库伦效率低、倍率性能差和循环后电压和容量衰减严重等问题.因此,本文综述了富锂锰基正极材料的表面包覆、表面掺杂和表面化学处理三种表面改性方法,并进一步讨论了三种表面改性方法对材料性能提升的机制机理和优缺点.在此基础上,介绍了近些年基于多方法的表面联合改性工作.通过对富锂锰基正极材料进行表面联合改性,不仅可以改善其结构稳定性和抑制电极/电解液界面副反应,而且可以缓解其在循环过程中不断发生的结构转变和晶格氧的析出问题.最后,对富锂锰基正极材料表面改性研究方向进行了总结和展望.  相似文献   

11.
研究了在O2和H2O存在下,乙烯渣油沥青基活性炭纤维(ETPACF)和粘胶基活性炭纤维(CelluloseACF)的脱硫活性.结果表明,在比表面积相近的情况下,ETPACF的脱硫活性明显低于CelluloseACF,这可归因于后者具有较强的吸附和催化氧化SO2能力及较大的吸水量,尤其是具有较强的催化氧化SO2的能力,这些能力又与其表面含有含氮官能团以及某些含氧官能团有关,因此ACF的表面官能团对其脱硫活性影响很大.  相似文献   

12.

Air and nitrogen glow discharge were used to replace chromic acid pretreatment to deposit copper film on carbon fiber surfaces from an CuSO4‐HCHO electroless system. A greater copper uptake and a more uniformly coated copper film were obtained for plasma‐treated carbon fibers. The adhesion between the copper film and the carbon fibers was also improved. An orthogonal table L9(34) was used to study the effects of discharge pressure, discharge power, time and gas type on the copper uptake. Scanning electron microscopy (SEM), reflection absorption infrared spectroscopy (RAIR) and X‐ray photoelectron spectroscopy (XPS) at different depths were applied to characterize the physical and chemical changes of the surface of the carbon fibers. The results showed that after plasma treatment, the carbon fiber surface became rough and several types of polar oxygen groups, such as carboxylic acid COOH, esters COOC, quinones Ph?O, etc., were introduced into the carbon fiber surface. A mechanism of plasma treatment effects on copper electroless deposition on the carbon fiber surface is also suggested.  相似文献   

13.
In this study, three recycling methods, namely, mechanical grinding, steam pyrolysis, and the supercritical solvent process, which are used to acquire recycled carbon fibers (RCFs), were compared for their application in synthesizing polymer-matrix composites. RCF-reinforced polyethylene (PE) composites were prepared to compare the mechanical properties of the composites generated using the three recycling methods. The PE/RCF composites exhibited 1.5 times higher mechanical strength than the RCF-reinforced PE composites, probably because of the surface oxidation effects during the recycling processes that consequently enhanced interfacial forces between the RCF and the matrix. Further, the steam pyrolysis process showed the highest energy efficiency and can thus be applied on a large production scale in domestic recycled CF markets.  相似文献   

14.
Decomposition of methane in the presence of coprecipitated nickel-based catalysts to produce carbon fibers was investigated. The reaction was studied in the temperature range of 773 K to 1073 K. At 1023 K, the catalytic activities of three catalysts kept high at the initial period and then decreased with the reaction time. The lifetimes of Ni-Cu-Al and Ni-La-Al catalysts are longer than that of Ni-Al catalyst. With three catalysts, the yield of carbon fibers was very low at 773 K. The yield of carbon fibers for Ni-La-Al catalyst was more than those for Ni-Al and Ni-Cu-Al catalysts. For Ni-La-Al catalyst, the elevation of temperature from 873 K up to 1073 K led gradually to an increase in the yield of carbon fibers. XRD studies on the Ni-La-Al catalyst indicate that La2NiO4 was formed. The formation of La2NiO4 is responsible for the increase in the catalytic lifetime and the yield of carbon fibers synthesized on Ni-La-Al at 773 1073 K. Carbon fibers synthesized on Ni-Al catalyst are thin, long carbon nanotubes. There are bamboo-shaped carbon fibers synthesized on Ni-Cu-Al catalyst. Carbon fibers synthesized on Ni-La-Al catalyst have large hollow core, thin wall and good graphitization.  相似文献   

15.
A new family of mechanochromic photonic‐crystal fibers exhibits tunable structural colors under stretching. This novel mechanochromic fiber is prepared by depositing polymer microspheres onto a continuous aligned‐carbon‐nanotube sheet that has been wound on an elastic poly(dimethylsiloxane) fiber, followed by further embedding in poly(dimethylsiloxane). The color of the fiber can be tuned by varying the size and the center‐to‐center distance of the polymer spheres. It further experiences reversible and rapid multicolor changes during the stretch and release processes, for example, between red, green, and blue. Both the high sensitivity and stability were maintained after 1000 deformation cycles. These elastic photonic‐crystal fibers were woven into patterns and smart fabrics for various display and sensing applications.  相似文献   

16.
气相生长碳纤维的表面改性及表征   总被引:2,自引:0,他引:2       下载免费PDF全文
用浓硝酸(65%~68%)对气相生长碳纤维(VGCF)进行了不同时间的表面化学改性。X射线衍射(XRD)分析表明:改性使得VGCF的石墨晶型结构改变,其改变的程度随改性时间的延长而加深;BET比表面积(SBET)测试表明:改性后的VGCF的SBET有一定的变化,经120 min长时间的改性处理后,SBET明显降低;傅立叶变换红外光谱(FTIR)测定得出:改性后VGCF表面上生长了不同类型的含氧基团,其总含量随改性时间的增大而增加;程序升温还原(TPR)得出:改性后VGCF表面上生成有2类以上的热稳定性不同的含氧基团,计算求得含氧基团的氧总含量为2 mmol·g-1以上;NH3吸附微量量热测定得出:表面酸性基团的强度和含量随改性时间增加而增大;透射电子显微镜(TEM)结果表明:改性没有明显破坏VGCF的外观结构;吸油值(AOV)实验给出:改性后VGCF的AOV显著降低而亲水性增强;双液法接触角测试给出:改性后VGCF的表面能(SE)明显增大;偶联剂与VGCF作用的FTIR研究表明:改性后VGCF表面含氧基团和偶联剂发生反应,增强了偶联剂在VGCF表面上的结合强度。  相似文献   

17.
Carbon nanotube–polymer composite fibers are obtained by infiltration of a monomer liquid into aligned carbon nanotube aerogel fibers with subsequent in situ polymerization. The monomer, methyl methacrylate (MMA), was infiltrated into the aerogel fibers of multi‐walled carbon nanotubes (MWNTs) at room temperature and subsequently polymerized at 50 °C into poly(methyl methacrylate) (PMMA). Cross‐sections of the PMMA/MWNT composite fibers showed that the PMMA filled the spaces of the nanotube fibers and bound the nanotubes together. PMMA in the composite fibers exhibited local order. The resultant composite fibers with 15 wt.‐% nanotube loading exhibited a 16‐fold and a 49‐fold increase in tensile strength and Young's modulus, respectively, compared to the control PMMA.

  相似文献   


18.
The adsorption equilibria of pesticides and metabolites (atrazine, deethylatrazine, deisopropylatrazine and simazine) are studied onto activated carbon fibers –ACF– with a broad pore size distribution (32% mesopore volume, 68% micropore volume). Mono-and multi-component isotherms have been determined for low concentrations, from 0.23×10−6 to 9.52×10−6 mol L−1. Single solute isotherms, modeled by Freundlich and Langmuir models, tend to prove the influence of the adsorbate's solubility in the adsorption capacity of activated carbon fibers. Binary solute isotherms confirm the strong influence of pesticide solubility on the competitive adsorption mechanism: the competition is higher in the case of adsorbates of different solubilities (atrazine and DEA or DIA for example). Multicomponent experimental data were modeled by extended Langmuir-based equations and the Ideal Adsorbed Solution theory. Whereas the first ones failed to model accurately binary adsorption due to restrictive hypothesis, the IAS model showed a good agreement between experimental and predicted data. It emphasised also the difficulty in satisfying the hypothesis of the model in the case of highly adsorbed compounds. Finally, the simultaneous adsorption of atrazine and NOM (in a natural water, DOC = 18.2 mg L−1) shows no adsorption competition effects between natural organic matter and atrazine. This is due to the presence of secondary micropores (0.8–2 nm) and mesopores in the ACF, which limit a pore blockage phenomenon by NOM.  相似文献   

19.
以450℃低温炭化的各向异性中间相沥青基炭纤维为原料,先通过KOH化学活化方法制备出活性炭纤维(ACFs),再对ACFs进行炭化改性,以提高ACFs的导电率,系统地研究了炭化温度对ACFs微观形貌、结晶度、孔结构和超级电容器性能的影响。结果显示:经过1 200℃炭化处理的ACFs(ACFs~(-1)200)电极具有优异的电化学性能,在0.1 A·g~(-1)电流密度下比容量高达204 F·g~(-1),1 000次循环后电容保持率达到97.0%;且电流增至20 A·g~(-1)时依然具有高比容量(149 F·g~(-1)),表明ACFs~(-1)200电极相比于未炭化的ACFs,其导电率、大电流密度下的比容量、循环保持率均显著提高。  相似文献   

20.
This Review gives an overview of precursor systems, their processing, and the final precursor‐dependent structure of carbon fibers (CFs) including new developments in precursor systems for low‐cost CFs. The following CF precursor systems are discussed: poly(acrylonitrile)‐based copolymers, pitch, cellulose, lignin, poly(ethylene), and new synthetic polymeric precursors for high‐end CFs. In addition, structure–property relationships and the different models for describing both the structure and morphology of CFs will be presented.  相似文献   

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