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1.
化学镀非晶态Ni—P层的初期沉积过程研究   总被引:2,自引:0,他引:2  
迟毅  张磊 《电化学》1997,3(4):433-437
化学镀非晶态Ni-P镀层初期沉积过程和沉积层状态是影响结合强度的决定性因素.对不同基体材料初期沉积的观察发现,有些非晶态镀层的初期沉积中含有微晶.微晶的产生与否与基体材料以及镀层材料晶格的错配度有关,当镀层与基体材料点阵常数相差不大,镀层的初期沉积沿基体晶格外延生长出现微晶层,反之,点阵常数相差较大时,初期沉积物中未发现微晶.  相似文献   

2.
维石墨烯是由二维石墨烯构成的三维网络结构,多孔的网络结构赋予了三维石墨烯超大的比表面积、超高的机械强度以及优异的电子传输通道. 因其优异的性能,三维石墨烯及其复合材料已经广泛地应用于能源、化学和生物等研究领域. 在三维石墨烯的合成方法中,化学气相沉积法由于制备的三维石墨烯具有高纯度、良好结晶性和优异的机械性能而备受推崇. 本文结合当前研究热点,综述了化学气相沉积法制备三维石墨烯及其复合材料在电化学储能领域(铝电池、锂离子电池、锂-硫电池、钠离子电池、金属-空气电池、超级电容器)中的应用,并简要评述当前化学气相沉积法制备三维石墨烯在应用中所面临的挑战及发展前景.  相似文献   

3.
石墨烯是一种二维材料,具有极其优异的电学、力学、热学等性能,制备方法简单且价格低廉,可以在高性能聚合物基复合材料中展现无穷魅力.石墨烯在聚合物中的分散状态,以及与基体间的界面作用是构筑高性能石墨烯/聚合物纳米复合材料的关键因素.本文综述了石墨烯/聚合物纳米复合材料的界面作用力,包括氢键、π-π堆栈、共价、配位作用和成核—结晶作用,并总结和评述了这些界面作用力的优缺点和适用范围.最后展望了多种协同作用在构筑强界面作用力的石墨烯/聚合物基纳米复合材料中的应用前景.  相似文献   

4.
石墨烯材料的二维平面结构以及优异的抗渗性使其在防腐领域备受关注,电沉积法可以实现石墨烯片层在涂层中的有序排列,增强涂层对外界腐蚀性电解质的阻隔。简单介绍了电沉积法制备石墨烯涂层的原理,详细综述了近年来以电沉积法制备金属基石墨烯复合涂层和导电聚合物基石墨烯复合涂层的研究进展,分析了石墨烯改善在不同基质涂层的原理。最后,展望了石墨烯、金属和导电聚合物三元复合材料在防腐涂层中的应用,并且对两种复合涂层的优缺点进行了简单的总结。  相似文献   

5.
采用电沉积方法并调节镀液温度、电流密度等工艺参数制备Ni-W纳米结构梯度镀层.SEM能谱测试及X射线衍射测试表明,沿镀层生长方向,钨含量逐渐增加,晶粒尺寸由10.9 nm递减到1.5 nm,晶格畸变度逐渐增大,镀层由纳米晶逐步过渡到非晶结构.结构呈连续梯度分布.热应变特性研究表明,沿镀层厚度方向,热应变变化平缓,有效地缓解了界面处材料热失配,从而缓和了材料的热应力.  相似文献   

6.
SiCp/ Al复合材料与化学镀镍层结合机理研究   总被引:2,自引:0,他引:2  
根据结构化学理论,用SEM, EDAX和XPS等测试手段研究了镀层和碳化硅颗粒增强铝基复合材料(SiCp/ Al)的表面、断面形貌及界面的结合状态,分析了镀层和基体之间的结合机理。结果表明,Ni镀层与复合材料界面有良好的结合,在复合材料表面的SiC-Al界面,初期沉积物Ni按Al的晶格外延生长出现微晶层,然后吸附原子扩散迁移、碰撞结合并与界面上的SiC晶格匹配生长,在镍层中诱发了拉伸应力。镍晶格和基体粒子之间产生了键合作用,形成的键显示出共价键和离子键的混合性质。  相似文献   

7.
石墨烯自2004年发现以来,由于其独一无二的优异性迅速成为科学家们的研究热点.由于石墨烯具有极其优异的电学、力学和热学等性能,因此被广泛应用于高性能聚合物基复合材料的制备.众所周知,纳米填料在聚合物中的分散状态以及与基体间的界面作用是构筑高性能聚合物纳米复合材料的关键因素.由于石墨烯极易团聚,难以通过传统的熔融共混法制备均匀分散的石墨烯增强-聚烯烃纳米复合材料.另一方面,聚烯烃通常需要在较高温度下才能溶于部分有毒溶剂(如:三氯苯和二甲苯等),因此溶液共混法也不适用于聚烯烃-石墨烯纳米复合材料的制备.有鉴于此,本文开发了一种共沉积法制备石墨烯/二氯化镁负载钛系齐格勒-纳塔催化剂的路线.通过原位聚合直接制备出石墨烯均匀分散的聚烯烃/石墨烯纳米复合材料.考察了石墨烯的加入量对催化剂形态及其催化乙烯聚合行为的影响.当石墨烯加入量较低时,多个石墨烯片被包裹于较大的催化剂粒子中.随着石墨烯加入量的增加,催化剂趋向于在石墨烯表面聚集.继续增加石墨烯量将导致石墨烯包裹催化剂粒子,降低过渡金属钛的负载效率.通过三乙基铝活化后,所制备的催化剂具有非常高的乙烯催化活性,所生成的聚乙烯/石墨烯纳米复合材料复制了催化剂的片状结构.同时,通过对所制备的聚乙烯/石墨烯纳米复合材料进行电子显微镜和X射线衍射分析可知,石墨烯均匀分散于聚乙烯基体中,并且没有任何团聚现象发生.该复合材料的热重分析表明,仅加入非常少量的石墨烯就可以使其具有比纯聚乙烯更高的热稳定性,当石墨烯加入量为0.66 wt%时,其5 wt%热分解温度较纯聚乙烯升高了54°C.同时,所制备聚乙烯/石墨烯纳米复合材料具有更优异的机械性能.因此,本研究提供了一个简单高效的高性能聚烯烃/石墨烯纳米复合材料的制备方法.  相似文献   

8.
田圆  赵倩莹  胡靖  周辰  缪灵  江建军 《化学进展》2012,24(4):512-522
大面积高质量石墨烯的制备对石墨烯电子特性及石墨烯基纳器件相关研究有重要意义。本文综述了近几年来衬底上制备石墨烯的相关实验以及衬底与石墨烯相互作用研究的重要进展。目前,采用化学气相沉积、外延生长等方法可在衬底表面上制备出较大面积、高质量的石墨烯材料。衬底与石墨烯相互作用和界面间晶格匹配、原子成键及电荷转移等密切相关,其对吸附石墨烯的几何结构、能带结构及电子特性等产生明显影响。实验与理论计算的结合可望加深衬底与石墨烯作用机理的理解,指导衬底上石墨烯制备及改性的进一步研究。  相似文献   

9.
石墨烯自2004年发现以来,由于其独一无二的优异性迅速成为科学家们的研究热点.由于石墨烯具有极其优异的电学、力学和热学等性能,因此被广泛应用于高性能聚合物基复合材料的制备.众所周知,纳米填料在聚合物中的分散状态以及与基体间的界面作用是构筑高性能聚合物纳米复合材料的关键因素.由于石墨烯极易团聚,难以通过传统的熔融共混法制备均匀分散的石墨烯增强-聚烯烃纳米复合材料.另一方面,聚烯烃通常需要在较高温度下才能溶于部分有毒溶剂(如:三氯苯和二甲苯等),因此溶液共混法也不适用于聚烯烃-石墨烯纳米复合材料的制备.有鉴于此,本文开发了一种共沉积法制备石墨烯/二氯化镁负载钛系齐格勒-纳塔催化剂的路线.通过原位聚合直接制备出石墨烯均匀分散的聚烯烃/石墨烯纳米复合材料.考察了石墨烯的加入量对催化剂形态及其催化乙烯聚合行为的影响.当石墨烯加入量较低时,多个石墨烯片被包裹于较大的催化剂粒子中.随着石墨烯加入量的增加,催化剂趋向于在石墨烯表面聚集.继续增加石墨烯量将导致石墨烯包裹催化剂粒子,降低过渡金属钛的负载效率.通过三乙基铝活化后,所制备的催化剂具有非常高的乙烯催化活性,所生成的聚乙烯/石墨烯纳米复合材料复制了催化剂的片状结构.同时,通过对所制备的聚乙烯/石墨烯纳米复合材料进行电子显微镜和X射线衍射分析可知,石墨烯均匀分散于聚乙烯基体中,并且没有任何团聚现象发生.该复合材料的热重分析表明,仅加入非常少量的石墨烯就可以使其具有比纯聚乙烯更高的热稳定性,当石墨烯加入量为0.66 wt%时,其5 wt%热分解温度较纯聚乙烯升高了54℃.同时,所制备聚乙烯/石墨烯纳米复合材料具有更优异的机械性能.因此,本研究提供了一个简单高效的高性能聚烯烃/石墨烯纳米复合材料的制备方法.  相似文献   

10.
复合镀层中ZrO2微粒对基质Ni晶体结构的影响   总被引:4,自引:0,他引:4  
王为  郭鹤桐 《应用化学》1997,14(1):6-10
采用复合电沉积方法制备了Ni-ZrO2复合镀层,探讨了ZrO2微粒引起的基质金属Ni的晶体择优取向及点阵常数的变化,及其对析氢电催化活性的影响。结果表明,ZrO2微粒的存在改变了Ni的电沉积层结构,使基质金属Ni产生新的沿(220)晶面的择优取向。这一新的择优取向不利于析氢反应。择优取向的改变说明复合电沉积过程中,Ni与ZrO2微粒是以一定的界面匹配进入复合镀层的,基质金属Ni点阵参数的改变也证明  相似文献   

11.
AlTiCrN coating was prepared on the surface of YT14 tungsten carbide cutting tools by cathodic arc ion plating with Ti, Al and Cr as targets. The surface morphologies, interface energy spectrum, phase and elements' binding energy of the coatings were observed with SEM, EDS, XRD and XPS, respectively, and bonding strength of the coating interface was measured with scratch tester. The results show that the phases of AlTiCrN coating are mainly composed of AlN, CrN and TiN, the crystal plane of (111) has a strong preferred orientation. The concentrations of Al, Ti, Cr, N in the coating are higher than those in the substrate, showing the gradient diffusion distribution at the bonding interface, while C atoms of the substrate have diffused into the lattices of TiN, AlN and CrN to form an obvious interdiffusion layer, and the average bonding strength of coating interface is 57.65 N. Copyright © 2014 John Wiley & Sons, Ltd.  相似文献   

12.
多弧离子镀TiN与不同金属基材间的接触界面与表面特性   总被引:1,自引:0,他引:1  
用多弧离子镀技术在不同金属基材上进行TiN镀膜实验,制备了TiN/Fe、 TiN/Cu和TiN/Cr/Cu复合膜.借助扫描电子显微镜(SEM)、 X射线衍射仪(XRD)和光电子能谱(XPS),研究了TiN与Fe、 Cu和Cr/Cu三种不同衬底接触界面的形貌、结构及其表面特性.SEM观察发现,在一定离子镀膜条件下, TiN涂层可与Fe、 Cu和Cr/Cu金属基材形成均匀平整的接触界面,在铜基上TiN界面清晰,在Fe与Cr/Cu界面有明显的层状晶界微结晶分布.XRD分析显示, Fe、 Cu和Cr/Cu表面生成的薄膜都包含TiN、 Ti2N等多晶相,在Cr/Cu界面还包含Ti-Cr的金属间化合物.XPS结果表明,表面除了TiN膜外,还生成TiO2和TiOxNy等氧化膜.Ar+刻蚀5 min后, TiO2消失, TiOxNy减少, TiN则呈增加趋势.TiN与Cr/Cu界面形成明显的Ti-Cr和Cr-Ni互扩散层,这有助于增强薄膜附着力,形成较牢固的TiN涂层.  相似文献   

13.
Dicopper diacetylide Cu-C≡C-C≡C-Cu, prepared from butadiyne has been studied by FT-IR spectroscopy in comparison to dicopper acetylide Cu-C≡C-Cu. Upon ageing by exposure to air at room temperature, Cu-C≡C-Cu has been transformed into Cu-C≡C-C≡C-Cu as demonstrated by FT-IR spectroscopy and this compound is further transformed on standing in air. A special kind of solid state oxidative coupling reaction occurs so that polyynes chains are formed in these aged solids. It is shown that the FT-IR spectrum of copper acetylide prepared from ammonia solutions of Cu+ and Cu2+ ions is comparable to that of air oxidized Cu-C≡C-Cu (and Cu-C≡C-C≡C-Cu) prepared exclusively from Cu+ ions in presence of a reducing agent demonstrating that Cu2+ ions display the same oxidizing effect as oxygen causing coupling reactions in solution and producing Cu-C≡C-C≡C-Cu.Cu-C≡C-Cu oxidized at 60–70°C with CuCl2 produces a product which could be formulated as Cu(C≡C)20Cu; FT-IR absorption at 1950 cm−1 could suggest the presence of cumulenic carbon chain although acetylenic carbon chains cannot be excluded completely.  相似文献   

14.
为了提高碳/碳(C/C)复合材料的抗氧化性能,通过两步法在基体表面制备了具有自愈合能力的纯SiC涂层.首先,通过高含氢硅油(H-PSO)的高温热解在基体表面引入SiC纳米线,然后通过高温渗Si,在碳材料表面生成厚度约为100-200μm的涂层.通过X射线衍射(XRD)、扫描电子显微镜(SEM)表征了所制备的涂层形貌及相组成,并对所制备的试样进行了氧化实验.实验结果表明:涂层是由纯SiC构成的,且具有一定的自愈合能力;所制备的试样在1400℃下氧化4h,失重仅为0.71%,抗氧化性能得到提高.  相似文献   

15.
Adverse effects of a high‐water absorption rate on properties of a glass fiber–reinforced polyamide 6 (GF‐PA6) composite significantly reduce performance and limit application in humid environments. In this paper, a polyfunctional silane (PFS) coupling agent with amino (–NH2) and imino (–NH) groups and styrene acrylonitrile copolymer (SAN) were added to a composite, GF‐PA6, to prepare GF‐PA6/SAN/PFS composites via melt blending in a twin‐screw extruder. The effects of SAN and PFS content on the static and dynamic mechanical properties of the composites before and after water absorption were investigated in detail. The microstructure of the fracture surface was analyzed by a scanning electron microscope (SEM). The results show that the addition of SAN and PFS could effectively inhibit water absorption of the GF‐PA6 composites. The alkoxyl groups on PFS reacted chemically with the nitrile groups of SAN, which enriched SAN on the interface between the fiber and matrix during the extrusion and mixing process to improve the effect of water prevention. Therefore, the mechanical properties of the wet state were notably improved while preventing water from permeating the interface by only the addition of a small amount of SAN and PFS. Dynamic mechanical analysis (DMA) results showed that the addition of PFS improved the compatibility of PA6 with SAN and enhanced the interface adhesion between fiber and PA6. In terms of test result of the comprehensive performance, 10 phr SAN with 0.6 phr PFS was the best dosage.  相似文献   

16.
采用化学气相反应法, 以同种工艺分别在石墨和C/C复合材料表面制备了SiC涂层, 借助X射线衍射仪(XRD)、扫描电镜(SEM)及能谱分析等手段分析了涂层的微观结构, 研究了不同碳基体对SiC涂层结构和表面形貌的影响, 并初步对比考察了涂层的高温抗氧化性能. 结果表明: 制备的SiC涂层整体致密, 与基体结合良好, 但存在明显的结构差异. 石墨表面制得的SiC涂层呈梯度分布, 涂层主要由致密外层及过渡内层组成, 而C/C复合材料表面制得的SiC涂层仅由致密外层组成; 在1823 K的空气氧化氛围中, 与C/C复合材料SiC涂层试样相比, 石墨SiC涂层试样表现出更好的高温抗氧化性能, 经30 h氧化及7次循环热震实验后, 涂层试样的氧化失重率仅为0.182%.  相似文献   

17.
A titanium carbonitride (TiCN) coating was deposited on YT14 cutting tool by using a CAIP (cathodic arc ion plating). The surface‐interface morphologies, chemical compositions, and phases of TiCN coatings were observed by using a FESEM (field emission scanning electron microscopy), EDS (energy dispersive spectroscopy), XRD (X‐ray diffraction), respectively, and the bonding energy, surface roughness, and bonding strength were characterized with an XPS (X‐ray photoelectron spectroscopy), AFM (atomic force microscope), and scratch test, respectively. The results show that the phases of the TiCN coating are primarily composed of TiN, TiC, and amorphous C, of which the TiC and TiN increases the coating hardness, and the amorphous C atom improves friction and lubrication properties of the coating. The effect of CAIP on the topography of the TiCN coating is at nano‐scale, the Ti and N atoms are enriched in the coating at the bonding interface, and the part of chemical elements are diffused in the gradual transformation layer. The bonding form of the TiCN coating interface is primarily composed of mechanical combination, accompanying with slight metallurgical combination, and the bonding strength is characterized with 60.85 N by scratch test. Copyright © 2016 John Wiley & Sons, Ltd.  相似文献   

18.
《先进技术聚合物》2018,29(1):52-60
Polyethylene terephthalate (PET) was melt blended with linear low density polyethylene (LLDPE) and subsequently compounded with glass fibers (GF) as reinforcements at percentages ranging from 15 to 45 wt% of LLDPE and 5 to 30 wt% of GF. Thermal, morphological, and mechanical properties of the prepared composites were investigated. It was found that compounding PET/LLDPE blends with GF would be beneficial in producing composites that are thermally stable with good mechanical properties. For example, the impact strength of the composites containing 85/15 wt% (PET/LLDPE) at relatively high loading of GF, ie, from 15 to 30 wt%, was higher than that of the GF‐reinforced neat PET. When increasing the percentage of LLDPE in the composites, the impact strength increased with increasing GF content, and this was also better than that of GF‐reinforced PET whose impact strength drastically decreased upon increasing the GF%. The improvement in mechanical properties of the composite, we suggest, should be correlated with the morphologies of the composites where the visualized interface adhesion tended to be better at higher loadings of both LLDPE and GF.  相似文献   

19.
The composites, such as CFRP and GFRP, have been widely applied in spaceflight, for their low specific gravity, low cost, and additional structural stability. However, the high resistivity of the composites severely inhibits their further applications. Therefore, Cr/Al films with low resistivity and high adhesion were deposited on composites by cathodic arc technique. The films were characterized by pull test, Dektak 8 Stylus Profilometer, SEM, XPS, XRD and Z‐82 standard four probes. Results show that the aluminum film of fcc structure is compact and uniform, with resistivity as low as bulk Al. The adhesion between Cr buffer layer and composite substrate was greatly enhanced because of the formation of the chemical bonds, such as Cr? C, Cr? O and Cr? N, at the Cr/composite interface. Copyright © 2011 John Wiley & Sons, Ltd.  相似文献   

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