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1.
康永 《化学通报》2015,78(10):933-938
采用化学镀法在碳纳米管表面均匀地镀覆了磁性镍-钴合金层及采用原位法制备了化学镀镍-钴合金碳纳米管/聚吡咯复合吸波材料。采用XRD、TEM、SEM、FT IR及振动样品磁强计等对碳纳米管镀镍-钴合金层的形貌、微结构与磁性能进行了分析,还采用网络矢量分析仪对该复合材料在3~6 GHz频段内的吸波性能进行了研究。结果表明,镍-钴合金层连续、均匀、完整地包覆在碳纳米管表面,化学镀后镀层呈非晶态。通过在碳纳米管表面镀上磁性金属镍-钴合金层可提升碳纳米管/聚吡咯复合材料的吸波性能,其复合材料最大反射率为-20d B。  相似文献   

2.
PMMA纳米球的制备及其银膜包覆技术   总被引:1,自引:0,他引:1  
采用无皂乳液聚合法制备了单分散、直径为170 nm左右的聚甲基丙烯酸甲酯(PMMA)纳米球, 然后利用3-甲基丙烯酰氧基丙基三甲氧基硅烷(MATS)和3-巯丙基三甲氧基硅烷(MPTMS)对PMMA纳米球进行表面改性, 在其表面包覆一层均匀的巯基, 通过巯基与银离子之间的相互作用, 使银在PMMA纳米球表面成核长大, 从而合成PMMA/Ag纳米球壳粒子. 通过扫描电子显微镜、投射电子显微镜和紫外-可见吸收光谱测试技术对产物性能进行了表征, 研究结果表明, 制备的PMMA/Ag纳米球壳粒子的分散性好、包覆均匀.  相似文献   

3.
本文研究了通过液相微波高压技术和自组装方法相结合制备的复合纳米粒子膜。首先, 将利用微波加热制备的金纳米粒子组装到石英片上,然后,再通过微波加热方法在石英片上的金颗粒表面沉积生长银包裹层, 用UV-Vis吸收光谱和原子力显微镜对该结构的复合纳米粒子膜进行表征。研究表明:通过在微波高压反应中调节银的沉积量可以有效控制包覆层的厚度和复合粒子的尺度。相对金纳米粒子膜,制备的复合粒子膜能显著的提高SERS能力,而较大的复合粒子的银壳层和粒子之间的耦合作用对复合粒子膜的SERS活性的显著增强起主要作用。  相似文献   

4.
Ni-Co化学镀制备陶瓷基吸波材料   总被引:2,自引:0,他引:2       下载免费PDF全文
研究了在粉煤灰上以联氨作还原剂进行Ni-Co复合化学镀。对包覆后的样品进行了SEM、XRD、EDX、磁性能、电磁参数等表征以及吸波性能分析。分析表明,在陶瓷粉表面包覆的镍钴合金呈球状,包覆比较均匀。在陶瓷粒子上镍钴固熔体质量分数约为68%,其中镍为61%,钴为7%,镍钴比约为9∶1;镀后样品的饱和磁化率为17.7 emu·g-1,矫顽力为210.9 Oe,剩磁为2.4 emu·g-1。包覆后粉体对电磁波反射率小于-10 dB的频宽可达到1.3 GHz(在10.2~11.5 GHz范围内)。  相似文献   

5.
超声辐照乳液聚合制备聚丙烯酸正丁酯空心微球   总被引:2,自引:0,他引:2  
利用超声辐照引发包覆乳液聚合制备了聚丙烯酸正丁酯(PBA)空心微球.TEM和DLS结果显示,空心微球粒径均一,壳层厚度均匀.FTIR结果显示,壳-核物质间以物理吸附相结合,没有形成化学键.同时,利用TEM和DLS研究了空心微球的形成机理,阳离子表面活性剂十六烷基三甲基溴化铵(CTAB)在CMC浓度以下首先吸附在纳米SiO2粒子表面形成双层结构,然后丙烯酸正丁酯(BA)单体增溶进入CTAB层间,在超声辐照引发、分散作用下包覆聚合形成均一的PBA-SiO2壳-核粒子,再利用HF溶液去除无机核,得到PBA空心微球.  相似文献   

6.
铒对氢氧化镍电极高温充放电性能的影响   总被引:1,自引:0,他引:1  
覆Co(Ⅲ)球镍具有优良的电化学性能,是镍氢动力电池较理想的活性材料,然而其高温性能仍待提高.本文研究了通过不同方式在覆Co(Ⅲ)球镍中添加铒改善镍电极的高温性能.结果表明,采用机械混合在球镍中添加1%(原子分数)Er2O3以及表面化学沉积方式在球镍表面包覆1%Er(OH)3的电极70℃时1C充/放电效率分别比无添加的电极提高11.7%和12.6%.循环伏安测试表明,铒的添加提高了镍电极在高温下的析氧过电位,明显提高了电极在高温环境下的充电效率.  相似文献   

7.
化学镀法制备银壳聚苯乙烯微球   总被引:6,自引:0,他引:6  
采用一种新的化学镀法合成银壳包覆聚苯乙烯微球, 通过三乙醇胺和银离子络合来减小反应的氧化还原电位差, 降低银在改性聚苯乙烯微球表面的沉积速率. 采用TEM、XRD、UV 等测试手段对样品进行了分析和表征, 并考察了不同反应条件对实验结果的影响.实验表明, 该方法可在改性聚苯乙烯微球上包覆均匀的银层.  相似文献   

8.
采用等体积浸渍法制备了Ni/SiC甲烷化催化剂, 研究了SiC载体表面氧化程度对催化剂低温活性和高温稳定性的影响, 并采用热重-差示扫描量热、N2物理吸附、傅立叶变换红外光谱、氨程序升温脱附、X射线衍射、氢程序升温还原和氢化学吸附技术对样品进行了表征. 结果表明, 随着载体氧化温度的提高, 催化剂的比表面积和镍分散度降低, 但还原性和反应稳定性提高. 未氧化载体所负载催化剂的高温稳定性最差, 其原因在于载体对镍粒子的固定作用最弱. 负载于500和700℃处理的SiC载体上的催化剂具有较好的低温活性和高温稳定性, 这是因为适度氧化后的载体能较好地分散并固定镍粒子. 900℃处理的载体因过度氧化形成了低活性的氧化层, 使负载的镍粒子变大, 因而催化剂的低温活性最差.  相似文献   

9.
盘登科  张慧 《无机化学学报》2011,27(7):1341-1347
首先采用溶剂热法制备粒径均匀分散性良好的Fe3O4亚微米粒子,在对其包覆上一层碳膜进行表面修饰后,采用共沉淀法将硝酸根插层LDHs包覆到磁性粒子的表面,然后500℃焙烧2 h得到磁性镁铝复合氧化物亚微米粒子。这种磁性镁铝复合氧化物亚微米粒子具有以镁铝复合氧化物为壳层,Fe3O4为核的核壳结构,其中壳层厚度为20 nm左右,对其进行二次包覆后壳层厚度可达到50 nm左右,并可以方便的通过重复包覆焙烧过程进行调节,从而实现磁性镁铝复合氧化物亚微米粒子的控制制备。同时,磁性镁铝复合氧化物亚微米粒子具有较强的磁性,其比饱和磁化强度为23.3 emu·g-1,对其进行二次包覆并焙烧后为20.1 emu·g-1。  相似文献   

10.
磁性纳米包覆微球的制备和磁性表征   总被引:3,自引:0,他引:3  
以胶体球形粒子为基体发展起来的纳米包覆(nano鄄coating)技术近来引起人们的极大兴趣,这种纳米包覆技术得到的产物常常被称为核壳粒子(core鄄shellparticles)。这种包覆一般是将纳米颗粒直接吸附在核微球上,或者包覆材料控制沉淀在核微球上[1,2]。这些复合微球常常展现出独特的光、电、力学、化学、催化等性质,因而具有广泛的研究和应用前景[3~7]。近十几年来,用做磁感应成像的超顺磁材料得到了深入的研究[4]。一方面,磁性颗粒的尺寸、电荷和表面成分对其应用有很大影响[8,9],另一方面,材料的磁学性质又主要取决于磁颗粒的大小[10]。Xu和Lindlar制备了含超顺磁颗粒的聚合物胶体颗粒,被用于构建超顺磁性的光子晶体[11,12]。在聚合物微粒上包覆氧化铁颗粒通常采用表面沉淀或表面改性官能团诱导反应包覆的方法。但这些方法不能很好控制复合微粒的均一性和表面平整性;Caruso的层鄄层包覆法(Layer鄄byLayer)虽然实现了磁性颗粒包覆[13],然而这种方法非常繁琐而不利于广泛应用。本文报道了一种新的合成磁性包覆颗粒的方法,即以聚合物微球为基核,通过非均相种子生长法包覆磁性纳米颗粒,并研究了...  相似文献   

11.
Preparation of mesoporous Fe3O4 (magnetite) hollow spheres has been reported using hydrothermal synthesis and calcinations. The carboxyl-functionalized PS spheres were used as the templates coated by Fe3O4 particles and ethylene glycol (EG) as an organic structure directing agent. PS and EG were removed by calcinations method. The surface area after calcination at 500 degrees C is found to be 74 m(2) g(-1). The hollow spheres exhibited the weak ferromagnetism.  相似文献   

12.
提出了一种新型的制备超细空心金属镍粉的方法.通过FESEM,TEM和XRD衍射对该制备方法进行了研究,并考察了有关工艺参数对产物粒径和粒度分布的影响.研究认为,通过在胶核表面发生自催化还原反应,形成金属镍壳,同时胶核发生自分解,最后可得到空心金属镍球.控制反应物浓度和NaOH的配比可得到粒径均匀的镍球;通过调整这两个参数可得到粒度在微米或纳米尺度的空心镍球.  相似文献   

13.
通过以二氧化硅粒子作为模板和金纳米粒子为表面晶种的方法制备了壳厚度可控的镍空心球。采用TEM﹑XRD对二氧化硅/镍复合球和镍空心球进行了表征和研究。结果表明镍纳米壳是由似针状的面心立方的镍纳米粒子构成的,碱溶液处理过程不影响镍纳米壳的形貌。高温处理显示镍空心球具有良好的热稳定性。  相似文献   

14.
Titania coated magnetic hollow mesoporous silica spheres with high surface area were created, which can be used in efficient and rapid capture of phosphopeptides from peptide mixtures.  相似文献   

15.
Hollow spheres and thin films of Ni(OH)(2) and NiO with unusual form and hierarchical structures have been synthesized by a simple solution chemistry method. First, in situ formed Ni(OH)(2) nanoflakelets organized on the surface of styrene-acrylic acid copolymer (PSA) latex particles to form core/shell structures. Ni(OH)(2) hollow shells built up with nanoflakelets were obtained after subsequent removal of the core latex particles by dissolving PSA latex in toluene; the removal of the cores by calcinations would result in NiO hollow shells, also with hierarchical structures. BET calculation showed the surface area of the NiO hollow spheres was 156 m(2)/g. The nanoflakelets could also organize themselves into thin films with hierarchical structures. It is anticipated that these novel structures will have some unique applications in Ni-based batteries and other potentials.  相似文献   

16.
Hollow mesoporous structures have recently aroused intense research interest owing to their unique structural features. Herein, an effective and precisely controlled synthesis of hollow rare‐earth silicate spheres with mesoporous shells is reported for the first time, produced by a simple hydrothermal method, using silica spheres as the silica precursors. The as‐prepared hollow rare‐earth silicate spheres have large specific surface area, high pore volume, and controllable structure parameters. The results demonstrate that the selection of the chelating reagent plays critical roles in forming the hollow mesoporous structures. In addition, a simple and low‐energy‐consuming approach to synthesize highly stable and dispersive gold nanoparticle–yttrium silicate (AuNPs/YSiO) hollow nanocomposites has also been developed. The reduction of 4‐nitrophenol with AuNPs/YSiO hollow nanocomposites as the catalyst has clearly demonstrated that the hollow rare‐earth silicate spheres are good carriers for Au nanoparticles. This strategy can be extended as a general approach to prepare multifunctional yolk–shell structures with diverse compositions and morphologies simply by replacing silica spheres with silica‐coated nanocomposites.  相似文献   

17.
<正>The triple-shelled hollow spheres with optical properties were prepared via reversible addition-fragmentation chain transfer (RAFT) polymerization.After removal the core templates of the poly(styrene),the hollow silica spheres were obtained.The coating process of poly(methyl methacrylate)(PMMA) on the hollow silica spheres surface via surface RAFT polymerization was performed subsequently.The polymers coated on the hollow spheres surfaces were end-functionalized by trithiocarbonate,and they were used as RAFT agent to proceed the chain extension polymerization using Tb complex as monomer.The samples were characterized by FT-IR,SEM and luminescence spectroscopy respectively.The results indicated that the triple-shelled hollow spheres had been prepared successfully and the average diameter of the hollow core was about 1μm.  相似文献   

18.
Using the surface charged and acid dissolvable melamine formaldehyde (MF) microspheres as sacrificial hard templates, silica coated MF core?Cshell composite microspheres, denoted as MF@SiO2, were synthesized via a surfactant-assisted sol?Cgel process by using tetraethyl orthosilicate (TEOS) as silica source. Hollow SiO2 spheres with mesoporous shells were then obtained after selective removal of the MF cores and the pore directing surfactant by hydrochloric acid etching or calcinations in air. Interesting shrinkage phenomena were observed in both the hollow products derived from hydrochloric acid etching and calcinations. The influence of the ratio of MF sphere to TEOS and the removal method of the MF core on the size of the hollow spheres, the shell thickness and the shell surface roughness have been studied. The composition, the thermal stability, the morphology, the surface area and pore size distribution, the wall thickness and adsorption properties of the hollow spheres derived from hydrochloric acid etching and calcinations were also investigated and compared based on the FTIR, SEM, TEM, TGA, Nitrogen adsorption?Cdesorption and spectrophotometer techniques or measurements.  相似文献   

19.
Porous hollow nanostructures have attracted intensive interest owing to their unique structure and promising applications in various fields. A facile hydrothermal synthesis has been developed to prepare porous hollow nanostructures of silicate materials through a sacrificial‐templating process. The key factors, such as the concentration of the free metal cation and the alkalinity of the solution, are discussed. Porous hollow nanostructures of magnesium silicate, nickel silicate, and iron silicate have been successfully prepared by using SiO2 spheres as the template, as well as a silicon source. Several yolk–shell structures have also been fabricated by a similar process that uses silica‐coated composite particles as a template. As‐prepared mesoporous magnesium silicate hollow spheres showed an excellent ability to remove Pb2+ ions in water treatment owing to their large specific surface and unique structures.  相似文献   

20.
Co3O4空心球的简易合成及其电化学性能   总被引:1,自引:0,他引:1  
通过简易的水热法"一锅"制备了Co3O4空心球。借助X射线衍射仪(XRD)、扫描电子显微镜(SEM)、透射电子显微镜(TEM)和傅里叶变换红外光谱法(FTIR)等对Co3O4的结构和形貌进行了表征。结果表明,产物由Co3O4纳米粒子构成,并形成明显的空心多孔结构。循环伏安法(CV)测试表明,所制得的Co3O4空心球呈现良好的电化学性能。本文同时对Co3O4空心球结构的形成过程和可能的机理进行了分析和讨论。  相似文献   

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