首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 125 毫秒
1.
采用改进的溶胶凝胶法,以天然磁铁矿为铁源,开发出一种制各过程简单且环境友好且低成本的磁性Fe_3C@C纳米材料制备策略.其中,柠檬酸作为多元羧酸络合剂,不但可以有效地溶解不同铁源,例如Fe、Fe_3O_4或天然磁铁矿,形成柠檬酸铁盐络合物;还可以在热解过程中作为碳源,形成包裹碳层.通过控制高温热解过程可以直接形成特殊的核-壳结构形态.Fe_3C@C纳米材料具有超顺磁性特性(38.09 emu/mg).  相似文献   

2.
郝延明  周严  赵淼 《物理学报》2005,54(5):2334-2337
通过x射线衍射及磁测量手段研究了Tb2Fe15.5Cr1.5化 合物的热膨胀性质及本征磁致伸缩性质.研究结果表明Tb2Fe15.5Cr 1.5化合物在293—672K的温度范围内具有六角相的Th2Ni17型结构.在432—522K的温度范围内具有负热膨胀 性质,其平均热膨胀系数=-157×10-5/K.对本征磁致伸缩的研究结果表明Tb2Fe15.5Cr1.5化合物中存在着较强的各向异性的本 征磁致伸缩,293K时其本征体磁致伸缩约为84×10-3,晶格畸变主要发生在c 轴方向上.磁测量研究结果表明Tb2Fe15.5Cr1.5化合物的居里温度约为494K,比其母 合金Tb2Fe17高约80K.  相似文献   

3.
Gd2O3:Eu3+纳米晶的燃烧合成及光致发光性质   总被引:1,自引:0,他引:1       下载免费PDF全文
采用柠檬酸作燃烧剂用燃烧合成法制备了Gd2O3:Eu3+纳米晶.用X射线衍射仪(XRD)、高分辨透射电子显微镜(HRTEM)和荧光分光光度计等对Gd2O3:Eu3+纳米晶的结构、形貌和发光性能进行了分析.结果表明:不同柠檬酸与稀土离子配比(C/M)制备的样品经800℃ 退火1 h后,均得到了纯立方相的Gd2O3:Eu3+纳米晶,晶粒尺寸约为30 nm,尺寸分布较窄,其中以C/M=1.0时制备的纳米晶结晶性最好,发光强度最大.Gd2O3:Eu3+纳米晶主发射峰位置均在612 nm处 (5D07F2跃迁),激发光谱中电荷迁移态发生红移,观察到Gd3+向Eu3+的有效能量传递.对柠檬酸与稀土离子配比(C/M)对结晶度、发光性质等的影响也进行了分析和讨论.  相似文献   

4.
YBO3:Eu3+纳米晶发光特性   总被引:1,自引:0,他引:1       下载免费PDF全文
用水热法制备了YBO3:Eu3+纳米材料,通过改变其反应条件对纳米颗粒的大小和形貌进行了控制,对其发射光谱进行分析并与体材料进行了比较.在纳米材料中,很大比例的稀土离子微观环境受到表面的影响.这种影响可能使稀土离子的Judd-Ofelt参数Ω2增大,从而使Eu3+5D07F2的发射加强,红色发光材料的色纯度提高.  相似文献   

5.
光催化降解有机污染物由于其具有低能耗和绿色环保的特点,已经成为研究的热点. 氧化铋纳米晶体的带隙在2.0∽2.8 eV之间,利用它催化可见光降解有机污染物具有较高的活性,从而引起了越来越多的关注. 尽管近年来已经开发了几种制备Bi2O3基半导体材料的方法,但是仍然难以用简单的方法大规模地制备高活性的Bi2O3催化剂. 因此,开发简单可行的大规模制备Bi2O3纳米晶体的方法对于工业废水处理的潜在应用具有重要意义. 本文通过蚀刻商用BiSn粉末,然后进行热处理,成功地大规模制备了多孔Bi2O3. 获得的多孔Bi2O3在亚甲基蓝(MB)的光催化降解中表现出优异的活性和稳定性. 对该机理的进一步研究表明,多孔Bi2O3合适的能带结构允许生成活性氧物种,例如O2和·OH,可有效降解MB.  相似文献   

6.
本文合成了磁性金属有机骨架材料Fe3O4@[Cu3(btc)2],并作为分散微固相萃取的吸附剂用于四环素类抗生素的富集. 对萃取的条件,包括萃取时间、溶液pH和洗脱溶剂对四环素类抗生素萃取效率的影响进行了研究. 结果显示Fe3O4@[Cu3(btc)2]可以有效富集四环素类抗生素,而四环素类抗生素与Fe3O4@[Cu3(btc)2]之间的静电相互作用主导了这一过程. 利用分散微固相萃取结合液相色谱-串联质谱法对天然水中的四种四环素类抗生素(土霉素,四环素,金霉素和多西环素)残留进行了测定. 四种抗生素的检出限(S/N=3)为0.01∽0.02 μg/L,定量限(S/N=10)为0.04∽0.07 μg/L. 河水和养殖水中四环素三个水平的加标回收率为70.3%∽96.5%,相对标准偏差为3.8%∽12.8%. 结果表明,基于磁性金属有机骨架材料的分散微固相萃取可以从水中简单、快速、高效地富集四环素类抗生素.  相似文献   

7.
探讨生长α-Fe2O3和Fe3O4纳米线的一个可控制的合成过程. 在研究中发现,高磁性的α-Fe2O3纳米线已经成功地利用氧化辅助气固法结晶生成于Fe0.5Ni0.5合金基板上;若基板事先浸泡于草酸溶液中,随草酸浓度的增加,所生长的纳米线晶相会逐转变为Fe3O4,当草酸浓度达到0.75 mol/L时,所生长的纳米线几乎全部转变成Fe3O4晶相. 此外,实验结果也显示所生长的纳米线长度及直径会随着气固过程中的温度上升而增加,生长密度则会随着气固过程中的流量加大而上升. 此过程所提出的合成程序可在2 h內完成.  相似文献   

8.
用高温固相法制备了NaLuO2和NaYO2晶体粉体.制备纯相的NaLuO2粉体晶体困难,而制备纯相NaYO2粉体晶体相对容易.为了测定NaLuO2产物中含少量Lu2O3不纯相的量,用X射线衍射绝标法确定了样品中这两者的重量比和谱峰比的关系,得到了绝标法常数kLu2O3相似文献   

9.
本文制备了用于费托合成反应的钴改性Fe3O4-MnO2双功能催化剂,并探究了钴负载量对Fe-Co协同效应的影响以及Fe1CoxMn1催化剂的费托合成反应性能. 实验发现,在Fe3O4-Mn催化剂中加入Co可促进铁氧化物的还原、增加反应过程中铁位点的活性. 此外,Co的加入可增强Fe-Co金属间的电子转移,加强两者的协同作用,提高催化性能. Co负载较高的Fe1CoxMn1催化剂可进一步促进加氢反应能力,使产品分布向短链烃方向转移. 在280 °C、2.0 MPa和3000 h-1的最佳工况条件下,Fe1Co1Mn1催化剂的液体燃料收率最高.  相似文献   

10.
利用XRD和XAFS技术研究了淬火速度为20m/s的退火和未退火Nd9Fe85-xB6Mnx(x=0.5,1.0)样品的长程序结构和局域结构.结果表明:初始制备样品,微量Mn原子的掺杂有利于纳米复合Nd-Fe-B磁性材料中Nd2Fe14B硬磁相和α-Fe软磁相的结晶度增加,而随着Mn掺杂量的增加,Fe原子周围配位有序度升高;退火后,掺杂微量的Mn元素并没有进一步提高Nd9Fe85-xB6Mnx样品的结晶度,也没有生成新的物相.本文提出,在快淬制备过程中,微量的Mn原子进入纳米复合Nd-Fe-B磁性材料的磁体主相形成亚稳相;退火处理后,Mn原子退出初始的磁体主相而进入颗粒的晶界.  相似文献   

11.
不使用任何模板一步制得空心Fe3O4纳米颗粒,然后将海藻酸钠嫁接在氨基化的空心Fe3O4表面,再利用海藻酸盐与钙离子的作用,在空心Fe3O4表面形成一个凝胶化层,制得海藻酸盐凝胶化的空心Fe3O4纳米颗粒,粒径约为400~500 nm.采用TEM、XRD、XPS、VSM等手段对纳米微球进行表征.VSM表征结果表明在室温下样品磁性材料为超顺磁性.改性Fe3O4纳米颗粒成功地用于柔红霉素的载负和缓释,最大载负率和载药量分别为28.4%和14.2%.缓释结果表明,海藻酸盐凝胶化层的存在,能更有效控制柔红霉素缓慢地释放.  相似文献   

12.
The dominant growth planes (0 0 0 1) and (1 1 0 2) have been used to investigate the activity of the natural α-Fe2O3 in chemical-looping combustion system based on density functional theory (DFT) calculations. In the chemical-looping combustion system, CO is selected as the probe fuel gas to detect the activities of the different surfaces. CO interacts stronger to Fe2O3 (1 1 0 2) than Fe2O3 (0 0 0 1). CO can be oxidized into CO2 species directly on Fe2O3 (1 1 0 2) rather than Fe2O3 (0 0 0 1). The formation of CO2 accompanying with a transformation from hematite to magnetite acted as the key step for the reduction process of hematite.  相似文献   

13.
本文通过一个简单的、温和的方案制备了平均尺寸为120 nm,介孔结构的纳米粒子MnSiO3@Fe3O4@C. 粒子的细胞毒性微小,可以用作T1-T2*双模MRI造影剂. 酸性条件下MnSiO3@Fe3O4@C释放出大量的Mn2+缩短T1弛豫时间,提高成像分辨率. 超顺磁性的Fe3O4可以增强T2对比成像,检测病变组织. 类似于肿瘤微环境/细胞器的酸性PBS(pH=5.0)中Mn2+的释放率达到31.66%,约为中性条件(pH=7.4)下的7倍. 释放的Mn2+通过内吞作用被细胞摄取,经肾脏排出,细胞毒性实验表明,MnSiO3@Fe3O4@C具有低的细胞毒性,即使高浓度的200 ppm MnSiO3@Fe3O4@C对HeLa细胞的毒性也相对较小. 对荷瘤小鼠静脉注射定量MnSiO3@Fe3O4@C后,可以观察到一个快速增强的对比成像,给药24 h后,T1MRI信号显著增强,达到132%,而T2信号则明显降低至53.8%,活体MR成像证明了MnSiO3@Fe3O4@C可以同时作为阳性和阴性造影剂. 此外,得益于介孔MnSiO3优秀的酸敏感性,MnSiO3@Fe3O4@C可以作为一种潜在的药物载体,实现肿瘤的诊疗一体化.  相似文献   

14.
Metals can form several kinds of oxides. Iron forms wustite (FeO), magnetite (FeO + Fe2O3 or Fe3O4) and haematite (Fe2O3). Iron oxides, especially magnetite, are used for insulation between the lamellas of an electromotor made of electromagnetic sheet. In this work, iron oxide layers were characterized on industrial samples of electromagnetic sheet by AES depth profile analysis, and iron oxides with known chemical composition were used as reference samples, i.e. a magnetite mineral and a standard haematite reference sample. The magnetite mineral was chosen because it can be found in nature in a very pure form. The selection of reference samples was also verified on samples with an oxide layer of known composition, which were prepared by sputter deposition. The composition of the sputtered oxide layers was analysed by the weight-gain method and Rutherford backscattering without the use of standard reference materials (SRM), and the results were then compared with those obtained by AES depth profile analysis.  相似文献   

15.
Fe3O4/polystyrene composite particles were prepared from oleic acid (OA) modified Fe3O4 nanoparticles via miniemulsion polymerization. It was concluded that the surface properties of OA modified magnetite nanoparticles have a great effect on preparation of the composite particles. When Fe3O4 nanoparticles coated by multilayer of OA was employed, there were large amounts of free polystyrene particles in the product. Fe3O4/polystyrene composite particles with defined structure and different magnetite content can be readily prepared from monolayer OA modified Fe3O4 nanoparticles. It was concluded that surface of the monolayer OA modified Fe3O4 nanoparticles is more hydrophobic than that of the multilayer coated ones, thus improving the dispersibility of the Fe3O4 nanoparticles in styrene monomer and allowing preparation of the Fe3O4/polystyrene composite particles with defined structure and controllable magnetite content.  相似文献   

16.
王海燕  李新建 《物理学报》2005,54(5):2220-2225
报道了硅纳米孔柱阵列(Si-NPA),Fe3O4复合的Si-NPA(Fe 3O4/Si-NPA)两种薄 膜材料的制备方法并对其形貌和结构进行了表征,研究了其电容湿度传感特性.结果表明,S i-NPA,Fe3O4/Si-NPA均为微米/纳米结构复合体系.当环境相对湿 度从11%上升到95% 时,采用100 Hz的信号频率进行测试,以Si-NPA和Fe3O4/Si-NPA 为电介质材料制成的湿 敏元件的电容增加值分别为起始值的1500%和5500%;采用1000 Hz的信号频率测试时,则 分别为起始值的800%和12000%,显示出两种材料较高的湿度灵敏性和较强的绝对电容输出 信号强度.同时,在升湿和降湿过程中,Si-NPA,Fe3O4/Si-NPA都 具有较快的响应速度 ,其响应时间分别为15 s,5 s和20 s,15 s.文章结合材料的形貌和结构特性对其物理机理 进行了分析.上述结果表明,Si-NPA无论是直接作为湿度薄膜传感材料还是作为复合薄膜湿 度传感材料的衬底都具有很好的前景. 关键词: 硅纳米孔柱阵列 3O4')" href="#">Fe3O4 湿度电容传感特性  相似文献   

17.
We measured temperature dependence of a spin polarization of field-emitted electrons from a single-crystalline magnetite (Fe3O4) whisker with 〈1 1 0〉 orientation. The spin polarization of emitted electrons began to increase above 130 K corresponding to the temperature of Verwey point (Tv). The increase is considered as reflection of the change of the spin state near the Fermi level due to the Verwey transition. Our experimental results support a localization of t2g orbital electrons below the Verwey point and a model of charge ordering for magnetite.  相似文献   

18.
There is mounting interest in designing magnetically steerable nano‐ and micromotors for next generation medical nanorobotics, which requires biocompatibility for each individual component. Although various magnetic materials (e.g., Ni, Co, and Fe3O4) have been incorporated into micromotors, their acid resistance remains largely unexplored. In this article, a simple one‐step method to prepare magnetic microrods via electrostatic attraction between paramagnetic magnetite nanoparticles (Fe3O4 NPs) and gold microrods at appropriate pH values is reported. The as‐prepared Fe3O4‐coated micromotors can be powered by MHz ultrasound and easily steered by external magnetic fields, and perform well in harsh working conditions such as high acidity, high viscosity, and high ionic strength. In particular, extended exposure to solution of pH as low as 0.9 has a minimal effect on the speed, steerability, or cargo‐transporting capability of micromotors coated with Fe3O4 NPs, in stark contrast with those containing Ni segments. Considering the many challenges of biomedical applications, acid‐resistant, magnetically steerable Fe3O4‐coated micromotors powered by MHz ultrasound can be a promising prototype for the future development of medical nano‐ and microrobotics.  相似文献   

19.
Methods to synthesize magnetic Fe3O4 nanoparticles and to modify the surface of particles are presented in the present investigation. Fe3O4 magnetic nanoparticles were prepared by the co-precipitation of Fe3+ and Fe2+, NH3·H2O was used as the precipitating agent to adjust the pH value, and the aging of Fe3O4 magnetic nanoparticles was accelerated by microwave (MW) irradiation. The obtained Fe3O4 magnetic nanoparticles were characterized by Fourier transform infrared spectroscopy (FT-IR), transmission electron microscopy (TEM), X-ray powder diffraction (XRD) and vibrating sample magnetometer (VSM). The average size of Fe3O4 crystallites was found to be around 8–9 nm. Thereafter, the surface of Fe3O4 magnetic nanoparticles was modified by stearic acid. The resultant sample was characterized by FT-IR, scanning electron microscopy (SEM), XRD, lipophilic degree (LD) and sedimentation test. The FT-IR results indicated that a covalent bond was formed by chemical reaction between the hydroxyl groups on the surface of Fe3O4 nanoparticles and carboxyl groups of stearic acid, which changed the polarity of Fe3O4 nanoparticles. The dispersion of Fe3O4 in organic solvent was greatly improved. Effects of reaction time, reaction temperature and concentration of stearic acid on particle surface modification were investigated. In addition, Fe3O4/polystyrene (PS) nanocomposite was synthesized by adding surface modified Fe3O4 magnetic nanoparticles into styrene monomer, followed by the radical polymerization. The obtained nanocomposite was tested by thermogravimetry (TG), differential scanning calorimetry (DSC) and XRD. Results revealed that the thermal stability of PS was not significantly changed after adding Fe3O4 nanoparticles. The Fe3O4 magnetic fluid was characterized using UV–vis spectrophotometer, Gouy magnetic balance and laser particle-size analyzer. The testing results showed that the magnetic fluid had excellent stability, and had susceptibility of 4.46×10−8 and saturated magnetization of 6.56 emu/g. In addition, the mean size d (0.99) of magnetic Fe3O4 nanoparticles in the fluid was 36.19 nm.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号