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1.
通过制备以ZnO陶瓷为基体的ZnO陶瓷/Ag2O复合材料. 通过XRD、SEM的分析和基本物理量(密度和电阻率)、I-V特性的测量结果发现,银与氧化锌陶瓷之间并没有发生化学反应,致密度也不高. 但是,二者的复合使原来在2000 V/cm 下不显现非欧姆特性的氧化锌陶瓷具有了非欧姆特性,非线性系数α达8.4,此时银的质量分数约为20%.  相似文献   

2.
用沉淀法制备了纳米ZnO,通过控制反应条件得到了几种不同粒径分布范围的纳米级ZnO粉体,用AFM和XRD方法对纳米ZnO样品进行了表征,采用共混法将不同粒径的纳米ZnO粉体制成涂层,利用光透射实验装置测试了涂层的光吸收性能,且与普通ZnO进行了对比.结果表明:纳米ZnO比普通ZnO有较强的光吸收能力,且随着纳米ZnO粒径的减小,光吸收能力相应地变强.  相似文献   

3.
研究了湿法合成ZnO陶瓷样品的结构及缺陷对材料电性能的影响。结果表明,湿法合成的ZnO材料是由主晶相ZnO、尖晶石相和富Bi液相组成的。随着烧结温度的提高,材料中出现了微空洞型缺陷。通过SEM、XRD结构分析和对材料电性能的测试,给出了阈值电压E0、非线性系数。的变化特点,并定性地讨论了材料的结构和缺陷对阈值电压、非线性系数的影响。  相似文献   

4.
研究了湿法合成ZnO陶瓷样品的结构及缺陷对材料电性能的影响。结果表明,湿法合成的ZnO材料是由主晶相ZnO、尖晶石相和富Bi液相组成的。随着烧结温度的提高,材料中出现了微空洞型缺陷。通过SEM、XRD结构分析和对材料电性能的测试,给出了阈值电压E0、非线性系数α的变化特点,并定性地讨论了材料的结构和缺陷对阈值电压、非线性系数的影响。  相似文献   

5.
采用溶胶-凝胶(Sol-Gel)旋涂法在Si(100)衬底上制备ZnO薄膜,在室温下利用X射线衍射(XRD)、原子力显微镜(AFM)、光致发光谱(PL)等手段分析所得ZnO薄膜的晶体结构和发光特性.结果表明:当热分解温度为400℃,晶化温度为450℃~650℃时,溶胶.凝胶旋涂法制备的ZnO薄膜样品属六方纤锌矿结构,ZnO薄膜呈现沿各个晶面自由生长的特性;在室温下均有较强的紫外带边发射峰,这表明带间跃迁占了主导地位,与缺陷有关的可见发射带很弱.以上结果说明:溶胶.凝胶法制备的ZnO薄膜质量较高.  相似文献   

6.
采用的两步法——先溅射成膜,后退火处理的工艺成功制备了ZnO:Tb复合薄膜,结合XRD、XPS、SEM等手段研究退火温度对薄膜结构和形貌的影响.发现退火温度950%,退火时间10小时为ZnO:Tb薄膜的最佳工艺参数——薄膜表面形成新奇T—A—ZnO结构以及不同直径和长度的螺纹状纳米棒.  相似文献   

7.
以ZnO、Al2O3粉体为原料,采用常压烧结方法制备高导电性Al:ZnO(AZO)陶瓷靶材,并系统研究了不同的成型压力、烧结工艺及其烧结温度对靶材电学特性和密度的影响。结果表明:成型压力的大小对于ZAO靶材本身的密度、成品率及最后烧结的性能都有很大的影响。成型压力为14Mpa时,靶材的电阻率最小,为0.35Ωcm。烧结温度的选择也是制备靶材的关键,为了避免靶材出现断层、上表面壳曲、微裂纹甚至开裂现象,要采用缓慢升温,长时间保温与缓慢降温的方法。实验表明,在1250℃时,AZO靶材表面平整致密,基本上达到了陶瓷靶材的烧结终点。  相似文献   

8.
通过固相反应法制备非磁性原子Ti掺杂ZnO系列样品.X射线衍射测量显示样品除了ZnO相外,还产生了Zn2TiO4、ZnTiO3两个物相.晶粒大小为30~60nm.振动样品磁强计测量得出样品的磁性都为抗磁性.样品电阻率大于l02Ω·cm,无霍尔效应和磁致电阻效应.  相似文献   

9.
超声化学法是利用超声波加速化学反应,从而来提高化学产率的一种重要方法。纳米ZnO以其独特的光学、电学、力学和磁学等方面的独特性能引起了材料工作者的广泛关注和重视。介绍了超声化学法的原理和分类.重点介绍了近年来超声化学法在制备纳米ZnO的研究进展,展示了超声化学法制备纳米ZnO的应用前景。  相似文献   

10.
采用微胶囊化红磷(MRP)和酚醛环氧树脂(NE)复配阻燃剂,以ZnO为阻燃增效剂,制备了具有良好阻燃性能的无卤阻燃ABS。研究了ZnO用量对ABS阻燃性能的影响及其协同作用机理。结果表明:添加ZnO即可显著提高材料的阻燃性能。当MRP/NE/ZnO添加量分别为9%、21%和4%时,阻燃PP的氧指数达34%。TGA、FTIR和体视显微镜分析结果表明:添加ZnO可以催化MRP/NE间的酯化交联反应.促进材料成炭,增加残炭含量。提高阻燃性能。  相似文献   

11.
采用陶瓷薄膜技术及溶胶一凝胶法制备了氧离子传导YSZ(Y2O3稳定的ZrO2)电解膜与电极催化剂,构建了膜电极组装(MEA)及结构为H2S、(复合MoS2阳极)/YSZ传导膜/(复合NiO阴极)、空气燃料电池系统;通过在MoS2中掺杂NiS、电解质、Ag粉和淀粉制备了双金属复合MoS2阳极催化剂,在NiO中添加电解质、Ag粉和淀粉制备了复合NiO阴极催化剂:考察了不同操作温度对电池性能的影响,比较了几种不同电极催化剂的性能,研究了H2S/air固体氧化物燃料电池的电化学性能。实验结果表明,在H2S环境中,复合MoS2阳极催化剂比MoS2和Pt具有更好的性能,复合Nio阴极Pt阴极的极化小;在电极催化剂中加入Ag可显著提高电极的导电性.添加电解质和淀粉可以提高电极的离子传导性和多孔性:操作温度增加.传导膜的电传导率和电化学反应速率增加,电池的输出电流与功率密度增加,电化学性能变好。电池连续运行1~4d几乎不降级。在850℃和101.13kPa时.燃料电池最大输出功率密度为155mW·cm^-2,对应的电流密度为240mA·cm^-2。  相似文献   

12.
采用共沉淀法合成了Ag2O/NaNbO3复合光催化剂,并利用X射线衍射(XRD)和扫描电子显微镜(SEM)分别对其物相和形貌进行表征,用紫外可见漫反射光谱仪对其光学性质进行研究。在可见光下以罗丹明B(RhB)为目标降解物,检测了Ag2O/NaNbO3光催化剂的光催化性能。结果表明,与纯的Ag2O和纯的NaNbO3相比,Ag2O/NaNbO3复合光催化剂具有较高的光催化活性,其光催化活性的提升可能归结于p-n结的形成,使得光生电子空穴对的复合机率大大降低。  相似文献   

13.
Cu-Ag filamentary microcomposites with different Ag contents were prepared by cold drawing and intermediate heat treatments. The microstructure characterization and filamentary distribution were observed for two-phase alloys under different conditions. The effect of heavy drawing strain on the microstructure evolution of Cu-Ag alloys was investigated. The results show that the microstructure components consist of Cu dendrites, eutectic colonies and secondary Ag precipitates in the alloys containing 6%-24% (mass fraction) Ag. With the increase in Ag content, the eutectic colonies in the microstructure increase and gradually change into a continuous net-like distribution. The Cu dendrites, eutectic colonies and secondary Ag precipitates are elongated in an axial direction and developed into the composite filamentary structure during cold drawing deformation. The eutectic colonies tend to evolve into filamentary bundles. The filamentary diameters decrease with the increase in drawing strain degree for the two-phase alloys, in particular for the alloys with low Ag content. The reduction in filamentary diameters becomes slow once the drawing strain has exceeded a certain level.  相似文献   

14.
利用反应等离子熔覆技术、以Fe-Cr-C-W-Ni合金粉末为原料,在Q235钢表面制得了Cr7C3高铬铁基金属陶瓷增强耐磨复合涂层。利用SEM、EDS和X射线衍射分析了涂层的显微组织,在室温干滑动磨损试验条件下测试了涂层的耐磨性。结果表明:反应等离子熔覆Cr7C3高铬铁基金属陶瓷增强耐磨复合涂层硬度高、组织均匀、与基材之间为完全冶金结合;涂层在室温干滑动磨损试验条件下表现出优异的耐磨性,涂层磨损的质量损失随载荷增加十分缓慢,涂层具有优异的载荷特性。  相似文献   

15.
Silicon carbide (SIC) ceramic with YAG (Y3Al5O12) additive added by sol-gel method was liquid-phase sintered at different sintering temperatures, and the sintering mechanism and microstructural characteristics of resulting silicon carbide ceramics were analyzed by X-ray diffraction (XRD), scanning electron microscopy (SEM) and elemental distribution of surface (EDS). YAG (yttrium aluminum garnet) phase formed before the sintering and its uniform distribution in the SiC/YAG composite powder decreased the sintering temperature and improved the densification of SiC ceramic. The suitable sintering temperature was 1860 ℃ with the specimen sintered at this temperature having superior sintering and mechanical properties, smaller crystal size and fewer microstructure defects. Three characteristics of improved toughness of SiC ceramic with YAG added by sol-gel method were microstructural densification, main-crack deflection and crystal ‘bridging‘.  相似文献   

16.
采用沉积沉淀法制备了四氧化三铁负载磷酸银(Ag3PO4/Fe3O4)可见光磁性催化剂,利用透射电子显微镜(TEM)、扫描电子显微镜(SEM)对催化剂的微观形貌进行了表征。用甲基橙的光催化降解评价了不同负载量的Ag3PO4/Fe3O4复合催化剂的光催化性能。结果表明:当Ag3PO4负载量为50%时光降解效果最好,在模拟太阳光下,辐照80 min后的降解率可达到90%以上。  相似文献   

17.
研究目的:探讨氧化锆陶瓷泡沫细胞培养体系在胶质细胞源性神经营养因子(GDNF)生产方面的潜在用途。创新要点:运用氧化锆陶瓷泡沫构建神经胶质细胞3D培养体系并测定该体系,该体系GDNF的产量明显优于传统的细胞培养体系。研究方法:将原代神经胶质细胞种植于氧化锆陶瓷泡沫3D培养体系中,采用四唑盐(MTT)比色法对其生物相容性进行观察;采用扫描电子显微镜观察该体系神经胶质细胞形态;检测DNA含量以评估细胞增殖情况;采用酶联免疫吸附测定法(ELISA)检测该体系GDNF的产量;采用实时定量聚合酶链式反应(PCR)及免疫印迹试验(Western blotting)对胶质细胞中产生GDNF的信号通路激活情况进行观察。重要结论:氧化锆陶瓷泡沫生物相容性好,由其构建的3D培养体系的GDNF产量明显优于传统2D培养体系。  相似文献   

18.
介绍分形的基本概念以及几种常用的计算简单分形维数的方法,用分形研究Au-MgF2纳米金属介质复合薄膜中Au颗粒和半连续Ag膜中Ag小岛的分布规律。结果表明:复合薄膜中Au颗粒的分形维数随Au含量的增加由1.5516逐渐增大到1.7671,表明金属介质复合薄膜中Au颗粒的平均尺寸随着Au含量的增加而增大;半连续Ag膜中Ag小岛的分形维数随厚度的增加从1.4051增大到1.7428,说明半连续Ag膜的覆盖率随着其厚度的增加而增大。这一结果与实验结果一致,因此分形可以用来定量表征薄膜显微结构的演化规律。  相似文献   

19.
The various stages and progress in the development of interconnect materials for solid oxide fuel cells (SOFCs) over the last two decades are reviewed. The criteria for the application of materials as interconnects are highlighted. Interconnects based on lanthanum chromite ceramics demonstrate many inherent drawbacks and therefore are only useful for SOFCs operating around 1000 ℃. The advance in the research of anode-supported flat SOFCs facilitates the replacement of ceramic interconnects with metallic ones due to their significantly lowered working temperature. Besides, interconnects made of metals or alloys offer many advantages as compared to their ceramic counterpart. The oxidation response and thermal expansion behaviors of various prospective metallic interconnects are examined and evaluated. The minimization of contact resistance to achieve desired and reliable stack performance during their projected lifetime still remains a highly challenging issue with metallic interconnects. Inexpensive coating materials and techniques may play a key role in pro moting the commercialization of SOFC stack whose interconnects are constructed of some current commercially available alloys. Alternatively, development of new metallic materials that are capable of forming stable oxide scales with sluggish growth rate and sufficient electrical conductivity is called for.  相似文献   

20.
In2O3 nanoparticles were prepared from or with different indium salts by chemical precipitation under the conditions of various pH values. The crystal structure and ceramic microstructure of the samples were characterized by X-ray diffraction (XRD) and transmission electron microscopy (TEM). The results show that the mean grain size of In2O3 is less than 100 nm, and their particle homogeneity and dispersibility are satisfactory. The gas sensitivity defined as Ra/Rg was detected in a static system. The results show that the sensors made by as-prepared nanoparticles has high sensitivity to many gases such as alcohol, HCHO, NH3 , et al. The response time is less than 20 s and the recovery time is lower than 30 s.  相似文献   

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