1)porous alumina多孔氧化铝
1.Preparation of porous alumina template and study on formation process;多孔氧化铝模板的制备及形成过程研究
2.The fabrication and transmissivity of porous alumina templates;多孔氧化铝模板的制备及性质研究
3.The fabrication of high-quality periodic porous alumina templates;高质量规则多孔氧化铝模板的制备
英文短句/例句
1.The Investigation of the Fabrication of Porous Alumina and the Characteristic of the Related Materials;多孔氧化铝制备及相关材料特性研究
2.Photoluminescence Properties of Organic Dye Embedded in Porous Alumina;多孔氧化铝镶嵌有机染料的发光研究
3.Developments in Application of Functional Porous Oxide Aluminium Film功能性多孔氧化铝膜的应用研究进展
4.Photoluminescence of Rhodamine6G embedded in porous alumina;染料Rh6G在多孔氧化铝纳米孔中的光致发光
5.Preparation of Co_3O_4 Nanotubes and Pore Structure of Porous Alumina Template氧化钴纳米管的制备和模板剂多孔氧化铝的孔洞结构
6.Preparation and Characterization of Porous Alumina Ceramic Membrane Support;多孔氧化铝陶瓷膜支撑体的制备与表征
7.Fabrication and Photoluminescence Properties of Porous Anodic Alumina Templates;多孔氧化铝模板的制备及其光致发光性能
8.Preparation of Porous Alumina Template and Assembly of Nano-Channel Array System;多孔氧化铝模板制备与纳米阵列体系组装
9.The Study on Luminescence of ZnO Nano-particles Loaded into Porous Alumina Hosts;纳米ZnO在多孔氧化铝模板内的发光特性的研究
10.Optic Character of Porous Alumina and Low Dimension Nano-crystalline Silicon;多孔氧化铝和低维纳米硅材料的光学特性研究
11.The Preparation of Anodic Aluminum Oxide Template and Nanowires Template Synthesis;多孔氧化铝模板的制备及模板法合成镍纳米线
12.Synthesis of Porous α-Al_2O_3 Ceramics by Freeze-Casting Processing冷冻干燥法工艺条件对多孔氧化铝陶瓷的影响
13.Electrochemical deposition of Co nanowire arrays in porous alumina membrane by alternating current method多孔氧化铝模板中交流沉积钴纳米线阵列
14.The barrier-layer alumina films and porous-layer alumina make up of nanometer alumina membrane.其中阻挡层氧化铝和多孔层氧化铝构成纳米氧化铝模板。
15.Preparation Technology of Porous Anodic Aluminum Oxide Template多孔阳极氧化铝模板制备工艺的研究
16.Preparation and Performance of Cu-Al-Al_2O_3 Porous Materials铜-铝-氧化铝复合多孔材料的制备及性能
17.Preparation and Influence Factors of Porous Aluminum Anodizing Film多孔铝阳极氧化膜的制备及膜孔的影响因素
18.Study on Preparation Technology of Alumina Porous Ceramics with Controllable Porosity气孔率可控氧化铝多孔陶瓷制备工艺的研究
相关短句/例句
porous anodic alumina多孔氧化铝
1.Well ordered porous anodic alumina (PAA) film was prepared on pure Al substrate using sulfuric/oxalic acid mixture as electrolyte with different ratios, the best regular PAA film with an average diameter of 45 nm was obtained using 1∶1 sulfuric/oxalic (molar concentration) mixed acid at 26 V.高度有序的多孔氧化铝可以在3种不同类型的电解液,即硫酸、草酸和磷酸中获得。
2.TiO_2 nanotubes were prepared by sol-gel method using porous anodic alumina as the template,and then,doped by nitrogen in ammonia gas atmosphere.以多孔氧化铝为模板,采用溶胶凝胶法制备出二氧化钛纳米管,在氨气气氛下进行了氮掺杂。
3.The physical structure of the porous anodic alumina was characterized by using SEM and BET.用电化学方法制备多孔氧化铝膜,并负载Mo-Co活性组分制得了金属支撑-多孔层规整填料型加氢催化剂。
3)porous anodic aluminum多孔氧化铝
4)Porous alumina membrane多孔氧化铝膜
1.Nanometer-scale porous alumina membrane is prepared by anodic oxidization.比较了电化学抛光前后铝片表面的微观结构,用阳极氧化法制备了纳米级多孔氧化铝膜,用扫描电镜研究分析了氧化铝膜孔的排列规律。
2.Porous alumina membrane is prepared by aluminum anodizing in given acidic solution.通过二次阳极氧化方法制备多孔氧化铝膜与一次阳极氧化方法制备多孔氧化铝膜孔排布规律性的对比 ,结果发现 ,二次阳极氧化方法制取的多孔氧化铝膜孔排布规律性明显好于一次阳极氧化法制取的多孔膜 。
5)porous anodic alumina多孔阳极氧化铝
1.The fabrication of porous anodic alumina template without barrier;无阻挡层多孔阳极氧化铝膜板的制备
2.Preparation and optical property of porous anodic alumina template;多孔阳极氧化铝模板的制备及其光学特性研究
3.Determination of the optical constants of highly ordered porous anodic alumina film;高度有序多孔阳极氧化铝薄膜光学常数的确定
6)porous anodic aluminum oxide template多孔氧化铝模板
1.The α-iron nanowires array films were prepared by electrochemical deposition on the porous anodic aluminum oxide template with nanopores.在具有纳米级孔洞的多孔氧化铝模板上, 用电沉积方法制备出α Fe纳米线有序阵列组装膜。
延伸阅读
多晶氧化铝纤维分子式:CAS号:性质:又称多晶氧化铝纤维。制法不同其Al2O3的结晶态和含量各异。直径10~20μm。密度2.7~4.2g/cm3。强度1.4~2.45GPa。模量190~385GPa。最高使用温度为1100~1400℃。制法:(1)前驱体法,将聚铝噁烷与硅酸酯载体溶于有机溶剂中干纺,在1000℃空气中烧成,得到含SiO2的γ-Al2O3纤维;更换原料和载体可得α-Al2O3-ZrO2纤维;(2)淤浆法,将α-Al2O3粉、Al(OH)2Cl·2H2O及少量MgCl2·6H2O所组成的淤浆干纺,在1000~1500℃烧成而得α-Al2O3纤维;(3)胶体法,在含HCOO-和CH3COO-离子的Al2O3溶胶中加入硅溶胶和硼酸,纺丝后烧成而得(9Al2O3·2B2O3+无定形SiO2)纤维。用作结构和功能复合材料增强剂,如电磁波屏蔽材料等。
