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1)  nanometer ATO powder
纳米ATO粉体
1.
Surface modification of nanometer ATO powder
纳米ATO粉体的表面改性研究
2)  ATO powders
ATO纳米粉体
3)  ATO nanopowder
ATO纳米粉
1.
TiO2 powder and ATO nanopowder were prepared respectively using the method of peptizing the amorphous Ti(OH)4 in aqueous solutions and liquid phase-hydrolysis; ATO-coated TiO2 powder was synthesized by heterogeneous nucleation method; ATO, TiOj and ATO-coated TiO2 powder coating electrode were prepared by printing method.
分别对采用回流胶溶法、液相共沉淀法制备TiO_2粉体与ATO纳米粉体;采用非均匀成核法制备ATO/TiO_2包覆粉体以及采用印刷法制备了ATO,TiO_2涂层电极和ATO/TiO_2包覆粉体多孔涂层电极进行了研究。
4)  ATO nanometer powder
ATO纳米粉末
1.
ATO nanometer powder was prepared respectively by ultrasonic hydrolysis and conventional electromagnetic agitation hydrolysis.
分别以超声水解和常规电磁搅拌水解法制备了ATO纳米粉末,对其进行了XRD,SEM,TEM检测和电阻测量,比较了两种方法制得的粉末团聚度,并从机理上作了解释。
5)  nano ATO
纳米ATO
1.
The title contings has been developed based on aliphatic PU elastomer as binder,mixed with superdispersant and nano ATO conductive powder.
以脂肪族聚氨酯弹性树脂为基体,透明纳米ATO导电粉为导电介质,添加超分散剂,采用物理与化学相结合的分散方法对纳米ATO进行预处理。
2.
The results show that the antistatic paints will has good properties and surface resistivity of 103 Ω·cm-2 with 60%-65% of nano ATO powders, 5% of coupling agent NTC-401.
制备了一种以纳米ATO导电粉为填料,醇酸树脂为基体的复合型导电涂料,讨论了ATO的含量、偶 联剂种类、固化工艺以及溶剂对涂层导电性能的影响。
6)  ATO nanorods
ATO纳米棒
1.
The structure and morphology of ATO nanorods were investigated by thermogravimetric analysis (TGA), transmission electron microscope (TEM), X-ray diffraction (XRD), electron diffraction (ED) and BET method.
以SnCl4·5H2O和SbCl3为原料,采用化学共沉淀法制得纳米级掺锑二氧化锡(ATO)的前驱物,经1000~1100°C焙烧1~3h,成功制备了直径为10~40nm,长为60~500nm的金红石结构的ATO纳米棒。
2.
Effects of processing parameters such as antimony content, heating temperature and heating time on the morphology and structure of ATO nanorods were investigated.
初步探讨了ATO纳米棒的形成机理,并用热重分析(TG)、透射电镜(TEM)、X-射线衍射(XRD)、比表面法(BET)对棒结构进行了表征。
3.
The structure and morphology of ATO nanorods were investigated by thermogravimetric analysis (TGA),transmission electron microscope (TEM), X-ray diffraction (XRD) and BET methods.
以SnCl_4·5H_2O和SbCl_3为原料,采用化学共沉淀法制得纳米级掺锑二氧化锡(ATO)的前驱物,在一定条件下热处理,成功制备了直径为10-30nm,长为50-500nm的金红石结构的ATO纳米棒。
补充资料:埃斯皮纳·德·塞尔纳,C.
      西班牙女作家。生于桑坦德,卒于马德里。1909年发表小说《卢斯梅拉的幼女》,描写山区生活,1914年发表《马拉加特利亚的狮身人面像》,写莱昂地区妇女被奴役的地位和痛苦的生活。丈夫去世后,她在父亲供职的矿上定居,对矿工的生活有深刻的了解。代表作《死亡者的金属》(1920)是一部充满人道主义精神的小说,表现了里奥廷托地区矿工们悲惨的处境,主张进行罢工斗争以改变这种状况,这部小说于1927年获西班牙国家文学奖,作者并被提名为诺贝尔文学奖金的候选人。她的其他重要作品有《美洲的胜利》(1945)和《一部爱情小说》(1953)等。
  

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