异丙醇铝

  • 网络Aluminum isopropoxide;aluminium isopropoxide;AIP
异丙醇铝异丙醇铝
  1. 以异丙醇铝和醋酸镧为原料,采用凝胶固相法制备样品,根据TG-DTA分析曲线得出铝酸镧的合成温度为900℃,与XRD分析结果吻合。

    Sample was prepared by gel-solid phase , with aluminium isopropoxide and lanthanum acetate as starting materials , According to TG-DTA curve synthesis temperature of lanthanum aluminate was 900 ℃, coincide with the XRD .

  2. 螯合-蒸馏法脱除异丙醇铝中痕量铁研究

    Research on removal of trace iron in aluminium isopropoxide by forming involatile chelate iron

  3. 最终,利用异丙醇铝和锆酸四丁酯(四丁基氧基锆)进行了微粒制备的实验研究,成功制备出了ZrO2和Al2O3微粒。

    Some experiments are conducted to produce other metal oxide micro-particles , and Al_2O_3 and ZrO_2 micro-particles are prepared successfully with aluminium-iso-propoxide and Zirconium n-Butoxide .

  4. 本文以异丙醇铝(Al(C3H7O)3)为原料,用溶胶&凝胶法制备出了纳米氧化铝(Al2O3)粉末。Iso的相序。

    The nanoscale alumina ( Al 2O 3 ) powders were prepared from the raw materials of aluminium-iso-propoxide ( Al ( C 3H 7O ) 3 ) with the sol-gel technology .

  5. 用异丙醇铝为先驱体通过溶胶-凝胶工艺成功地在SiC晶须表面涂覆了5&30nm的Al2O2涂层。

    The Al_2O_3 coating of of 5 & 30nm thickness , measured by TEM and EDAX , on the surface of SiC whisker was successfully prepared by sol-gel processing using Al ( OC_3H_7 ) _3 as a precursor .

  6. 以异丙醇铝和正硅酸乙酯为主要原料,用溶胶-凝胶法制备无支撑体Al2O3-SiO2复合膜。

    Al2O3-SiO2 composite membrane was prepared by sol-gel process using aluminium isopropoxide and tetraethoxysilane as raw materials .

  7. 本研究以异丙醇铝为原料,采用Sol-Gel法在微滤级的基质陶瓷管上制备了无裂纹的超滤级γ-Al2O3膜。

    In our work , an ultrafiltration γ Al 2O 3 membrane has been prepared on the basis of microfiltration grade ceramic tube by the Sol Gel method using aluminium isopropylate ( C 9H 21 AlO 3 ) as starting material .

  8. 分别以廉价的硝酸铝无机盐常压干燥法和异丙醇铝有机醇盐作为铝源,采用溶胶-凝胶法制备了结构完整的SiO2-Al2O3干凝胶和纯Al2O3干凝胶。

    Integrated structure SiO2-Al2O3 xerogels and pure Al2O3 xerogels were prepared by the sol-gel method and non-supercritical drying using low-cost inorganic aluminum nitrate trihydrate and organic aluminum-isopropoxide alkoxide as alumi - num sources respectively .

  9. 以硬脂酸、SAE30润滑油和异丙醇铝为原料,采用一步法,并添加甲基硅油制备含硅铝基润滑脂凝胶。

    By using stearine , lubricating oil in SAE 30 and isopropanol aluminum as feed , aluminum base grease gels containing methyl silicone oil were prepared with one stage method .

  10. 采用异丙醇铝和氯化铝作铝源,正硅酸乙酯作硅源,通过溶胶-凝胶法合成含有Al-O-Si长链的溶胶,干法纺丝制备莫来石连续纤维。

    Using Al ( OC_3H_7 ) _3 and AlCl_3 as the source of Al and TEOS as the source of Si , the sol containing Al-O-Si long chain was synthesized by sol-gel method , and the continuous mullite fibers were prepared by air spinning .

  11. 本文分别以PEO-PPO-PEO三嵌段共聚物P123、月桂酸及月桂酸钠为模板剂,异丙醇铝为铝源,采用水热合成法得到了介孔结构的氧化铝。

    In this paper , by respectively using PEO-PPO-PEO block copolymer , C_ ( 11 ) H_ ( 23 ) COOH and C_ ( 11 ) H_ ( 23 ) COONa as template , using aluminum iso-propoxide as precipitator , the meso-structured alumina were synthesized under the method of hydro-thermal .

  12. 异丙醇铝水解制备超微细高纯氧化铝

    Ultrafine high-purity alumina prepared by hydrolysis of aluminium isopropylate

  13. 考察了异丙醇铝中铁杂质含量对发光材料性能的影响;

    The dependence between luminescence performance and Fe impurity 's content in aluminum isopropoxide .

  14. 异丙醇铝的石墨表面改性

    Surface Modification of Graphite by Aluminum Isopropoxide

  15. 使用异丙醇铝为铝源能制得高度定向的丝光沸石膜。

    A highly oriented mordenite membrane could be prepared with aluminum isopropoxide as the aluminum source .

  16. 线性回归得到了邻菲罗啉分光光度法测定异丙醇铝中痕量铁杂质的工作曲线。

    Getting linear equation as the working curve for the trace iron impurity measurement in aluminium isopropoxide .

  17. 采用有机溶剂醇热法,以异丙醇铝为原材料对LiCoO2进行表面处理。

    The organic solvent alcohol-heating method was used to modify LiCoO_2 cathode material 's surface with aluminium isopropoxide .

  18. 沉淀时加入1%的异丙醇铝共沉淀,可大大提高高比表面积二氧化钛的耐热性;

    Coprecipitation with 1 % aluminium isopropoxide greatly improves the stability of high surface area titanium dioxide at high temperature .

  19. 以铝盐、铝粉、异丙醇铝为铝源,硝酸为催化剂,经回流反应和老化形成可纺性铝溶胶。

    The sol was prepared after reflux and aging with aluminum salts , aluminum powder and aluminum isopropoxide as the precursors and nitric acid as the catalyst .