1) Aiuminumisopropoxide
2-丙醇铝
2) aluminum isopropoxide
异丙醇铝
1.
A Removal of Trace Silicon Impurity from Aluminum Isopropoxide;
异丙醇铝中痕量硅杂质分离纯化研究
2.
Ring-opening polymerization of ε-caprolactone(ε-CL) on the surface of hydroxylated biaxially oriented polypropylene(BOPP) film was initiated by aluminum isopropoxide in a sequential two-step method and in a one-step method.
以异丙醇铝为催化剂,采用一步法和两步法在聚丙烯膜表面接枝聚己内酯。
3) aluminium isopropoxide
异丙醇铝
1.
Research on removal of trace iron in aluminium isopropoxide by forming involatile chelate iron;
螯合-蒸馏法脱除异丙醇铝中痕量铁研究
2.
The homogeneous hydrogen transfer of acrolein to allyl alcohol was carried out with aluminium isopropoxide as catalyst.
采用异丙醇铝为催化剂,丙烯醛与异丙醇进行均相氢转移反应合成烯丙醇,对催化剂的再利用及催化剂的失活原因进行了研究。
3.
The catalysis of iodine was discussed in detail in the synthesis of aluminium isopropoxide.
详细探讨了直接反应法制备异丙醇铝过程中单质碘对铝与异丙醇反应的催化机理,得出碘的催化作用在于:碘首先与铝反应生成A lI3,然后A lI3醇解生成异丙醇铝和H I,同时H I与铝反应又生成A lI3和H2。
4) aluminum propoxide
丙醇铝
1.
The result indicates that reaction time is 50 min and the yield of aluminum propoxide is over 98% under the optimium conditions.
用丙醇和铝粉直接合成了丙醇铝,确定了合成丙醇铝的工艺条件为:2%AlCl_3,0。
6) 2-propanol
2-丙醇
1.
The temperature-programmed desorption(TPD)was used to study the adsorption and thermal decomposition of 2-propanol and trifluoro-2-propanol on clean Ni(100)surface.
利用程序热脱附(TPD)实验研究了2-丙醇和三氟-2-丙醇在Ni(100)表面的吸附和热反应过程。
2.
The photoionization and dissociative photoionization of 1-propanol and 2-propanols have been studied at the photon energy range of 9.
80eV光子能量范围内1-丙醇和2-丙醇的光电离和离解光电离现象,测量了1-丙醇离解光电离产生的碎片离子CH3CH2CH2OH+、CH3CH2CHOH+、CH2CH2OH+、CH3CH2CH2+、CH3CH!CH2+和CH2OH+及2-丙醇离解光电离产生的碎片离子CH3CH(OH)CH3+、CH3C(OH)CH3+、CH3CHOH+、CH2!CHOH+、CH3CHCH3+和CH3CH!CH2+的光电离效率谱,得到了这些离子的出现势。
补充资料:2-丙醇铝
分子式:C9H21AlO3
分子量:204.25
CAS号:555-31-7
性质:吸湿性白色固体。熔点128-132℃,沸点138-148℃(1.33kPa),相对密度(20/4℃)1.035。溶于乙醇、异丙醇、苯、甲苯、氯仿、四氯化碳和石油烃。遇水分解。
制备方法:由异丙醇和铝在氧化铝催化下反应而得。原料消耗定额:异丙醇1255kg/t、铝166kg/t。
用途:用作脱水剂、催化剂和防水剂的原料。
分子量:204.25
CAS号:555-31-7
性质:吸湿性白色固体。熔点128-132℃,沸点138-148℃(1.33kPa),相对密度(20/4℃)1.035。溶于乙醇、异丙醇、苯、甲苯、氯仿、四氯化碳和石油烃。遇水分解。
制备方法:由异丙醇和铝在氧化铝催化下反应而得。原料消耗定额:异丙醇1255kg/t、铝166kg/t。
用途:用作脱水剂、催化剂和防水剂的原料。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条