Hydrophobic surface modified aluminas for polymer compositions and method for making thereof
A method of producing new hydrophobic aluminas by i) providing a slurry comprising an alumina compound, the slurry having a pH of above 5.5; ii) mixing an organic composition comprising carboxylic acids with long hydrocarbon chains with the slurry to form an acid modified slurry; iii) hydrothermally conditioning the acid modified slurry to form a hydrothermally aged slurry; and iv) drying the hydrothermally aged slurry. The new hydrophobic aluminas have surface modified structures distinguished by a low humidity content and very small nanoparticles. These new hydrophobic aluminas can be uniformly dispersed in a substrate, for example polymers.
1. A method of producing a hydrophobic alumina comprising the steps of:
i) providing a slurry comprising an alumina compound, the slurry having a pH of 7.0 to 10.0;
ii) mixing an organic composition comprising carboxylic acids with hydrocarbon chains having a carbon chain length of between 12 and 24 with the slurry to form an acid modified slurry;
iii) hydrothermally conditioning the acid modified slurry to form a hydrothermally aged slurry; and
iv) drying the hydrothermally aged slurry;
wherein the alumina compound includes an aluminum oxide hydroxide (AlOOH), a boehmite, or a pseudoboehmite.
2. The method of claim 1 , further comprising: adding a base to the slurry of step i) or to the acid modified slurry of step ii) to ensure that the pH of the slurry of step i) or the pH of the acid modified slurry of step ii) remains at a pH of 7 and above.
3. The method of claim 1 , wherein the organic composition comprises carboxylic acids with hydrocarbon chains of between 14 and 18.
4. The method of claim 1 , wherein the hydrothermal conditioning is performed at a temperature of 90° C. to 200° C. for a period of 1 to 6 hours.
5. The method of claim 1 , wherein the hydrothermally aged slurry is dried in a spray dryer, having an inlet temperature greater than about 200° C.
6. The method of claim 2 , wherein the base is NH 4 OH.