Synthesis of Mesoporous Molecular Sieve under Ultrasonic
Run Ming
Abstract
Run Ming
Abstract
Th e synthesis of mesoporous molecular sieve(MMS)abstract:by ultrasonic method was investiga ted under different ultrasonic power and time.The resultant samples were charact erized through measurements of XRD,SEM,TEM,IR,TG,and N 2 adsorption isotherm.Nanometer mesoporous silica analogous to the hexagonal M CM - 41could be obtained over a range of irradiation power above200W within short synthesis time(20min)abstract:and a quiescent time(5h)abstract:.The samples have larger BET surfa ce area and thicker pore wall while its pore size and pore volume are similar to that obtained without ultrasonic.The crystallinity of MMS increase and the size of unit cell reduce as the increasing of ultrasonic power and time.The yield of products increases with the increasing of ultrasonic power.Therefore,ultrasonic irradiation synthesis is a way to save time and energy in preparation of the me so - porous molecular sieve.
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Th e synthesis of mesoporous molecular sieve(MMS)abstract:by ultrasonic method was investiga ted under different ultrasonic power and time.The resultant samples were charact erized through measurements of XRD,SEM,TEM,IR,TG,and N 2 adsorption isotherm.Nanometer mesoporous silica analogous to the hexagonal M CM - 41could be obtained over a range of irradiation power above200W within short synthesis time(20min)abstract:and a quiescent time(5h)abstract:.The samples have larger BET surfa ce area and thicker pore wall while its pore size and pore volume are similar to that obtained without ultrasonic.The crystallinity of MMS increase and the size of unit cell reduce as the increasing of ultrasonic power and time.The yield of products increases with the increasing of ultrasonic power.Therefore,ultrasonic irradiation synthesis is a way to save time and energy in preparation of the me so - porous molecular sieve.
Key concepts: Mesoporous material, Ultrasonic sensor, Molecular sieve, Materials science, Crystallinity, Chemical engineering, Sieve (category theory), Porosity