Add time:08/26/2019 Source:sciencedirect.com
Periodic mesoporous organosilicas (PMOs) were synthesized from precursor mixtures of bridged organosilanes containing various ratios of divinylbenzene (vPh) and divinylPyridine (cas 110-86-1) (vPy) under basic conditions. The bifunctional vPh-vPy-PMOs exhibited ordered mesoporous structures and molecular scale periodicity to form crystal-like pore walls. With an increase in the vPy content, the diffraction peak due to the molecular-scale periodicity was gradually shifted from 14.75° to 14.95° along with a gradual change in external morphology of the PMO particles from spherical to rod-like shapes. Moreover, the fluorescence from vPh was largely quenched by vPy in vPh-vPy-PMOs compared to the physical mixtures of vPh-PMO and vPy-PMO. These results strongly suggest that the vPh and vPy units were homogeneously distributed within the PMO framework. To the best of our knowledge, this is the first study to demonstrate the homogeneous distribution of different organic bridges in multifunctional PMOs.
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