Assembling photoluminescent tri(8-quinolinolato)aluminum into periodic mesoporous organosilicas
Ying Yang1, Xin Zhang, Qiubin Kan
1State Key Laboratory of Heavy Oil Processing, China University of Petroleum, Changping, Beijing 102249, PR China; College of Chemistry, Jilin University, Changchun 130023, Jilin, PR China.
Abstract:
Mesostructured and mesoporous materials are emerging as a new class of optical materials. However, their synthesis is nontrivial. In this work, periodic mesostructured metal complex-containing silicas of MCM- and SBA-type bearing homogeneously distributed photoluminescent tri(8-quinolinolato)aluminum inside the channel walls (denoted as Alq3@PMO-MCM and Alq3@PMO-SBA, respectively) have been achieved via one-pot co-assembling of inorganic/surfactant/optically active species. A comprehensive multianalytical characterization of the structural and optical properties demonstrates that both Alq3@PMO-MCM and Alq3@PMO-SBA series gainfully combine the photoluminescent properties of Alq3 with the porous features of PMOs. Regularly arranged pores provide high surface area to disperse optically active components well and render Alq3-containing PMOs promising materials for optoelectronic applications.


