| Literature DB >> 20628468 |
Zhihong Gong1, Guangbin Ji, Mingbo Zheng, Xiaofeng Chang, Weijie Dai, Lijia Pan, Yi Shi, Youdou Zheng.
Abstract
Mesoporous silica nanofibers were synthesized within the pores of the anodic aluminum oxide template using a simple sol-gel method. Transmission electron microscopy investigation indicated that the concentration of the structure-directing agent (EO20PO70EO20) had a significant impact on the mesostructure of mesoporous silica nanofibers. Samples with alignment of nanochannels along the axis of mesoporous silica nanofibers could be formed under the P123 concentration of 0.15 mg/mL. When the P123 concentration increased to 0.3 mg/mL, samples with a circular lamellar mesostructure could be obtained. The mechanism for the effect of the P123 concentration on the mesostructure of mesoporous silica nanofibres was proposed and discussed.Entities:
Keywords: Anodic aluminum oxide; Mesoporous silica; Nanofiber; P123; Template synthesis
Year: 2009 PMID: 20628468 PMCID: PMC2894318 DOI: 10.1007/s11671-009-9389-4
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1aTop-view SEM image of AAO/MSNFs membranes andb–dside view SEM images of MSNFs
Figure 2TEM images of the MSNFs samples:aMSNFs-1;b,cMSNFs-2;dMSNFs-3;eMSNFs-4;f,gMSNFs-5;hMSNFs-6; andiMSNFs-7
Figure 3Schematic diagrams concerning the change in the mesostructure of MSNFs with increasing the concentrations of P123: (a) 0.15 mg/mL; (b) 0.225 mg/mL; and (c) 0.3 mg/mL
Figure 4N2adsorption–desorption isotherms and BJH pore-size distribution plots of the samples:a,bAAO/MSNFs-2 andc,dAAO/MSNFs-5