| Literature DB >> 20672102 |
Ying Li1, Bing Yan, Jin-Liang Liu.
Abstract
Novel organic-inorganic mesoporous luminescent hybrid materialEntities:
Keywords: Functionalized mesoporous silica; Organic–inorganic hybrid material; Photoluminescence; Schiff-base derivative
Year: 2010 PMID: 20672102 PMCID: PMC2894093 DOI: 10.1007/s11671-010-9560-y
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1Scheme of the synthesis process of BSTC–Si and predicted structure of hybrid mesoporous material BSTC-SBA-15
Figure 2IR spectra for thiocarbohydrazide (A), TESPIC (B), BSTC (C), BSTC-Si (D), BSTC-functionalized hybrid mesoporous material BSTC-SBA-15 (E), and pure SBA-15 (F)
The maximal ultraviolet absorption wavelengths of BSTC
| Compounds | BSTC | BSTC-Si |
|---|---|---|
| λmax(nm) | 303, 340 | 312, 346 |
Figure 3AXRD patterns of SBA-15, BSTC/SBA-15, and BSTC-SBA-15
Textural data of SBA-15, BSTC/SBA-15 and BSTC-SBA-15
| Sample | ||||
|---|---|---|---|---|
| SBA-15 | 10.68 | 746 | 0.97 | 5.64 |
| BSTC/SBA-15 | 10.15 | 551 | 0.76 | 5.24 |
| BSTC-SBA-15 | 10.12 | 624 | 0.84 | 5.40 |
d100 is the d (100) spacing, SBET-the BET surface area, V-the pore volume, and D-the pore diameter
Figure 4N2ad sorption/desorption isotherms (top) and the pore diameter distributions (bottom) of pure SBA-15 (a), BSTC/SBA-15 (b) and BSTC-SBA-15 (c)
Figure 5HRTEM images of BSTC-SBA-15 recorded along the [100] (a) and [110] (b) zone axes
Figure 6The excitation (a) and emission spectra (b) for BSTC (λem = 537 nm, λex = 396 nm), BSTC/SBA-15 (λem = 540 nm, λex = 396 nm), BSTC-SBA-15(λem = 467 nm, λex = 354 nm), and pure SBA-15(λem = 467 nm, λex = 354 nm)