## Abstract Ordered mesoporous carbon C‐FDU‐18s with tunable pore sizes of 12−33 nm and pore wall thicknesses of 5−11 nm were synthesized by using poly(ethylene oxide)‐block‐poly(styrene) (PEO‐__b__‐PS) diblock copolymers with various PS chain lengths as templates and through the evaporation induce
Template synthesis of large pore ordered mesoporous carbon
✍ Scribed by An-Hui Lu; Wen-Cui Li; Wolfgang Schmidt; Ferdi Schüth
- Publisher
- Elsevier Science
- Year
- 2005
- Tongue
- English
- Weight
- 462 KB
- Volume
- 80
- Category
- Article
- ISSN
- 1387-1811
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✦ Synopsis
Nanocast carbon (NCC-1) with large pores and ordered structure was synthesized via a nanocasting process using aluminumcontaining SBA-15 as template and furfuryl alcohol (FA) as carbon precursor. This carbon has several interesting features, such as two steps with distinguished hystereses in the nitrogen sorption isotherm, high surface area of $2000 m 2 /g and large pore volumes of $3.0 cm 3 /g. It was found that the key factors in the synthesis of such carbons are the aging temperature of the SBA-15 template, the concentration of furfuryl alcohol (dissolved in trimethylbenzene), and the carbonization temperature. The optimal conditions for materials with high surface area and pore volumes are SBA-15 starting materials aged at 140 °C, 25 vol% of FA solution and 850-1100 °C carbonization temperatures. Moreover, it has been demonstrated that such nanocast carbon can be synthesized in a more facile way than previously reported. Purely siliceous SBA-15 without the need of Al 3+ -incorporation can be directly used as template. In this case, the polymerization catalyst-oxalic acid and FA were simultaneously introduced into the pore space of SBA-15.
📜 SIMILAR VOLUMES
**Ordered mesoporous carbon**, named as NCC‐1, has been synthesized via a nanocasting process using SBA‐15 as the template and diluted furfuryl alcohol solution as the carbon source. NCC‐1 shows a bimodal pore size distribution (see Figure) in the mesopore range and a high pore volume up to 3.2 cm^3