Heat-resistant, strong alumina-modified silica aerogel fabricated by impregnating silicon oxycarbide aerogel with boehmite sol. (5th October 2017)
- Record Type:
- Journal Article
- Title:
- Heat-resistant, strong alumina-modified silica aerogel fabricated by impregnating silicon oxycarbide aerogel with boehmite sol. (5th October 2017)
- Main Title:
- Heat-resistant, strong alumina-modified silica aerogel fabricated by impregnating silicon oxycarbide aerogel with boehmite sol
- Authors:
- Ma, Jie
Ye, Feng
Yang, Chunping
Ding, Junjie
Lin, Shaojie
Zhang, Biao
Liu, Qiang - Abstract:
- Abstract: In order to overcome the fragility and sintering behavior of silica aerogel at high temperature, heat-resistant and strong alumina-modified silica aerogel was fabricated by impregnating silicon oxycarbide (SiOC) aerogel with industrial boehmite sol. The partial sintering of SiOC aerogel during its pyrolysis endowed alumina-silica aerogel its high strength. Meanwhile, the carbon in SiOC can also act as a pore former due to oxidation with O2 during the subsequent calcination in air. This approach is straightforward and economical. The as-prepared composite aerogel exhibited high surface area (278 m 2 /g) and compressive strength of up to 2.17 MPa. Compared to SiO2 aerogel prepared using the same method, the composite aerogel was found to be more heat resistant. After being heated to 1000 °C and 1200 °C for 2 h, the surface area of composite aerogel reached up to 183 and 22 m 2 /g, respectively. On the other hand, the corresponding values for linear shrinkage were as low as 6.93% (for 1000 °C) and 18.90% (for 1200 °C). The XRD patterns indicated that amorphous SiO2 and γ -Al2 O3 remained in the composite aerogel after heat-treatment at 1200 °C. Graphical abstract: Highlights: The inexpensive boehmite sol was used as alumina source to prepare Al2 O3 -SiO2 aerogel. The partial sintering of aerogel during its preparation process endows the aerogel with high elastic modulus of 78 MPa. The carbon in silicon oxycarbide can act as a pore former by oxidizing with O2 duringAbstract: In order to overcome the fragility and sintering behavior of silica aerogel at high temperature, heat-resistant and strong alumina-modified silica aerogel was fabricated by impregnating silicon oxycarbide (SiOC) aerogel with industrial boehmite sol. The partial sintering of SiOC aerogel during its pyrolysis endowed alumina-silica aerogel its high strength. Meanwhile, the carbon in SiOC can also act as a pore former due to oxidation with O2 during the subsequent calcination in air. This approach is straightforward and economical. The as-prepared composite aerogel exhibited high surface area (278 m 2 /g) and compressive strength of up to 2.17 MPa. Compared to SiO2 aerogel prepared using the same method, the composite aerogel was found to be more heat resistant. After being heated to 1000 °C and 1200 °C for 2 h, the surface area of composite aerogel reached up to 183 and 22 m 2 /g, respectively. On the other hand, the corresponding values for linear shrinkage were as low as 6.93% (for 1000 °C) and 18.90% (for 1200 °C). The XRD patterns indicated that amorphous SiO2 and γ -Al2 O3 remained in the composite aerogel after heat-treatment at 1200 °C. Graphical abstract: Highlights: The inexpensive boehmite sol was used as alumina source to prepare Al2 O3 -SiO2 aerogel. The partial sintering of aerogel during its preparation process endows the aerogel with high elastic modulus of 78 MPa. The carbon in silicon oxycarbide can act as a pore former by oxidizing with O2 during preparation process. The resultant alumina-modified silica aerogel exhibits a much higher heat resistance than silica aerogel. … (more)
- Is Part Of:
- Materials & design. Volume 131(2017)
- Journal:
- Materials & design
- Issue:
- Volume 131(2017)
- Issue Display:
- Volume 131, Issue 2017 (2017)
- Year:
- 2017
- Volume:
- 131
- Issue:
- 2017
- Issue Sort Value:
- 2017-0131-2017-0000
- Page Start:
- 226
- Page End:
- 231
- Publication Date:
- 2017-10-05
- Subjects:
- Aerogel -- Al2O3-SiO2 -- Boehmite -- Sol-gel -- Heat resistance -- Compressive strength
Materials -- Periodicals
Engineering design -- Periodicals
Matériaux -- Périodiques
Conception technique -- Périodiques
Electronic journals
620.11 - Journal URLs:
- http://catalog.hathitrust.org/api/volumes/oclc/9062775.html ↗
http://www.sciencedirect.com/science/journal/02641275 ↗
http://www.sciencedirect.com/science/journal/02613069 ↗
http://www.elsevier.com/journals ↗ - DOI:
- 10.1016/j.matdes.2017.06.036 ↗
- Languages:
- English
- ISSNs:
- 0264-1275
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 5393.974000
British Library DSC - BLDSS-3PM
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