Shang et al., 2017 - Google Patents
Novel polymer aerogel toward high dimensional stability, mechanical property, and fire safetyShang et al., 2017
- Document ID
- 5371571506590390557
- Author
- Shang K
- Yang J
- Cao Z
- Liao W
- Wang Y
- Schiraldi D
- Publication year
- Publication venue
- ACS Applied Materials & Interfaces
External Links
Snippet
Inorganc silica-based aerogels, the earliest and widely used aerogels, have poorer mechanical properties than their organic substitutes, which are flammable. In this study, a novel polymeric aerogel with high strength, inherent flame retardancy, and cost …
- 239000004964 aerogel 0 title abstract description 486
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Shang et al. | Novel polymer aerogel toward high dimensional stability, mechanical property, and fire safety | |
Xie et al. | From monomers to a lasagna-like aerogel monolith: an assembling strategy for aramid nanofibers | |
Zu et al. | Versatile double-cross-linking approach to transparent, machinable, supercompressible, highly bendable aerogel thermal superinsulators | |
Dou et al. | Hierarchical cellular structured ceramic nanofibrous aerogels with temperature-invariant superelasticity for thermal insulation | |
Yan et al. | “Robust–soft” anisotropic nanofibrillated cellulose aerogels with superior mechanical, flame-retardant, and thermal insulating properties | |
Ye et al. | Ultrahigh-temperature insulating and fire-resistant aerogels from cationic amylopectin and clay via a facile route | |
Jin et al. | Ultralight and hydrophobic palygorskite-based aerogels with prominent thermal insulation and flame retardancy | |
Hu et al. | Proton donor-regulated mechanically robust aramid nanofiber aerogel membranes for high-temperature thermal insulation | |
Wang et al. | Temperature-responsive intumescent chemistry toward fire resistance and super thermal insulation under extremely harsh conditions | |
Zhao et al. | Thermal and mechanical performances of the superflexible, hydrophobic, silica-based aerogel for thermal insulation at ultralow temperature | |
Maleki et al. | Compressible, thermally insulating, and fire retardant aerogels through self-assembling silk fibroin biopolymers inside a silica structure—an approach towards 3D printing of aerogels | |
Zhao et al. | Thermally insulating and flame-retardant polyaniline/pectin aerogels | |
Jiang et al. | Ultralight, thermally insulating, compressible polyimide fiber assembled sponges | |
Wang et al. | Three-dimensional-printed silica aerogels for thermal insulation by directly writing temperature-induced solidifiable inks | |
Wang et al. | Efficient approach to improving the flame retardancy of poly (vinyl alcohol)/clay aerogels: incorporating piperazine-modified ammonium polyphosphate | |
Mi et al. | Flexible and transparent cellulose aerogels with uniform nanoporous structure by a controlled regeneration process | |
Hasegawa et al. | Highly flexible hybrid polymer aerogels and xerogels based on resorcinol-formaldehyde with enhanced elastic stiffness and recoverability: insights into the origin of their mechanical properties | |
Zu et al. | Superelastic triple-network polyorganosiloxane-based aerogels as transparent thermal superinsulators and efficient separators | |
Zhu et al. | Thermal insulation and flame retardancy of the hydroxyapatite nanorods/sodium alginate composite aerogel with a double-crosslinked structure | |
Viggiano et al. | Effect of bulky substituents in the polymer backbone on the properties of polyimide aerogels | |
Berglund et al. | Seaweed-derived alginate–cellulose nanofiber aerogel for insulation applications | |
Wang et al. | Synergistic hybrid organic–inorganic aerogels | |
Maleki et al. | Synthesis of lightweight polymer-reinforced silica aerogels with improved mechanical and thermal insulation properties for space applications | |
Sun et al. | Tough polymer aerogels incorporating a conformal inorganic coating for low flammability and durable hydrophobicity | |
Chen et al. | Fabrication and properties of irradiation-cross-linked poly (vinyl alcohol)/clay aerogel composites |