Journal Article10.1016/j.clay.2022.106547
Halloysite-based aerogels by bidirectional freezing with mechanical properties, thermal insulation and flame retardancy
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TL;DR: In this article , anisotropic mechanical properties of aqueous suspension of Hal with a small proportion of chitosan (CS) were used for fabrication of high-performance thermal insulation materials.
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About: This article is published in Applied Clay Science. The article was published on 01 Aug 2022. The article focuses on the topics: Halloysite & Aerogel.
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Efficient adsorption and separation of norfloxacin from water by allophane aerogel microspheres
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Biological-mechanical pretreated rice straw for constructing foam with mechanically robust and fire-retardant behaviors
Yuheng Zhang,Xinyan Wang,Yujia Duan,Chao-Jun Li,Yi Cheng,Yehan Tao,Jie Lu,Jian Du,Haisong Wang +8 more
- 01 Nov 2023
TL;DR: Researchers develop biodegradable foam from pretreated rice straw, exhibiting robust mechanical properties and fire retardancy, with potential to replace petroleum-based EPS in logistics packaging, offering a sustainable alternative for cushioning fragile goods.
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References
Fully biomass-based aerogels with ultrahigh mechanical modulus, enhanced flame retardancy, and great thermal insulation applications
TL;DR: In this article, a fully bio-based aerogel from naturally abundant ammonium alginate (AL) and phytic acid (PA), in which PA acting as both flame retardant and cross-linking components constructs a strong network with AL matrix.
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Layered double hydroxide/graphene oxide synergistically enhanced polyimide aerogels for thermal insulation and fire-retardancy
TL;DR: In this paper, a layered double hydroxide (LDH)- graphene oxide (GO) synergistically enhanced polyimide (PI) composite aerogel was designed and synthesized through a green environmental freeze-drying method followed by thermal imidization.
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High-Strength Nanocomposite Aerogels of Ternary Composition: Poly(vinyl alcohol), Clay, and Cellulose Nanofibrils
TL;DR: These biobased ternary aerogels showed compression strength much better than that of previously studied materials and also showed strength higher than those of high-performance sandwich foam cores such as cross-linked polyvinyl chloride foams.
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Biologically Based Fiber-Reinforced/Clay Aerogel Composites
TL;DR: In this article, the incorporation of short-cut natural fibers forms a woven-like structure, which significantly increases the mechanical properties of these materials, and incorporation of a matrix polymer into the aerogel/fiber composites further enhances compressive strengths and moduli.
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