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- W2384916914 endingPage "190" @default.
- W2384916914 startingPage "156" @default.
- W2384916914 abstract "The conventional hydrothermal conversion of saccharide-based precursors typically leads to the preparation of regularly sized carbonaceous microspheres. However, these materials typically present very low surface areas and limited porosity. Therefore, if these sustainable carbons are to find use in applications where surface area, porosity, mass transfer and diffusion are critical to function then innovative routes are required to introduce high surface area and (e.g. micro-, meso- and macro-) porosity as well as allow material morphology control. In this chapter the use of the hydrothermal carbonisation (HTC) approach in the synthesis of porous carbonaceous materials will be discussed based on sustainable precursors. The use of hard (e.g. silica-based) and soft (e.g. micellar) templating techniques to dictate porosity and morphology will be discussed transiting through a variety of approaches including the use of inorganic nanoparticles/wires, block copolymers, and latex nanoparticles through to increasingly more sustainable and efficient approaches involving oil-in-water emulsions, low-density aerogels and ultimately the use of naturally forming structures (e.g. crustacean exoskeletons) to render these functional, sustainable carbonaceous materials with high surface areas and flexible porosity features coupled with the ability to dictate material morphology, in a fashion akin to classical sol-gel chemistry." @default.
- W2384916914 created "2016-06-24" @default.
- W2384916914 creator A5008822868 @default.
- W2384916914 creator A5032377683 @default.
- W2384916914 creator A5061217643 @default.
- W2384916914 date "2015-02-20" @default.
- W2384916914 modified "2023-09-25" @default.
- W2384916914 title "Porous Hydrothermal Carbon Materials, Nanoparticles, Hybrids and Composites" @default.
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