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2019 | OriginalPaper | Chapter

8. Doped and Decorated Carbon Foams for Energy Applications

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Abstract

Here, we summarize progress over the past 9 years in the development of a new class of template-free carbon foam derived from the foaming and pyrolysis of sodium alkoxides, and their use in energy-related applications. Carbon foams offer a unique platform for applications in catalysis, energy storage, gas adsorption and sensing. They can have large surface area, a variety of pore sizes, and high electrical conductivity. In addition, they can be decorated with a wide variety of different nanoparticles tailored to suit the application, or doped with various heteroatoms to modify the nature of the carbon itself. The carbon foams described here are synthesized from cheap sodium alkoxide or alcohol-based feedstocks and do not require sacrificial templating to achieve the porous structure. Instead, these carbon foams are formed by foaming during decomposition of the alkoxide precursors. Despite the extremely simple method of production and the low cost of the product, the material properties are impressive. For example, surface areas in the region of 2500 m2/g can be routinely achieved, with atomically thin carbon walls. Carbon foams produced in this manner have been applied as hydrogen storage materials, electrochemical sensors, materials for spintronics, electrodes for lithium-ion batteries, oxygen reduction reaction electrocatalysts, carbon dioxide conversion electrocatalysts and superhydrophobic materials. In this chapter, the development of carbon foams, nanoparticle decorated carbon foams, and heteroatom-doped carbon foams for these applications will be reviewed. Future prospects for this material will also be speculated upon.

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Literature
4.
go back to reference Ross PN, Sokol H. The corrosion of carbon black anodes in alkaline electrolyte I. Acetylene black and the effect of cobalt catalyzation. US Nav Ammunit Depot PA Barnes E Kirton, Anal Calorim. J Therm Anal 8:99–133 Ross PN, Sokol H. The corrosion of carbon black anodes in alkaline electrolyte I. Acetylene black and the effect of cobalt catalyzation. US Nav Ammunit Depot PA Barnes E Kirton, Anal Calorim. J Therm Anal 8:99–133
9.
11.
go back to reference Lyth SM, Silva SR (2007) Field emission from multiwall carbon nanotubes on paper substrates. Appl Phys Lett 90:173124CrossRef Lyth SM, Silva SR (2007) Field emission from multiwall carbon nanotubes on paper substrates. Appl Phys Lett 90:173124CrossRef
36.
go back to reference Watts PCP, Lyth SM, Henley SJ, Silva SRP (2008) Secondary nanotube growth on aligned carbon nanofibre arrays for superior field emission. J Nanosci Nanotechnol 8:2147–2150CrossRef Watts PCP, Lyth SM, Henley SJ, Silva SRP (2008) Secondary nanotube growth on aligned carbon nanofibre arrays for superior field emission. J Nanosci Nanotechnol 8:2147–2150CrossRef
39.
go back to reference Lyth SM, Shao H, Liu J, Sasaki K, Akiba E (2014) Hydrogen adsorption on graphene foam synthesized by combustion of sodium ethoxide. Int J Hydrogen Energy 39:376 Lyth SM, Shao H, Liu J, Sasaki K, Akiba E (2014) Hydrogen adsorption on graphene foam synthesized by combustion of sodium ethoxide. Int J Hydrogen Energy 39:376
47.
go back to reference Lyth SMSM, Nabae Y, Islam NMNM et al (2012) Solvothermal synthesis of nitrogen-containing graphene for electrochemical oxygen reduction in acid media Lyth SMSM, Nabae Y, Islam NMNM et al (2012) Solvothermal synthesis of nitrogen-containing graphene for electrochemical oxygen reduction in acid media
51.
go back to reference Dodelet J-P (2013) The controversial role of the metal in Fe- or Co-based electrocatalysts for the oxygen reduction reaction in acid medium. In: Shao M, Higgins D, Chen Z (eds) Electrocatalysis in fuel cells. Springer, London, London, pp 271–338CrossRef Dodelet J-P (2013) The controversial role of the metal in Fe- or Co-based electrocatalysts for the oxygen reduction reaction in acid medium. In: Shao M, Higgins D, Chen Z (eds) Electrocatalysis in fuel cells. Springer, London, London, pp 271–338CrossRef
55.
go back to reference Lepri FG, Borges DLG, Araujo RGO et al (2010) Determination of heavy metals in activated charcoals and carbon black for Lyocell fiber production using direct solid sampling high-resolution continuum source graphite furnace atomic absorption and inductively coupled plasma optical emission spectrometry. Talanta 81:980–987CrossRef Lepri FG, Borges DLG, Araujo RGO et al (2010) Determination of heavy metals in activated charcoals and carbon black for Lyocell fiber production using direct solid sampling high-resolution continuum source graphite furnace atomic absorption and inductively coupled plasma optical emission spectrometry. Talanta 81:980–987CrossRef
62.
go back to reference Ohma A, Shinohara K, Iiyama A et al (2011) Membrane and catalyst performance targets for automotive fuel cells by FCCJ membrane, catalyst, MEA WG. In: ECS transactions. The Electrochemical Society, pp 775–784 Ohma A, Shinohara K, Iiyama A et al (2011) Membrane and catalyst performance targets for automotive fuel cells by FCCJ membrane, catalyst, MEA WG. In: ECS transactions. The Electrochemical Society, pp 775–784
Metadata
Title
Doped and Decorated Carbon Foams for Energy Applications
Author
Stephen M. Lyth
Copyright Year
2019
DOI
https://doi.org/10.1007/978-3-319-92917-0_8