2017
DOI: 10.1002/admi.201600908
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Amplified Thermopower Waves in Large‐Area Carbon–Nanotube/Fuel Composites via Thermal Decomposition of Sodium Nitrate

Abstract: Advancement of micro‐nanotechnology has accompanied the need for developing new energy sources. Thermopower waves (TWs), which use the combustion of high‐energy‐density fuels surrounding micro‐nanostructured materials, can implement the direct conversion between chemical–thermal–electrical energy on a small scale as a potential energy source for the next‐generation devices. Herein, the enhancement of TWs by the decomposition of sodium nitrate for additional thermal energy and charge suppliers in combustion is … Show more

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Cited by 5 publications
(2 citation statements)
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“…7e). [95] Systematic efforts in optimizing reactant compositions [189][190][191][192][193][194] and nano-structured conduit types [188,[195][196][197][198][199][200][201][202][203][204][205][206] have proven to be indispensable in TPW output enhancements (Fig. 7e).…”
Section: The Asymmetric Doping Mechanismmentioning
confidence: 99%
See 1 more Smart Citation
“…7e). [95] Systematic efforts in optimizing reactant compositions [189][190][191][192][193][194] and nano-structured conduit types [188,[195][196][197][198][199][200][201][202][203][204][205][206] have proven to be indispensable in TPW output enhancements (Fig. 7e).…”
Section: The Asymmetric Doping Mechanismmentioning
confidence: 99%
“…Inset: a carbon nanotube surrounded by nitrocellulose molecules. [193] Annular coatings of solid crystals between 6 and 9 nm in thickness wrapping a multiwalled carbon nanotube of c.a. 22 nm in diameter.…”
Section: Figure 7 (A)mentioning
confidence: 99%