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Published in: Journal of Materials Science 11/2009

01-06-2009

Electrical and mechanical properties of aluminosilicate inorganic polymer composites with carbon nanotubes

Authors: Kenneth J. D. MacKenzie, Matthew J. Bolton

Published in: Journal of Materials Science | Issue 11/2009

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Abstract

The DC electrical conductance of potassium aluminosilicate inorganic polymers (geopolymers) containing up to 6 wt% single-wall carbon nanotubes has been determined as a function of temperature up to 340 °C. After removal of the processing water during the first heating cycle, the conductance in subsequent heating cycles increases as a function of carbon nanotube content and temperature from 9.75 × 10−4 to 1.87 × 10−3 S m−1 in the composites containing 0 and 0.2 wt% carbon nanotubes, respectively, at 290 °C. By comparison, the electrical conductance of potassium inorganic polymer composites containing graphite was generally lower. The conductance activation energies of the carbon nanotube and graphite composites were similar, and decreased from about 55 to 5 kJ mole−1 with increasing carbon content. The tensile strengths of carbon nanotube and graphite-containing potassium geopolymer composites, determined by the Brazil method on 10–12 replicates, were about 2 MPa, and showed little change with increasing carbon nanotube content up to 0.3 wt%. By contrast, the tensile strengths of an analogous set of sodium composites were up to four times greater, possibly reflecting the necessity for less processing water in the synthesis of the sodium samples.

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Literature
2.
3.
go back to reference Porte A, Jazet M (2008) Fr. Patent 02904677/Fr-A1 Porte A, Jazet M (2008) Fr. Patent 02904677/Fr-A1
4.
go back to reference Davidovits J (2008) Institut Géopolymère, St. Quentin, France Davidovits J (2008) Institut Géopolymère, St. Quentin, France
5.
go back to reference Ebbesen TW, Lezec HJ, Hiura H, Bennett JW, Ghaemi HF, Thio T (1996) Nature 382:54CrossRef Ebbesen TW, Lezec HJ, Hiura H, Bennett JW, Ghaemi HF, Thio T (1996) Nature 382:54CrossRef
6.
7.
9.
11.
go back to reference Eren San S, Yerli Y, Okutan M, Yilmaz F, Gunaydin O, Hames Y (2007) Mater Sci Eng B 138:284CrossRef Eren San S, Yerli Y, Okutan M, Yilmaz F, Gunaydin O, Hames Y (2007) Mater Sci Eng B 138:284CrossRef
13.
17.
go back to reference Nochaiya T, Tolkidtikul P, Singjai P, Chaipanich A (2008) Adv Mater Res 55–57:549CrossRef Nochaiya T, Tolkidtikul P, Singjai P, Chaipanich A (2008) Adv Mater Res 55–57:549CrossRef
18.
19.
go back to reference Kerber MK, Wereszczak AA, Jenkins MG (1998) Fracture strength. Marcel Dekker, NY, p 147 Kerber MK, Wereszczak AA, Jenkins MG (1998) Fracture strength. Marcel Dekker, NY, p 147
23.
go back to reference Maniwa Y, Matsuda K, Kyakuno H, Ogasawara S, Hibi T, Kadowaki H, Suzuki S, Achiba Y, Kataura H (2007) Nature Mater 6:135CrossRef Maniwa Y, Matsuda K, Kyakuno H, Ogasawara S, Hibi T, Kadowaki H, Suzuki S, Achiba Y, Kataura H (2007) Nature Mater 6:135CrossRef
24.
go back to reference Karpilovskii LP, Letskaya NV (1978) Steklo Keram 9:29 Karpilovskii LP, Letskaya NV (1978) Steklo Keram 9:29
Metadata
Title
Electrical and mechanical properties of aluminosilicate inorganic polymer composites with carbon nanotubes
Authors
Kenneth J. D. MacKenzie
Matthew J. Bolton
Publication date
01-06-2009
Publisher
Springer US
Published in
Journal of Materials Science / Issue 11/2009
Print ISSN: 0022-2461
Electronic ISSN: 1573-4803
DOI
https://doi.org/10.1007/s10853-009-3377-z

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