Synthesis of fullerene by spark plasma sintering and thermomechanical transformation of fullerene into diamond on Fe-C composites

Francisco C. Robles-Hernández, H. A. Calderon

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

2 Scopus citations

Abstract

In this work, results are presented regarding the characterization of nanostructured Fe matrix composites reinforced with fullerene. The fullerene is a mix of 15 wt.%C60, 5 wt.%C70 and 80 wt.% soot that is the product of the primary synthesis of C60. The composite has been produced by means of mechanical alloying and sintered by Spark Plasma Sintering (SPS). The characterization methods include XRD, SEM and TEM. The C60 and C70 withstand mechanical alloying, SPS, and thermomechanical processing and act as a control agent during mechanical alloying. The results show that the mechanically alloyed and SPS product is a nanostructured composite. A larger amount of C60 is found in the sintered composite than in the original fullerene mix, which is attributed to an in-situ synthesis of C60 during the SPS process. The synthesis of C60 is presumably assisted by the catalytic nature of Fe and the electric field generated during the SPS process. In order to study the effect of high temperature, high strain, high heating and cooling rates on C60, the composite is subjected to a thermomechanical processing; demonstrating that some of the C60 resists the above described environment and some of it partially transforms into diamond.

Original languageEnglish
Title of host publicationAdvanced Structural Materials
Pages39-48
Number of pages10
StatePublished - 2010
Event18th International Materials Research Congress 2009 - Cancun, Mexico
Duration: 16 Aug 200921 Aug 2009

Publication series

NameMaterials Research Society Symposium Proceedings
Volume1243
ISSN (Print)0272-9172

Conference

Conference18th International Materials Research Congress 2009
Country/TerritoryMexico
CityCancun
Period16/08/0921/08/09

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