110th Anniversary: Particle Size Effect on Enhanced Graphitization and Electrical Conductivity of Suspended Gold/Carbon Composite Nanofibers

Kunal Mondal, Tanmoy Maitra, Alok Kumar Srivastava, Gorakh Pawar, Michael D. Mcmurtrey, Ashutosh Sharma

Research output: Contribution to journalArticlepeer-review

9 Scopus citations

Abstract

The fabrication of suspended gold/carbon composite nanofibers on carbon microposts by electrospinning of a gold/polyacrylonitrile (AuNP/PAN) blend precursor is proposed. The fibers were spun on a rotating drum collector for a short duration and carbonized at 900 °C in an inert atmosphere. The in situ fabrication of a monolithic carbon structure consisting of carbon nanofibers on carbon microposts ensures good electrical connection, thereby reducing ohomic resistive mismatch. It was found that the conductivity can be simply tuned about an order of magnitude, compared to virgin carbon nanofibers, by the addition of gold nanoparticles (AuNPs). The conductivity was found to increase with the size (5-20 nm) of the AuNPs, which engendered graphitic microregions in the pyrolyzed nanofibers. The effect of microfabrication/nanofabrication technique on the organization of graphitic planes in the electrospun composite nanofibers studied experimentally and computationally and a templating effect of AuNPs that causes enriched graphitization is proposed.

Original languageEnglish
Pages (from-to)1944-1952
Number of pages9
JournalIndustrial and Engineering Chemistry Research
Volume59
Issue number5
DOIs
StatePublished - Feb 5 2020
Externally publishedYes

Funding

K.M., T.M., A.K.S., and A.S. want to acknowledge the DST Unit of Excellence on Soft Nanofabrication from the Department of Science and Technology, New Delhi, India for their support. K.M., G.P., and M.D.M. want to thank Energy & Environment S&T at the Idaho National Laboratory for the support. The authors gratefully acknowledge Dr. Marc J. Madou for his help with HRTEM imaging.

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