4.8 Article

Controlled modification of carbon nanotubes and polyaniline on macroporous graphite felt for high-performance microbial fuel cell anode

Journal

JOURNAL OF POWER SOURCES
Volume 283, Issue -, Pages 46-53

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jpowsour.2015.02.088

Keywords

Microbial fuel cell; Carbon nanotubes; Mediator-free; Polyaniline; Graphite felt; Shewanella putrefaciens

Funding

  1. National Natural Science Foundation of China [NSFC 21345007]
  2. National Recruitment Program of High-End Foreign Experts (China) [GDW20124100167]
  3. Henan Key Science and Technology Program [132102310042]
  4. Henan Open-up and Collaboration Program of Science and Technology [132106000070]

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Polyaniline (PANI) was electropolymerized on the surface of macroporous graphite felt (GF) followed by the electrophoretic deposition of carbon nanotubes (CNTs). The as-prepared macroporous material was characterized by scanning electron microscopy, water contact angle goniometry and electrochemical techniques. Upon the modification of PANI, a rough and nano-cilia containing film is coated on the surface of the graphite fibers, transforming the surface from hydrophobic to hydrophilic. The subsequent modification by CNTs increases the effective surface area and electrical conductivity of the resulting material. The power output of a mediator-free dual-chamber microbial fuel cell (MFC) constructed from the GF anode and an exoelectrogen Shewanella putrefaciens increases drastically with the CNT modification. The CNT/PANI/GF MFC attains an output voltage of 342 mV across an external resistor of 1.96 k Omega constant load, and a maximum power density of 257 mW m(-2), increased by 343% and 186%, compared to that of the pristine GF MFC and the PANI/GF MFC, respectively. More bacteria are attached on the CNT/PANI/GF anode than on the PANI/GF anode during the working of the MFC. This strategy provides an easy scale-up, simple and controllable method for the preparation of high-performance and low-cost MFC anodes. (C) 2015 Elsevier B.V. All rights reserved.

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