Nanorods of cerium oxide as an improved electrocatalyst for enhanced oxygen reduction in single-chambered microbial biofuel cells

被引:4
|
作者
Das, Suparna [1 ]
Dutta, Kingshuk [2 ,3 ]
Enotiadis, Apostolos [2 ]
Papiya, Farhan [4 ]
Kundu, Patit P. [5 ]
Bhattacharya, Swapan K. [1 ]
Giannelis, Emmanuel P. [2 ]
机构
[1] Jadavpur Univ, Dept Chem, 188 Raja SC Mullick Rd, Kolkata 700032, India
[2] Cornell Univ, Dept Mat Sci & Engn, Ithaca, NY 14853 USA
[3] CIPET, SARP, ARSTPS, Chennai 600032, Tamil Nadu, India
[4] Univ Calcutta, Dept Polymer Sci & Technol, 92 APC Rd, Kolkata 700009, India
[5] Indian Inst Technol, Dept Chem Engn, Roorkee 247667, Uttar Pradesh, India
关键词
microbial biofuel cell; oxygen reduction reaction; cathode catalyst; unsupported catalyst; cerium oxide nanorods; PVDF-CO-HFP; POLYMER ELECTROLYTE MEMBRANES; FUEL-CELLS; ANODIC-OXIDATION; IRON PHTHALOCYANINE; ALLOY NANOPARTICLES; METHANOL OXIDATION; MANGANESE-DIOXIDE; CATHODIC CATALYST; PERFORMANCE;
D O I
10.1088/2053-1591/ab653e
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This paper reports the synthesis and utilization of cerium oxide (CeO2) nanorods as a cathode catalyst and a potential, low-cost replacement of platinum for microbial biofuel cells (MBFCs). The nanorod electrocatalyst had exhibited significant improvements over Pt nanoparticles in terms of forward and backward onset potentials and peak current densities, electronic conductivity, charge transfer resistance, stability in 0.1 M phosphate buffer solution, and cost. It had also demonstrated a more stable forward peak current density at the 100th steady cycle, as well as, higher current density values up to 7,200 s. In addition, the synthesized CeO2 nanorods also produced similar to 10(3) times higher exchange current density over the synthesized Pt nanoparticles. Furthermore, in a single-chamber MBFC, the CeO2 nanorods exhibited higher open circuit voltage (+0.80 V after 14 days), and output current (3613 mAm(-2) at +0.3 V) and power (1084 mWm(-2)) densities in comparison to Pt nanoparticles.
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页数:13
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