TY - JOUR
T1 - Evaluation of direct formic acid fuel cells with catalyst layers coated by electrospray
AU - Kwon, Yongchai
AU - Baek, Seungmin
AU - Kwon, Byungwan
AU - Kim, Jinsoo
AU - Han, Jonghee
PY - 2010
Y1 - 2010
N2 - We investigated cell performance and performed phenomenological analyses of direct formic acid fuel cells (DFAFCs) incorporating anode (palladium) and cathode (platinum) catalysts prepared using a new electrospray coating technique. To optimize the design of the DFAFC, we examined the cell performance by the Pd catalyst loading and formic acid feed rate. Of Pd catalyst loaded samples, 3 mg/cm2 sample showed the highest electrical performance with formic acid feed rate of 5 ml/min. This behavior was caused by discrepancies in the mass transfer limitation. When the feed rate was greater than 10 mL/min, however, the 7 mg/cm2 sample provided the highest electrical performance, which was attributed to enhanced electrooxidation reactions. For comparison of the effect of the catalyst coating method on the cell performance of DFAFC, polarization curves of the DFAFC incorporating catalysts prepared using a conventional airspray coating method were also measured. As a result of the comparison, the electrospray coatingused DFAFC showed better cell performance. Based on these results, the cell performance of the DFAFCs was optimized when the catalysts using the electrospray catalyst coating were employed, the amount of Pd loaded on the anode electrode was 3 mg/cm2 (Pd thickness: ~6 μm), and the formic acid feed rate was 10 mL/min.
AB - We investigated cell performance and performed phenomenological analyses of direct formic acid fuel cells (DFAFCs) incorporating anode (palladium) and cathode (platinum) catalysts prepared using a new electrospray coating technique. To optimize the design of the DFAFC, we examined the cell performance by the Pd catalyst loading and formic acid feed rate. Of Pd catalyst loaded samples, 3 mg/cm2 sample showed the highest electrical performance with formic acid feed rate of 5 ml/min. This behavior was caused by discrepancies in the mass transfer limitation. When the feed rate was greater than 10 mL/min, however, the 7 mg/cm2 sample provided the highest electrical performance, which was attributed to enhanced electrooxidation reactions. For comparison of the effect of the catalyst coating method on the cell performance of DFAFC, polarization curves of the DFAFC incorporating catalysts prepared using a conventional airspray coating method were also measured. As a result of the comparison, the electrospray coatingused DFAFC showed better cell performance. Based on these results, the cell performance of the DFAFCs was optimized when the catalysts using the electrospray catalyst coating were employed, the amount of Pd loaded on the anode electrode was 3 mg/cm2 (Pd thickness: ~6 μm), and the formic acid feed rate was 10 mL/min.
KW - Direct Formic Acid Fuel Cell
KW - Electrooxidation
KW - Electrospray
KW - Mass Transfer
UR - http://www.scopus.com/inward/record.url?scp=77952323520&partnerID=8YFLogxK
U2 - 10.1007/s11814-010-0166-y
DO - 10.1007/s11814-010-0166-y
M3 - Article
AN - SCOPUS:77952323520
SN - 0256-1115
VL - 27
SP - 836
EP - 842
JO - Korean Journal of Chemical Engineering
JF - Korean Journal of Chemical Engineering
IS - 3
ER -