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Synthesis of pd and pt based low cost bimetallic anode electrocatalyst for glycerol electrooxidation in membraneless air breathing microfluidic fuel cell

dc.contributor.authorPanjiara D.; Pramanik H.
dc.date.accessioned2025-05-23T11:27:39Z
dc.description.abstractThe different weight ratios of Pd to Pt, i.e., 16:4, 10:10, 4:16 in Pd-Pt/C and Pd (20 wt. %) /C electrocatalysts with low metal loading were synthesized for glycerol electrooxidation in an air breathing microfluidic fuel cell (MFC). The cell performance on Pd-Pt (16:4)/C anode electrocatalyst was found best among all the electrocatalysts tested. The single cell when tested at a temperature of 35 C using Pd-Pt (16:4)/C, showed maximum open circuit voltage (OCV) of 0.70 V and maximum power density ofo2.77 mW/cm at a current density of 7.71 mA/cm . The power density increased 1.45 times when cell temperature was raised from235 C to 752C. The maximum OCV of 0.78 V and the maximum power density of 4.03omW/cm at a current density of 10.47 mA/cmo were observed at the temperature of 75 C. The results of CV sub-stantiate the single cell performance for various operating parameters.2 2 o. © 2021, Korean Electrochemical Society. All rights reserved.
dc.identifier.doihttps://doi.org/10.33961/jecst.2020.01102
dc.identifier.urihttp://172.23.0.11:4000/handle/123456789/11669
dc.relation.ispartofseriesJournal of Electrochemical Science and Technology
dc.titleSynthesis of pd and pt based low cost bimetallic anode electrocatalyst for glycerol electrooxidation in membraneless air breathing microfluidic fuel cell

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