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Direct carbon fuel cells (DCFCs) are highly efficient power generators fueled by abundant and cheap solid carbons. However, the limited triple‐phase boundaries (TPBs) in the fuel electrode, due to the lack of direct contact among carbon, electrode, and electrolyte, inhibit the performance and result in poor fuel utilization. To address the challenges of low carbon oxidation activity and low carbon...
In article number 1704745, Dong Ding, Ting He, and co‐workers from Idaho National Laboratory report a novel 3D architectured anode for direct carbon fuel cells (DCFCs), to allow a solid carbon fuel composite to penetrate and approach the interface of the electrolyte/electrode. This leads to high fuel utilization and excellent performance at 600 °C and below, owing to the direct electrochemical oxidation...
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