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首页> 外文期刊>ACS catalysis >Biomass-Derived Air Cathode Materials: Pore-Controlled S,N-Co-doped Carbon for Fuel Cells and Metal-Air Batteries
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Biomass-Derived Air Cathode Materials: Pore-Controlled S,N-Co-doped Carbon for Fuel Cells and Metal-Air Batteries

机译:生物质衍生的空气阴极材料:孔控制的S,N-共掺杂碳,用于燃料电池和金属 - 空气电池

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摘要

An earth-abundant and feasible air cathode electrocatalyst is of importance for energy devices including fuel cells and metal-air batteries. Herein, hierarchically porous S,N-co-doped carbon materials derived from bamboo are prepared via pyrolysis of bamboo and thiourea to function as oxygen reduction reaction electrocatalysts. Due to their controlled mesopore ratio and increased effective dopant amount, the S,N-co-doped bamboo carbons (SNBCs) present half-wave potentials and stabilities comparable to those of commercial Pt/C catalysts. As cathode materials for anion exchange membrane fuel cells and Zn-air batteries, SNBCs exhibit high performances, attributed to their intrinsic activities as well as well-developed secondary pore structure in the catalyst layer. Thus, we demonstrate the viability of biomass-derived catalysts for practical energy applications.
机译:地球丰富和可行的空气阴极电催化剂对于包括燃料电池和金属电池的能量装置非常重要。 这里,通过竹子和硫脲的热解制备衍生自竹子的分层多孔的N-共掺杂碳材料,以用作氧还原反应电催化剂。 由于它们受到控制的中孔比和增加有效的掺杂剂量,S,N-共掺杂的竹炭(SNBC)具有与商业Pt / C催化剂的半波电位和稳定性。 作为阴离子交换膜燃料电池和Zn-Air电池的阴极材料,SNBCs表现出高性能,归因于其本质活动以及催化剂层中发育良好的次孔结构。 因此,我们证明了生物质衍生的催化剂的可生存能力,用于实际能量应用。

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