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N- and S-doped mesoporous carbon as metal-free cathode catalysts for direct biorenewable alcohol fuel cells

机译:N-和S掺杂的介孔碳作为无金属阴极催化剂,用于直接生物生物性酒精燃料电池

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摘要

Nitrogen and sulfur were simultaneously doped into the framework of mesoporous CMK-3 as metal-free catalysts for direct biorenewable alcohol fuel cells. Glucose, NH3, and thiophene were used as carbon, nitrogen and sulfur precursors, respectively, to prepare mesoporous N-S-CMK-3 with uniform mesopores and extra macropores, resulting in good O2 diffusion both in half cell and alcohol fuel cell investigations. Among all investigated CMK-3 based catalysts, N-S-CMK-3 prepared at 800 °C exhibited the highest ORR activity with the onset potential of 0.92 V vs. RHE, Tafel slope of 68 mV dec−1, and 3.96 electron transfer number per oxygen molecule in 0.1 M KOH. The alkaline membrane-based direct alcohol fuel cell (DAFC) with N-S-CMK-3 cathode displayed 88.2 mW cm−2 peak power density without obvious O2 diffusion issue, reaching 84% initial performance of that with a Pt/C cathode. The high catalyst durability and fuel-crossover tolerance led to stable performance of the N-S-CMK-3 cathode DAFC with 90.6 mW cm−2 peak power density after 2 h operation, while the Pt/C cathode-based DAFC lost 36.9% of its peak power density. The high ORR activity of N-S-CMK-3 can be attributed to the synergistic effect between graphitic-N and S (C–S–C structure), suggesting great potential to use N-S-CMK-3 as an alternative to noble metal catalysts in the fuel cell cathode.
机译:将氮和硫同时掺杂到中孔CMK-3的框架中,作为用于直接生物性酒精燃料电池的无金属催化剂。葡萄糖,NH 3和噻吩分别用作碳,氮和硫前体,以制备具有均匀的中孔和额外宏孔的中孔N-S-CMK-3,导致半细胞和酒精燃料电池研究中的良好O2扩散。在所有研究的CMK-3催化剂中,在800℃下制备的NS-CMK-3表现出最高ORR活性,并开始潜力为0.92V与RHE,TAFEL斜率为68mV-1,3.96电子转移数氧分子在0.1M KOH中。碱性膜的直接酒精燃料电池(DAFC)具有N-S-CMK-3阴极,显示88.2MWCM-2峰值功率密度,无明显O2扩散问题,达到84%的初始性能,具有PT / C阴极。高催化剂耐久性和燃料交叉耐受性导致NS-CMK-3阴极DAFC的稳定性能具有90.6mW CM-2峰值功率密度在2小时后进行操作,而PT / C阴极的DAFC损失了36.9%峰值功率密度。 NS-CMK-3的高ORR活性可归因于石墨-N和S(C-S-C结构)之间的协同效应,表明使用NS-CMK-3作为贵金属催化剂的替代潜力燃料电池阴极。

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