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首页> 外文期刊>ACS nano >AA'-Stacked Trilayer Hexagonal Boron Nitride Membrane for Proton Exchange Membrane Fuel Cells
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AA'-Stacked Trilayer Hexagonal Boron Nitride Membrane for Proton Exchange Membrane Fuel Cells

机译:用于质子交换膜燃料电池的AA'堆叠三层六角形氮化物膜

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摘要

Hexagonal boron nitride (h-BN) and graphene have emerged as promising materials for proton exchange membranes because of their high proton conductivity and chemical stability. However, the defects and grain boundaries generated during the growth and transfer of two-dimensional materials limit their practical applicability. Here, we report the fabrication of membrane electrode assemblies using large-area single-oriented AA'-stacked trilayer h-BN (3L-BN), which exhibits very few defects during the growth and transfer, as a proton exchange membrane for use in fuel cell systems. The fuel cell based on AA'-stacked 3L-BN showed a H-2 permeation current density as low as 2.69 mA cm(-2) and an open circuit voltage (OCV) as high as 0.958 V; this performance is much superior to those for cells based on Nafion (3.7 mA cm(-2) and 0.942 V, respectively) and single-layer h-BN (10.08 mA cm(-2) and 0.894 V, respectively). Furthermore, the fuel cell with the AA'-stacked 3L-BN membrane almost maintained its original performance (OCV, maximum power density, and H2 permeation current density) even after 100 h of an accelerated stress test at 30% RH and 90 degrees C, while the fuel cells with the Nafion and single-layer BN membranes exhibited severely deteriorated performances. The stability of the cell based on the AA'-stacked 3L-BN membrane was better because the membrane prevented gas crossover and suppressed the generation of reactive radicals during cell operation.
机译:由于其高质子电导率和化学稳定性,六边形氮化硼(H-BN)和石墨烯作为质子交换膜的有希望的材料。然而,在二维材料的生长和转移期间产生的缺陷和晶界限于其实际适用性。在这里,我们使用大面积的单面Aa'堆叠三层H-Bn(3L-Bn)报告膜电极组件的制造,其在生长和转移期间表现出极少的缺陷,作为用于用于用于使用的质子交换膜燃料电池系统。基于AA'堆叠的3L-BN的燃料电池显示出低至2.69 mA cm(-2)的H-2渗透电流密度,以及高达0.958 V的开路电压(OCV);这种性能与基于Nafion的细胞(分别为3.7 mA cm(-2)和0.942V)和单层H-BN(10.08 mA cm(-2)和0.894V)的细胞。此外,即使在30%RH的加速应力测试100小时后,具有AA'堆叠的3L-BN膜的燃料电池几乎保持其原始性能(OCV,最大功率密度和H2渗漏电流密度),并且在30%RH和90摄氏度下,虽然具有Nafion和单层BN膜的燃料电池表现出严重劣化的性能。基于AA堆叠的3L-BN膜的细胞的稳定性更好,因为膜防止了气体交叉并抑制了细胞操作期间的活性自由基的产生。

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