Herranz Daniel, Coppola Roxana E, Escudero-Cid Ricardo, Ochoa-Romero Kerly, D'Accorso Norma B, Pérez-Flores Juan Carlos, Canales-Vázquez Jesús, Palacio Carlos, Abuin Graciela C, Ocón Pilar
Departamento de Química Física Aplicada, Universidad Autónoma de Madrid, C/Francisco Tomás y Valiente 7, 28049 Madrid, Spain.
Instituto Nacional de Tecnología Industrial (INTI), Departamento de Almacenamiento de Energía, Av. General Paz 5445, San Martín B1650KNA, Argentina.
Membranes (Basel). 2020 Nov 17;10(11):349. doi: 10.3390/membranes10110349.
Crosslinked membranes have been synthesized by a casting process using polybenzimidazole (PBI) and poly(vinyl benzyl chloride) (PVBC). The membranes were quaternized with 1,4-diazabicyclo[2.2.2]octane (DABCO) to obtain fixed positive quaternary ammonium groups. XPS analysis has showed insights into the changes from crosslinked to quaternized membranes, demonstrating that the crosslinking reaction and the incorporation of DABCO have occurred, while the C-NMR corroborates the reaction of DABCO with PVBC only by one nitrogen atom. Mechanical properties were evaluated, obtaining maximum stress values around 72 MPa and 40 MPa for crosslinked and quaternized membranes, respectively. Resistance to oxidative media was also satisfactory and the membranes were evaluated in single direct ethanol fuel cell. PBI-c-PVBC/OH 1:2 membrane obtained 66 mW cm peak power density, 25% higher than commercial PBI membranes, using 0.5 bar backpressure of pure O in the cathode and 1 mL min KOH 2M EtOH 2 M aqueous solution in the anode. When the pressure was increased, the best performance was obtained by the same membrane, reaching 70 mW cm peak power density at 2 bar O backpressure. Based on the characterization and single cell performance, PBI-c-PVBC/OH membranes are considered promising candidates as anion exchange electrolytes for direct ethanol fuel cells.
通过使用聚苯并咪唑(PBI)和聚(乙烯基苄基氯)(PVBC)的流延工艺合成了交联膜。用1,4 - 二氮杂双环[2.2.2]辛烷(DABCO)对膜进行季铵化,以获得固定的正季铵基团。XPS分析揭示了从交联膜到季铵化膜的变化,表明发生了交联反应和DABCO的掺入,而C - NMR仅证实了DABCO与PVBC仅通过一个氮原子发生反应。对机械性能进行了评估,交联膜和季铵化膜的最大应力值分别约为72 MPa和40 MPa。对氧化介质的耐受性也令人满意,并在单直接乙醇燃料电池中对膜进行了评估。使用阴极中0.5 bar纯O的背压和阳极中1 mL min KOH 2M EtOH 2 M水溶液时,PBI - c - PVBC/OH 1:2膜获得了66 mW cm的峰值功率密度,比商业PBI膜高25%。当压力增加时,同一膜获得了最佳性能,在2 bar O背压下达到70 mW cm的峰值功率密度。基于表征和单电池性能,PBI - c - PVBC/OH膜被认为是直接乙醇燃料电池中阴离子交换电解质的有前途的候选材料。