Khalifa Randa E, Omer Ahmed M, Abd Elmageed Mohamed H, Mohy Eldin Mohamed S
Polymer Materials Research Department, Advanced Technologies and New Materials Research Institute (ATNMRI), City of Scientific Research and Technological Applications (SRTA-City), New Borg El-Arab City, P.O. Box 21934, Alexandria 21934, Egypt.
Chemical Engineering Department, Faculty of Engineering, Alexandria University, Alexandria 21544, Egypt.
ACS Omega. 2021 Jul 1;6(27):17194-17202. doi: 10.1021/acsomega.1c00568. eCollection 2021 Jul 13.
This study intends to provide new TiO/phosphorous-functionalized cellulose acetate (Ph-CA) nanocomposite membranes for direct methanol fuel cells (DMFCs). A series of TiO/Ph-CA membranes were fabricated via solution casting technique using a systematic variation of TiO nanoparticle content. Chemical structure, morphological changes, and thermal properties of the as-fabricated nanocomposite membranes were investigated by FTIR, TGA, SEM, and AFM analysis tools. Further, membranes' performance, mechanical properties, water uptake, thermal-oxidative stability, and methanol permeability were also evaluated. The results clarified that the ion-exchange capacity (IEC) of the developed nanocomposite membranes improved and reached a maximum value of 1.13 and 2.01 m/g at 25 and 80 °C, respectively, using TiO loading of 5 wt % compared to 0.6 and 0.81 m/g for pristine Ph-CA membrane at the same temperature. Moreover, the TiO/Ph-CA nanocomposite exhibited excellent thermal stability with appreciable mechanical properties (49.9 MPa). The developed membranes displayed a lower methanol permeability of 0.98 × 10 cm s compared to 1.14 × 10 cm s for Nafion 117. The obtained results suggested that the developed nanocomposite membranes could be potentially applied as promising polyelectrolyte membranes for possible use in DMFCs.
本研究旨在为直接甲醇燃料电池(DMFC)提供新型的二氧化钛/磷功能化醋酸纤维素(Ph-CA)纳米复合膜。通过溶液浇铸技术,利用二氧化钛纳米颗粒含量的系统变化制备了一系列二氧化钛/Ph-CA膜。采用傅里叶变换红外光谱(FTIR)、热重分析(TGA)、扫描电子显微镜(SEM)和原子力显微镜(AFM)分析工具,对所制备的纳米复合膜的化学结构、形态变化和热性能进行了研究。此外,还对膜的性能、机械性能、吸水率、热氧化稳定性和甲醇渗透性进行了评估。结果表明,与原始Ph-CA膜在相同温度下的0.6和0.81 m/g相比,所制备的纳米复合膜的离子交换容量(IEC)有所提高,在25和80℃下,二氧化钛负载量为5 wt%时分别达到了1.13和2.01 m/g的最大值。此外,二氧化钛/Ph-CA纳米复合材料表现出优异的热稳定性和可观的机械性能(49.9 MPa)。与Nafion 117的1.14×10 cm s相比,所制备的膜的甲醇渗透率较低,为0.98×10 cm s。所得结果表明,所制备的纳米复合膜有可能作为有前景的聚电解质膜应用于DMFC。