Abutaleb Ahmed, Maafa Ibrahim M, Zouli Nasser, Yousef Ayman, El-Halwany M M
Department of Chemical Engineering, College of Engineering, Jazan University, Jazan 45142, Saudi Arabia.
Department of Mathematics and Physics Engineering, College of Engineering in Matteria, Helwan University, Cairo 11718, Egypt.
Polymers (Basel). 2023 Jan 24;15(3):597. doi: 10.3390/polym15030597.
Metallic Co NPs@poly(vinylidene fluoride-co- hexafluoropropylene) nanofibers (PVFH NFs) were successfully synthesized with the help of electrospinning and in situ reduction of Co ions onto the surface of PVFH membrane. Synthesis of PVFH NFs containing 10, 20, 30, and 40 wt% of cobalt acetate tetrahydrate was achieved. Physiochemical techniques were used to confirm the formation of metallic Co@PVFH NFs. High catalytic activity of Co@PVFH NFs in the dehydrogenation sodium borohydride (SBH) was demonstrated. The formulation with 40 wt% Co proved to have the greatest performance in comparison to the others. Using 1 mmol of SBH and 100 mg of Co@PVFH NFs, 110 mL of H was produced in 19 min at a temperature of 25 °C, but only 56, 73, and 89 mL were produced using 10, 20, and 30 wt% Co, respectively. With the rise of catalyst concentration and reaction temperature, the amount of hydrogen generated increased. By raising the temperature from 25 to 55 °C, the activation energy was lowered to be 35.21 kJ mol and the yield of H generation was raised to 100% in only 6 min. The kinetic study demonstrated that the reaction was pseudo-first order in terms of the amount of catalyst utilized and pseudo-zero order in terms of the SBH concentration. In addition, after six cycles of hydrolysis, the catalyst showed outstanding stability. The suggested catalyst has potential applications in H generation through hydrolysis of sodium borohydride due to its high catalytic activity and flexibility of recycling.
通过静电纺丝以及将钴离子原位还原到聚偏氟乙烯 - 六氟丙烯(PVFH)膜表面,成功合成了金属钴纳米颗粒@聚偏氟乙烯 - 六氟丙烯纳米纤维(PVFH NFs)。实现了含有10%、20%、30%和40%(重量)四水合醋酸钴的PVFH NFs的合成。采用物理化学技术确认了金属钴@PVFH NFs的形成。证明了钴@PVFH NFs在硼氢化钠(SBH)脱氢反应中具有高催化活性。与其他配方相比,含40%(重量)钴的配方表现出最佳性能。使用1 mmol的SBH和100 mg的钴@PVFH NFs,在25℃下19分钟内产生了110 mL的氢气,但使用10%、20%和30%(重量)钴时分别仅产生了56 mL、73 mL和89 mL。随着催化剂浓度和反应温度的升高,氢气生成量增加。将温度从25℃提高到55℃,活化能降低至35.21 kJ/mol,并且仅在6分钟内氢气生成产率就提高到了100%。动力学研究表明,该反应对于所使用的催化剂量而言为拟一级反应,对于SBH浓度而言为拟零级反应。此外,经过六次水解循环后,该催化剂表现出出色的稳定性。由于其高催化活性和回收灵活性,所提出的催化剂在通过硼氢化钠水解制氢方面具有潜在应用。