Akin Merve, El Attar Anas, Bayat Ramazan, Bekmezci Muhammed, Bouljoihel Badr, El Rhazi Mama, Sen Fatih
Sen Research Group, Department of Biochemistry, Dumlupinar University Kutahya Türkiye
Department of Materials Science & Engineering, Faculty of Engineering, Dumlupinar University Kutahya Türkiye.
Nanoscale Adv. 2024 Sep 16;6(22):5654-62. doi: 10.1039/d4na00274a.
In this study, trimetallic PtNiCo/MWCNT and PtNiCo catalysts were synthesized using a microwave method to reduce the amount of precious Pt. The prepared catalysts were characterized using XRD, TEM, and EDX mapping and their electrochemical performances for methanol oxidation were investigated. The results showed that the MWCNT-supported catalyst showed 2.42 times higher electrochemical activity than the PtNiCo catalyst with a peak current density of 283.14 mA cm at -0.2 V potential. Moreover, in long-term stability tests, it exhibited high stability and 4.97 times higher current density at the end of 3600 s. The results showed that the MWCNT-supported catalyst offered improved electron transfer, 4.7 times higher surface area, and resistance to CO poisoning. These performance improvements due to the trimetallic structure are mostly thought to help accelerate the dehydrogenation of methanol. This study contains important findings for future functional catalyst design in the fields of catalysis and energy conversion.
在本研究中,采用微波法合成了三金属PtNiCo/MWCNT和PtNiCo催化剂,以减少贵金属Pt的用量。使用XRD、TEM和EDX映射对制备的催化剂进行了表征,并研究了它们对甲醇氧化的电化学性能。结果表明,MWCNT负载的催化剂在-0.2 V电位下的峰值电流密度为283.14 mA cm,其电化学活性比PtNiCo催化剂高2.42倍。此外,在长期稳定性测试中,它表现出高稳定性,在3600 s结束时电流密度高4.97倍。结果表明,MWCNT负载的催化剂具有改善的电子转移、高4.7倍的表面积和抗CO中毒性能。由于三金属结构导致的这些性能改善大多被认为有助于加速甲醇的脱氢反应。这项研究包含了对催化和能量转换领域未来功能催化剂设计的重要发现。