Nagappan Saravanan, Duraivel Malarkodi, Han SeongHoon, Yusuf Mohammad, Mahadadalkar Manjiri, Park KyeongMun, Dhakshinamoorthy Amarajothi, Prabakar Kandasamy, Park Sungkyun, Ha Chang-Sik, Lee Jae-Myung, Park Kang Hyun
Department of Chemistry, Chemistry Institute for Functional Materials, Pusan National University, 2 Busandaehak-ro 63beon-gil, Geumjeong-gu, Busan 46241, Republic of Korea.
Department of Electrical Engineering, Pusan National University, 2 Busandaehak-ro 63beon-gil, Geumjeong-gu, Busan 46241, Republic of Korea.
Nanomaterials (Basel). 2023 Apr 8;13(8):1315. doi: 10.3390/nano13081315.
Graphene is a well-known two-dimensional material with a large surface area and is used for numerous applications in a variety of fields. Metal-free carbon materials such as graphene-based materials are widely used as an electrocatalyst for oxygen reduction reactions (ORRs). Recently, more attention has been paid to developing metal-free graphenes doped with heteroatoms such as N, S, and P as efficient electrocatalysts for ORR. In contrast, we found our prepared graphene from graphene oxide (GO) by the pyrolysis method under a nitrogen atmosphere at 900 °C has shown better ORR activity in aqueous 0.1 M potassium hydroxide solution electrolyte as compared with the electrocatalytic activity of pristine GO. At first, we prepared various graphene by pyrolysis of 50 mg and 100 mg of GO in one to three alumina boats and pyrolyzed the samples under a N atmosphere at 900 °C. The prepared samples are named G50-1B to 3B and G100-1B and G100-2B. The prepared GO and graphenes were also analyzed under various characterization techniques to confirm their morphology and structural integrity. The obtained results suggest that the ORR electrocatalytic activity of graphene may differ based on the pyrolysis conditions. We found that G100-1B (E, E, J, and values of 0.843, 0.774, 4.558, and 3.76) and G100-2B (E, E, and J values of 0.837, 0.737, 4.544, and 3.41) displayed better electrocatalytic ORR activity, as did Pt/C electrode (E, E, and J values of 0.965, 0.864, 5.222, and 3.71, respectively). These results display the wide use of the prepared graphene for ORR and also can be used for fuel cell and metal-air battery applications.
石墨烯是一种著名的二维材料,具有较大的表面积,在多个领域有众多应用。诸如基于石墨烯的材料等无金属碳材料被广泛用作氧还原反应(ORR)的电催化剂。近来,人们更加关注开发掺杂有氮、硫和磷等杂原子的无金属石墨烯,将其作为ORR的高效电催化剂。相比之下,我们发现通过在900℃氮气气氛下热解氧化石墨烯(GO)制备的石墨烯,与原始GO的电催化活性相比,在0.1M氢氧化钾水溶液电解质中表现出更好的ORR活性。首先,我们在一到三个氧化铝舟中热解50mg和100mg的GO制备了各种石墨烯,并在900℃的氮气气氛下热解样品。制备的样品命名为G50 - 1B至3B以及G100 - 1B和G100 - 2B。还通过各种表征技术对制备的GO和石墨烯进行了分析,以确认它们的形态和结构完整性。所得结果表明石墨烯的ORR电催化活性可能因热解条件而异。我们发现G100 - 1B(E、E、J和值分别为0.843、0.774、4.558和3.76)和G100 - 2B(E、E和J值分别为0.837、0.737、4.544和3.41)表现出更好的电催化ORR活性,Pt/C电极(E、E和J值分别为0.965、0.864、5.222和3.71)也是如此。这些结果表明制备的石墨烯在ORR方面有广泛应用,也可用于燃料电池和金属空气电池应用。