Shahzadi Sehar, Akhtar Mariam, Arshad Muhammad, Ijaz Muhammad Hammad, Janjua Muhammad Ramzan Saeed Ashraf
Department of Chemistry, Government College University Faisalabad Faisalabad 38000 Pakistan
School of Chemistry, University of the Punjab, Quaid-i-Azam Campus Lahore 54590 Pakistan.
RSC Adv. 2024 Sep 3;14(38):27575-27607. doi: 10.1039/d4ra05183a. eCollection 2024 Aug 29.
Carbon composites derived from Metal-Organic Frameworks (MOFs) have shown great promise as multipurpose materials for a range of electrochemical and environmental applications. Since carbon-based nanomaterials exhibit intriguing features, they have been widely exploited as catalysts or catalysts supports in the chemical industry or for energy or environmental applications. To improve the catalytic performance of carbon-based materials, high surface areas, variable porosity, and functionalization are thought to be essential. This study offers a thorough summary of the most recent developments in MOF-derived carbon composite synthesis techniques, emphasizing innovative approaches that improve the structural and functional characteristics of the materials. Their uses in electrochemical technologies, such as energy conversion and storage, and their function in environmental electrocatalysis for water splitting and pollutant degradation are also included in the debate. This review seeks to clarify the revolutionary effect of carbon composites formed from MOFs on sustainable technology solutions by analyzing current research trends and innovations, opening the door for further advancements in this rapidly evolving sector.
源自金属有机框架(MOF)的碳复合材料作为一系列电化学和环境应用的多功能材料已展现出巨大潜力。由于碳基纳米材料具有引人关注的特性,它们已在化学工业、能源或环境应用中被广泛用作催化剂或催化剂载体。为提高碳基材料的催化性能,高比表面积、可变孔隙率及功能化被认为至关重要。本研究全面总结了MOF衍生碳复合材料合成技术的最新进展,着重强调了改善材料结构和功能特性的创新方法。讨论内容还包括它们在能量转换和存储等电化学技术中的应用,以及在用于水分解和污染物降解的环境电催化中的作用。本综述旨在通过分析当前的研究趋势和创新成果,阐明由MOF形成的碳复合材料对可持续技术解决方案的变革性影响,为这一快速发展领域的进一步进步打开大门。