Pandit Manzoor Ahmad, Yuan Jingwei, Nazir Roshan, Dong Yubing, Li Qianqian
Materials Genome Institute of Shanghai University, Shanghai 200444, China.
Department of Materials Science and Engineering, Zhejiang Sci-Tech University, Hangzhou, 310018, China.
Chem Commun (Camb). 2025 Feb 6;61(13):2602-2626. doi: 10.1039/d4cc05868b.
The development and generation of affordable and highly efficient energy, particularly hydrogen, are one of the best approaches to address the challenges posed by the depletion of non-renewable energy sources. Hydrogen energy, as a green and ecosystem-friendly source with zero carbon emission, can be generated through various methods, including water splitting (HER/OER) either photo- or electrocatalytic reactions. To implement these reactions effectively in practical applications, it is highly desirable to develop extremely efficient and cost-effective catalytic materials that are comparable to contemporary catalysts. MXenes, a family of newly discovered 2D transition metal carbides, nitrides, or carbonitrides with surface termination groups, such as -OH, -O, and -F, have emerged as promising materials and substrates for photo- and electrocatalytic applications due to their unique characteristics. These include excellent conductivity provided by the transition metals, hydrophilic nature imparted by the surface termination groups, high mechanical stability, fast electronic transmission and extremely high surface area-to-volume ratios. In this review, we provide detailed insights into the synthesis, properties, and catalytic applications of MXenes. We systematically outline the photo- and electrocatalytic water splitting reactions carried out by various MXene-based heterostructures, supported by experimental data. A thorough deliberation on the structure-activity associations of reported catalysts and a basic understanding of the electrocatalytic applications of MXenes are also included. Furthermore, we offer an insight into the upcoming tasks, challenges, prospects and new research strategies for MXenes in water splitting applications. A noteworthy recognition of the design and optimization of extremely efficient MXene-based catalysts in water splitting applications is therefore offered in this review.
开发和生产经济高效的能源,特别是氢能,是应对不可再生能源枯竭所带来挑战的最佳途径之一。氢能作为一种绿色且生态友好、零碳排放的能源,可以通过多种方法产生,包括光催化或电催化反应的水分解(析氢反应/析氧反应)。为了在实际应用中有效实现这些反应,迫切需要开发出与当代催化剂相当的极其高效且具有成本效益的催化材料。MXenes是一类新发现的二维过渡金属碳化物、氮化物或碳氮化物,带有诸如-OH、-O和-F等表面端基,由于其独特的特性,已成为光催化和电催化应用中有前景的材料和基底。这些特性包括过渡金属提供的优异导电性、表面端基赋予的亲水性、高机械稳定性、快速的电子传输以及极高的表面积与体积比。在本综述中,我们详细介绍了MXenes的合成、性质和催化应用。我们通过实验数据系统地概述了各种基于MXene的异质结构所进行的光催化和电催化水分解反应。还包括对已报道催化剂的结构-活性关联进行深入探讨以及对MXenes电催化应用的基本理解。此外,我们还对MXenes在水分解应用中的未来任务、挑战、前景和新研究策略进行了展望。因此,本综述着重介绍了在水分解应用中设计和优化极其高效的基于MXene的催化剂。