Zhang Qiang, Yu Jihong, Corma Avelino
State Key Laboratory of Inorganic Synthesis and Preparative Chemistry, College of Chemistry, Jilin University, 2699 Qianjin Street, Changchun, 130012, P. R. China.
Instituto de Tecnología Química, Universitat Politècnica de València-Consejo Superior de Investigaciones Científicas, Avenida de los Naranjos s/n, València, 46022, Spain.
Adv Mater. 2020 Nov;32(44):e2002927. doi: 10.1002/adma.202002927. Epub 2020 Jul 22.
C1 chemistry, which is the catalytic transformation of C1 molecules including CO, CO , CH , CH OH, and HCOOH, plays an important role in providing energy and chemical supplies while meeting environmental requirements. Zeolites are highly efficient solid catalysts used in the chemical industry. The design and development of zeolite-based mono-, bi-, and multifunctional catalysts has led to a booming application of zeolite-based catalysts to C1 chemistry. Combining the advantages of zeolites and metallic catalytic species has promoted the catalytic production of various hydrocarbons (e.g., methane, light olefins, aromatics, and liquid fuels) and oxygenates (e.g., methanol, dimethyl ether, formic acid, and higher alcohols) from C1 molecules. The key zeolite descriptors that influence catalytic performance, such as framework topologies, nanoconfinement effects, Brønsted acidities, secondary-pore systems, particle sizes, extraframework cations and atoms, hydrophobicity and hydrophilicity, and proximity between acid and metallic sites are discussed to provide a deep understanding of the significance of zeolites to C1 chemistry. An outlook regarding challenges and opportunities for the conversion of C1 resources using zeolite-based catalysts to meet emerging energy and environmental demands is also presented.
C1化学是指包括CO、CO₂、CH₄、CH₃OH和HCOOH在内的C1分子的催化转化,在满足环境要求的同时,为提供能源和化学原料发挥着重要作用。沸石是化学工业中使用的高效固体催化剂。基于沸石的单功能、双功能和多功能催化剂的设计与开发,使得基于沸石的催化剂在C1化学中的应用蓬勃发展。结合沸石和金属催化物种的优点,促进了由C1分子催化生产各种碳氢化合物(如甲烷、轻质烯烃、芳烃和液体燃料)和含氧化合物(如甲醇、二甲醚、甲酸和高级醇)。讨论了影响催化性能的关键沸石描述符,如骨架拓扑结构、纳米限域效应、布朗斯台德酸度、二次孔系统、颗粒尺寸、骨架外阳离子和原子、疏水性和亲水性以及酸位与金属位之间的距离,以深入理解沸石对C1化学的重要性。还展望了使用基于沸石的催化剂转化C1资源以满足新出现的能源和环境需求所面临的挑战和机遇。