材料科学
氢
催化作用
能量载体
纳米技术
有机化学
化学
作者
Min‐Jie Zhou,Yulong Miao,Yanwei Gu,Yinjun Xie
标识
DOI:10.1002/adma.202311355
摘要
Abstract Liquid organic hydrogen carriers (LOHCs) have gained significant attention for large‐scale hydrogen storage due to their remarkable gravimetric hydrogen storage capacity (HSC) and compatibility with existing oil and gas transportation networks for long‐distance transport. However, the practical application of reversible LOHC systems has been constrained by the intrinsic thermodynamic properties of hydrogen carriers and the performances of associated catalysts in the (de)hydrogenation cycles. To overcome these challenges, thermodynamically favored carriers, high‐performance catalysts, and catalytic procedures need to be developed. Here, significant advances in recent years have been summarized, primarily centered on regular LOHC systems catalyzed by homogeneous and heterogeneous catalysts, including dehydrogenative aromatization of cycloalkanes to arenes and N ‐heterocyclics to N ‐heteroarenes, as well as reverse hydrogenation processes. Furthermore, with the development of metal complexes for dehydrogenative coupling, a new family of reversible LOHC systems based on alcohols is described that can release H 2 under relatively mild conditions. Finally, views on the next steps and challenges in the field of LOHC technology are provided, emphasizing new resources for low‐cost hydrogen carriers, high‐performance catalysts, catalytic technologies, and application scenarios.
科研通智能强力驱动
Strongly Powered by AbleSci AI