Department of Chemical Engineering, Columbia University, New York, NY 10027, USA.
Chem Soc Rev. 2017 Apr 3;46(7):1807-1823. doi: 10.1039/c6cs00862c.
The formation of carbides can significantly modify the physical and chemical properties of the parent metals. In the current review, we summarize the general trends in the reactions of water and C1 molecules over transition metal carbide (TMC) and metal-modified TMC surfaces and thin films. Although the primary focus of the current review is on the theoretical and experimental studies of reactions of C1 molecules (CO, CO, CHOH, etc.), the reactions of water will also be reviewed because water plays an important role in many of the C1 transformation reactions. This review is organized by discussing separately thermal reactions and electrochemical reactions, which provides insights into the application of TMCs in heterogeneous catalysis and electrocatalysis, respectively. In thermal reactions, we discuss the thermal decomposition of water and methanol, as well as the reactions of CO and CO over TMC surfaces. In electrochemical reactions, we summarize recent studies in the hydrogen evolution reaction, electrooxidation of methanol and CO, and electroreduction of CO. Finally, future research opportunities and challenges associated with using TMCs as catalysts and electrocatalysts are also discussed.
碳化物的形成可以显著改变母体金属的物理和化学性质。在本次综述中,我们总结了水和 C1 分子在过渡金属碳化物(TMC)和金属修饰的 TMC 表面和薄膜上反应的一般趋势。尽管当前综述的主要重点是 C1 分子(CO、CO、CHOH 等)反应的理论和实验研究,但也将综述水的反应,因为水在许多 C1 转化反应中起着重要作用。本综述通过分别讨论热反应和电化学反应来组织,这分别为 TMC 在多相催化和电催化中的应用提供了深入的了解。在热反应中,我们讨论了水和甲醇的热分解,以及 CO 和 CO 在 TMC 表面上的反应。在电化学反应中,我们总结了最近关于析氢反应、甲醇和 CO 的电氧化以及 CO 的电还原的研究。最后,还讨论了将 TMC 用作催化剂和电催化剂的未来研究机会和挑战。