Beijing National Laboratory for Molecular Sciences (BNLMS), CAS Research/Education Center for Excellence in Molecular Sciences, CAS Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100190, P. R. China.
Institute of Process Engineering, Chinese Academy of Sciences, Beijing, 100190, P. R. China.
Adv Mater. 2019 Mar;31(13):e1803762. doi: 10.1002/adma.201803762. Epub 2018 Sep 27.
The development of carbon materials offers the hope for obtaining inexpensive and high-performance alternatives to substitute noble-metal catalysts for their sustainable application. Graphdiyne, the rising-star carbon allotrope, is a big family with many members, and first realized the coexistence of sp- and sp -hybridized carbon atoms in a 2D planar structure. Different from the prevailing carbon materials, its nonuniform distribution in the electronic structure and wide tunability in bandgap show many possibilities and special inspirations to construct new-concept metal-free catalysts, and provide many opportunities for achieving a catalytic activity comparable with that of noble-metal catalysts. Herein, the recent progress in synthetic methodologies, theoretical predictions, and experimental investigations of graphdiyne for metal-free catalysts is systematically summarized. Some new perspectives of the opportunities and challenges in developing high-performance graphdiyne-based metal-free catalysts are demonstrated.
碳材料的发展为获得廉价且高性能的替代贵金属催化剂提供了希望,以实现其可持续应用。作为新兴的碳同素异形体,石墨炔是一个拥有众多成员的大家族,首次在二维平面结构中实现了 sp 和 sp 杂化碳原子的共存。与传统的碳材料不同,其电子结构中非均匀分布和带隙的广泛可调性为构建新概念的无金属催化剂提供了许多可能性和特殊启示,并为实现可与贵金属催化剂相媲美的催化活性提供了许多机会。本文系统总结了石墨炔作为无金属催化剂在合成方法、理论预测和实验研究方面的最新进展。展示了开发高性能基于石墨炔的无金属催化剂的机遇和挑战的一些新观点。