Adsorption and activation of small molecules on boron nitride catalysts

Baiyu Miao, Zhihuan Qiu,Ziheng Zhen,Youwei Yang, Zhibo Yang, Tiantian Xiao,Jing Lv,Shouying Huang,Yue Wang,Xinbin Ma

PHYSICAL CHEMISTRY CHEMICAL PHYSICS(2024)

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摘要
Hexagonal boron nitride possesses a unique layered structure, high specific surface area and similar electronic properties as graphene, which makes it not only a promising catalyst support, but also a highly effective metal-free catalyst in the booming field of green chemistry. Reactions involving small molecules (e.g., oxygen, low carbon alkanes, nitrogen and carbon dioxide) have always been a hot topic in catalytic research, especially associated with the adsorption and activation regime of different forms of small molecules on catalysts. In this review, we have investigated the adsorption of different small molecules and the relevant activation mechanisms of four typical chemical bonds (O 00000000 00000000 00000000 00000000 11111111 00000000 11111111 00000000 00000000 00000000 O, C-H, N 00000000000000000 00000000000000000 00000000000000000 01111111111111110 00000000000000000 01111111111111110 00000000000000000 01111111111111110 00000000000000000 00000000000000000 00000000000000000 N, CO) on hexagonal boron nitride. Recent progress on approaches adopted to enhance the activation capacity such as doping, defect engineering and heterostructuring are summarized, highlighting the potential applications of nonmetallic hexagonal boron nitride catalysts in various reactions. This comprehensive investigation offers a reference point for the enhanced mechanistic understanding and future design of effective and sustainable catalytic systems based on boron nitride. Reviewing adsorption and activation regimes of typical small molecules on h-BN and strategies to enhance activation capacity and catalytic performance.
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