光热治疗
材料科学
纳米颗粒
钴
合理设计
碳纤维
纳米技术
化学工程
兴奋剂
复合材料
冶金
光电子学
复合数
工程类
作者
Jun Ma,Jing Yu,Guangyu Chen,Yu Bai,Shengkun Liu,Yangguang Hu,Mohammad Al‐Mamun,Yu Wang,Wanbing Gong,Dong Liu,Yafei Li,Ran Long,Huijun Zhao,Yujie Xiong
标识
DOI:10.1002/adma.202302537
摘要
Photothermal CO2 hydrogenation to high-value-added chemicals and fuels is an appealing approach to alleviate energy and environmental concerns. However, it still relies on the development of earth-abundant, efficient, and durable catalysts. Here, the design of N-doped carbon-coated Co nanoparticles (NPs), as a photothermal catalyst, synthesized through a two-step pyrolysis of Co-based ZIF-67 precursor, is reported. Consequently, the catalyst exhibits remarkable activity and stability for photothermal CO2 hydrogenation to CO with a 0.75 mol gcat-1 h-1 CO production rate under the full spectrum of light illumination. The high activity and durability of these Co NPs are mainly attributed to the synergy of the attuned size of Co NPs, the thickness of carbon layers, and the N doping species. Impressively, the experimental characterizations and theoretical simulations show that such a simple N-doped carbon coating strategy can effectively facilitate the desorption of generated CO and activation of reactants due to the strong photothermal effect. This work provides a simple and efficient route for the preparation of highly active and durable nonprecious metal catalysts for promising photothermal catalytic reactions.
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