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NbOx-Based Catalysts for the Activation of C-O and C-C Bonds in the Valorization of Waste Carbon Resources

期刊

ACCOUNTS OF CHEMICAL RESEARCH
卷 55, 期 9, 页码 1301-1312

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.accounts.2c00097

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资金

  1. NSFC of China [21832002, 21872050, 21808063, 22102056]
  2. China Postdoctoral Science Foundation [2021M691011, 2021TQ0106]

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The escalating energy demand, depletion of fossil fuels, and abnormal climate change are considered important challenges in the 21st century. Using biomass and plastic as alternatives to fossil fuels is seen as a promising solution to create a carbon-neutral, waste-free society. Catalysis plays a crucial role in energy transformations, particularly in the cleavage of C-O and C-C bonds for producing chemicals and fuels. NbOx-based catalysts have shown exceptional ability in activating these bonds, making them important for biomass valorization and plastic upcycling. This work highlights the significance of understanding the activation of C-O and C-C bonds by NbOx-based catalysts and provides insights into future recommendations in this field.
Escalating energy demand, the depletion of fossil fuels, and abnormal climate change are recognized as the key challenges in the 21st century. The valorization of biomass and plastic, representing the most abundant natural and man-made polymers, respectively, as alternatives to fossil fuel is one of the promising solutions to creating a carbon-neutral, waste-free society. Catalysis is an essential tool for manipulating energy transformations via bond-breaking and bond-forming principles. To producing chemicals and fuels via biomass valorization and plastic upcycling, the cleavage of C-O and C-C bonds is the major catalytic route, given that the two are mainly constructed by various interunit C-O and C-C linkages. In this work, a consensus concerning the catalytic mechanism is reached: the activities for the cleavage of C-O and C-C bonds highly depend on the catalyst ability to activate the C-O and C-C bonds. Among the catalysts reported, NbOx-based catalysts show a unique, superstrong ability to activate C-O and C-C bonds. While research on biomass valorization over NbOx-based catalysts maintains its momentum, plastic upcycling driven by an efficient NbOx-based catalyst capable of activating C-O and C-C bonds is quickly catching up. Therefore, deepening the understanding of NbOx-based catalysts for the activation of C-O and C-C bonds is of importance to further drive biomass valorization and plastic upcycling, even in many other related areas. Herein, we present progress on the activation of C-O and C-C bonds in waste carbon resources, with an emphasis on our own work in using NbOx-based catalysts. First, we introduce NbOx-based catalysts for the activation of C-O and C-C bonds in biomass with a special focus on explaining how NbOx-based catalysts activate C-O and C-C bonds and why NbOx-based catalysts can activate C-O and C-C bonds so efficiently. Then, unified descriptors to embody the abilities to extract O from oxygenated compounds and an adsorbed benzene ring, namely oxygen affinity and benzene ring affinity, were defined to standardize C-O and C-arom-C-aliph activation chemistry. Furthermore, we highlight the emerging opportunities of NbOx-based catalysts for plastic upcycling by learning the wisdom accumulated from the activation of C-O and C-C bonds in biomass. Finally, our own insights into future recommendations in this promising field are provided.

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