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功能化碳氮化物光催化剂在生物质衍生原料光重整为氢气、生物燃料或化学品方面的最新进展和挑战。

Recent Advances and Challenges in Photoreforming of Biomass-Derived Feedstocks into Hydrogen, Biofuels, or Chemicals by Using Functional Carbon Nitride Photocatalysts.

机构信息

Liaoning Key Laboratory of Lignocellulosic Chemistry and Biomaterials, Dalian Polytechnic University, Dalian, 116034, P. R. China.

State Key Laboratory of Biobased Material and Green Papermaking, Qilu University of Technology, Jinan, 250353, P. R. China.

出版信息

ChemSusChem. 2021 Nov 19;14(22):4903-4922. doi: 10.1002/cssc.202101173. Epub 2021 Oct 12.

Abstract

Photoreforming of biomass into hydrogen, biofuels, and chemicals is highly desired, yet this field of research is still in its infancy. Developing an efficient, novel, and environmentally friendly photocatalyst is key to achieving these goals. To date, the nonmetallic and eco-friendly material carbon nitride has found many uses in reactions such as water splitting, CO reduction, N fixation, and biorefinery, owing to its outstanding photocatalytic activity. However, a narrow light absorption range and fast charge recombination are often encountered in the pristine carbon nitride photocatalytic system, which resulted in unsatisfying photocatalytic activity. To improve the photocatalytic performance of pure carbon nitride in biomass reforming, modification is needed. In this Review, the design and preparation of functional carbon nitride, as well as its photocatalytic properties for the synthesis of hydrogen, biofuels, and chemicals through biomass reforming, are discussed alongside potential avenues for its future development.

摘要

将生物质光转化为氢气、生物燃料和化学品是人们非常期望的,但该研究领域仍处于起步阶段。开发高效、新颖且环保的光催化剂是实现这些目标的关键。迄今为止,由于其出色的光催化活性,非金属且环保的材料氮化碳在水分解、CO 还原、N 固定和生物炼制等反应中得到了广泛应用。然而,在原始氮化碳光催化体系中,常常会遇到光吸收范围较窄和快速电荷复合的问题,这导致光催化活性不尽人意。为了提高纯氮化碳在生物质重整中的光催化性能,需要进行改性。在这篇综述中,讨论了功能化氮化碳的设计和制备,以及其通过生物质重整合成氢气、生物燃料和化学品的光催化性能,并探讨了其未来发展的潜在途径。

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