Chu Sheng, Shao Jingjing, Qu Hongyu, Wang Xintie, Xiao Rui, Zhang Huiyan
Key Laboratory of Energy Thermal Conversion and Control of Ministry of Education, School of Energy and Environment, Southeast University, Nanjing, 210096, China.
ChemSusChem. 2023 Oct 6;16(19):e202300886. doi: 10.1002/cssc.202300886. Epub 2023 Aug 16.
Solar-driven high-value utilization of biomass and its derivatives has attracted tremendous attention in replacing fossil sources to generate chemicals. Developing high-performance photocatalysts to selectively catalyze bio-platform molecules remains a challenge. Herein, biomass-based 5-hydroxymethylfurfural (HMF) was efficiently and selectively photooxidized to 2, 5-diformylfuran (DFF) using a metal-free polyimide (PI). PI with moderate photooxidation capacity delivered high DFF selectivity of 91 % and high apparent quantum efficiency of 1.13 %, nearly 7 times higher than that of graphitic carbon nitride. Experimental measurements and theoretical calculations revealed that the band structure and photooxidation capability of PI can be continuously modulated by varying the molar ratio of amine and anhydride. Mechanism analysis depicted that holes and superoxide radicals play crucial roles in the efficient photooxidation of HMF to DFF. This work provides guidance on designing efficient polymeric photocatalysts for oxidating biomass and its derivatives to value-added chemicals.
太阳能驱动的生物质及其衍生物的高值利用在替代化石资源以生产化学品方面引起了极大关注。开发高性能光催化剂以选择性催化生物平台分子仍然是一项挑战。在此,使用无金属聚酰亚胺(PI)将生物质基5-羟甲基糠醛(HMF)高效且选择性地光氧化为2,5-二糠醛(DFF)。具有适度光氧化能力的PI实现了91%的高DFF选择性和1.13%的高表观量子效率,比石墨相氮化碳高出近7倍。实验测量和理论计算表明,PI的能带结构和光氧化能力可以通过改变胺和酸酐的摩尔比来连续调节。机理分析表明,空穴和超氧自由基在HMF高效光氧化为DFF过程中起关键作用。这项工作为设计用于将生物质及其衍生物氧化为增值化学品的高效聚合物光催化剂提供了指导。