Advanced Functional Nanomaterials, Institute of Nano Science and Technology, Mohali, Sector 81, Mohali, 140306, India.
ChemSusChem. 2022 Jul 7;15(13):e202200430. doi: 10.1002/cssc.202200430. Epub 2022 May 18.
The selective conversion of 5-hydroxymethyfurfural (HMF), a biomass-derived platform molecule, to value added chemicals can ease the burden on petroleum-based fine chemical synthesis. The active contribution of renewable energy sources along with low cost, environmental friendliness, and a simple reaction system must be adopted for better sustainability. In this context, photocatalytic selective hydrogenation of HMF to 2,5-bis(hydroxymethyl)furan (BHMF) was achieved over P25 titania nanoparticles without chemical squander. Simultaneously the photo-oxidation of p-methoxybenzyl alcohol (MeOBA) to p-methoxybenzaldehyde (MeOBaL), similar to biomass-derived vanillin, was carried out, abolishing the need of additional redox reagents. This system put forward the competent employment of photogenerated excitons for the valorization of lignocellulosic biomass to fine chemicals, which is an urgent requirement for sustainable chemical synthesis.
5-羟甲基糠醛(HMF)是一种源自生物质的平台分子,选择性地将其转化为高附加值化学品,可以减轻对石油基精细化学品合成的压力。必须采用可再生能源的积极贡献,以及低成本、环保和简单的反应体系,以实现更好的可持续性。在这种情况下,通过 P25 二氧化钛纳米粒子在没有化学浪费的情况下实现了 HMF 到 2,5-双(羟甲基)呋喃(BHMF)的光催化选择性加氢。同时,对类似于生物质衍生的香草醛的对甲氧基苄醇(MeOBA)进行光氧化,消除了对额外氧化还原试剂的需求。该系统提出了利用光生激子将木质纤维素生物质转化为精细化学品的有效利用,这是可持续化学合成的迫切要求。