Dutta Saikat, Bhat Navya Subray
Department of Chemistry, National Institute of Technology Karnataka, Mangalore 575025, Karnataka, India.
ACS Omega. 2021 Dec 15;6(51):35145-35172. doi: 10.1021/acsomega.1c05861. eCollection 2021 Dec 28.
Furfural (FF) and 5-(hydroxymethyl)furfural (HMF) are well-recognized biomass-derived chemical building blocks with established applications and markets for several of their derivatives. Attaining a wide spectrum of petrochemicals is the primary target of a biorefinery that employs FF and HMF as the chemical feedstock. In this regard, cyclopentanone (CPN) is a crucial petrochemical intermediate used for synthesizing a diverse range of compounds with immense commercial prospects. The hydrogenative ring rearrangement of FF to CPN in an aqueous medium under catalytic hydrogenation conditions was first reported in 2012, whereas the first report on the catalytic conversion of HMF to 3-(hydroxymethyl)cyclopentanone (HCPN) was published in 2014. Over the past decade, several investigations have been undertaken in converting FF and HMF to CPN and HCPN, respectively. The research studies aimed to improve the scalability, selectivity, environmental footprint, and cost competitiveness of the process. A blend of theoretical and experimental studies has helped to develop efficient, inexpensive, and recyclable heterogeneous catalysts that work under mild reaction conditions while providing excellent yields of CPN and HCPN. The time is ripe to consolidate the data in this area of research and analyze them rigorously in a review article. This work will assist both beginners and experts of this field in acknowledging the accomplishments to date, recognize the challenges, and strategize the way forward.
糠醛(FF)和5-(羟甲基)糠醛(HMF)是公认的生物质衍生化学原料,它们的几种衍生物已有既定的应用和市场。获得广泛的石化产品是将FF和HMF用作化学原料的生物炼制厂的主要目标。在这方面,环戊酮(CPN)是一种关键的石化中间体,用于合成具有巨大商业前景的各种化合物。2012年首次报道了在催化氢化条件下FF在水介质中加氢环重排生成CPN,而关于HMF催化转化为3-(羟甲基)环戊酮(HCPN)的首次报道发表于2014年。在过去十年中,已经进行了多项研究,分别将FF和HMF转化为CPN和HCPN。这些研究旨在提高该过程的可扩展性、选择性、环境足迹和成本竞争力。理论和实验研究的结合有助于开发高效、廉价且可回收的多相催化剂,这些催化剂在温和的反应条件下工作,同时提供优异的CPN和HCPN产率。现在是时候在一篇综述文章中整合该研究领域的数据并进行严格分析了。这项工作将帮助该领域的初学者和专家了解迄今为止的成就,认识到挑战,并制定未来的战略。