MMM
YYYY
Catalyst design strategy toward the efficient heterogeneously-catalyzed selective oxidation of 5-hydroxymethylfurfural
5-羟甲基糠醛高效多相催化选择性氧化的催化剂设计策略
5-ヒドロキシメチルフルフラールの効率的な不均一系触媒による選択的酸化に向けた触媒設計戦略
5-하이드록시메틸푸르푸랄의 효율적인 불균일 촉매 선택적 산화를 위한 촉매 설계 전략
Estrategia de diseño de catalizadores hacia la oxidación selectiva catalizada heterogéneamente eficiente de 5-hidroximetilfurfural
Stratégie de conception de catalyseur vers l'oxydation sélective efficace catalysée de manière hétérogène du 5-hydroxyméthylfurfural
Стратегия разработки катализатора для эффективного гетерогенно-катализируемого селективного окисления 5-гидроксиметилфурфурола
Huai Liu 刘淮 ¹ ², Xing Tang 唐兴 ² ³, Xianhai Zeng 曾宪海 ² ³, Yong Sun 孙勇 ² ³, Xixian Ke 柯希贤 ⁴, Tianyuan Li 李天源 ⁴, Jiaren Zhang 张家仁 ⁵, Lu Lin 林鹿 ² ³
¹ BiomassChem Group, Faculty of Chemical Engineering, Kunming University of Science and Technology, Kunming 650500, China
中国 昆明 昆明理工大学化学工程学院
² Xiamen Key Laboratory of Clean and High-valued Utilization for Biomass, College of Energy, Xiamen University, Xiang’an South Road, Xiamen 361102, China
中国 厦门 厦门大学能源学院 厦门市生物质清洁高值化利用重点实验室
³ Fujian Engineering and Research Center of Clean and High-valued Technologies for Biomass, Xiamen University, Xiang’an South Road, Xiamen 361005, Fujian, China
中国 福建 厦门 福建省生物质清洁高值化技术工程研究中心
⁴ Key Lab for Sport Shoes Upper Materials of Fujian Province (Fujian Huafeng New Material Co., Ltd.), Putian 351144, Fujian, China
中国 福建 莆田 福建省运动鞋面料重点实验室室(福建华峰新材料有限公司)
⁵ PetroChina Petrochemical Research Institute, Beijing 102206, P. R. China
中国 北京 中国石油石油化工研究院
Green Energy & Environment, 24 November 2021
Abstract

The selective oxidation of 5-hydroxymethylfurfural (HMF), a versatile bio-based platform molecule, leads to the formation of several intriguing and useful downstream chemicals, such as 2,5-diformylfuran (DFF), 5-hydroxymethyl-2-furancarboxylic acid (HMFCA), formyl 2-furancarboxylic acid (FFCA), 2,5-furandicarboxylic acid (FDCA) and furan-2,5-dimethylcarboxylate (FDMC). These products have been extensively employed to fabricate novel polymers, pharmaceuticals, sustainable dyes and many other value-added fine chemicals. The heart of the developed HMF oxidation processes is always the catalyst.

In this regard, this review comprehensively summarized the established heterogeneous catalyst design strategy for the selective oxidation of HMF via thermo-catalysis. Particular attention has been focused on the reaction mechanism of HMF oxidation over different catalysts as well as enhancing the catalytic performance of the catalyst through manipulating the properties of the support and fabricating of multi-component metal nano-particles and oxides. The current challenges and possible research directions for the catalytic oxidation of HMF in the future are also discussed.
Green Energy & Environment_1
Green Energy & Environment_2
Green Energy & Environment_3
Reviews and Discussions
https://www.hotpaper.io/index.html
Holotomography-driven learning unlocks in-silico staining of single cells in flow cytometry by avoiding fluorescence co-registration
Narrow beam and low-sidelobe electro-optic beam steering on thin-film lithium niobate optical phased array
Scene-level passive polarization 3D imaging
Modelling-guided inverse design strategy for semitransparent perovskite photovoltaics with customized colors
A hybrid integrated high-precision tunable semiconductor laser
Soft chiral superstructure enabled dynamic polychromatic holography
Millisecond-level electrically switchable metalens for adaptive rotational depth mapping and diffraction-limited imaging
Ambient-energy-driven space-time-coding metasurface for space-frequency-division multiplexing wireless communications
Timeshare surface-enhanced Raman scattering platform with sensitive and quantitative mode
Electric-field-induced second-harmonic generation
Fiber-optic microstructured sensors based on abrupt field patterns: theory, fabrication, and applications
Integrated metasurface-freeform system enabled multi-focal planes augmented reality display



Previous Article                                Next Article
About
|
Contact
|
Copyright © Hot Paper