Brazilian Synchrotron Light Laboratory (LNLS), Brazilian Center for Research in Energy and Materials (CNPEM), CP 6192, CEP 13083-970, Campinas, SP, Brazil.
School of Chemical Engineering, University of Campinas, Av. Albert Einstein, 500, CEP 13083-852, Campinas, SP, Brazil.
ChemSusChem. 2018 Mar 9;11(5):872-880. doi: 10.1002/cssc.201702354. Epub 2018 Feb 19.
Hybrid organic-inorganic anatase (hybrid-TiO ) is prepared by a facile hydrothermal synthesis method employing citric acid. The synthetic approach results in a high surface-area nanocrystalline anatase polymorph of TiO . The uncalcined hybrid-TiO is directly studied as a catalyst for the conversion of glucose into 5-hydroxymethylfurfural (HMF). In the presence of the hybrid-TiO , HMF yields up to 45 % at glucose conversions up to 75 % were achieved in water at 130 °C in a monophasic batch reactor. As identified by Ti K-edge XANES, hybrid-TiO contains a large fraction of fivefold coordinatively unsaturated Ti sites, which act as the Lewis acid catalyst for the conversion of glucose into fructose. As citric acid is anchored in the structure of hybrid-TiO , carboxylate groups seem to catalyze the sequential conversion of fructose into HMF. The fate of citric acid bound to anatase and the Ti Lewis acid sites throughout recycling experiments is also investigated. In a broader context, this contribution outlines the importance of hydrothermal synthesis for the creation of water-resistant Lewis acid sites for the conversion of sugars. Importantly, the use of the hybrid-TiO with no calcination step contributes to dramatically decreasing the energy consumption in the catalyst preparation.
采用柠檬酸的简便水热合成法制备了杂化有机-无机锐钛矿(杂化-TiO )。该合成方法得到了具有高表面积的锐钛矿纳米晶多晶型 TiO 。未煅烧的杂化-TiO 直接用作将葡萄糖转化为 5-羟甲基糠醛(HMF)的催化剂。在杂化-TiO 的存在下,在 130°C 的单相分批反应器中,在水中葡萄糖转化率高达 75%时,HMF 的产率高达 45%。如 Ti K 边 XANES 所鉴定的,杂化-TiO 含有大量的五配位不饱和 Ti 位,这些位作为路易斯酸催化剂将葡萄糖转化为果糖。由于柠檬酸锚定在杂化-TiO 的结构中,羧酸盐基团似乎催化果糖连续转化为 HMF。在整个循环实验中,还研究了结合到锐钛矿和 Ti 路易斯酸位上的柠檬酸的命运。从更广泛的角度来看,本研究强调了水热合成在创造用于糖转化的耐水路易斯酸位方面的重要性。重要的是,不进行煅烧步骤使用杂化-TiO 有助于大大降低催化剂制备过程中的能耗。