Zhang Hongxia, Zhang Wenqin, Zhao Min, Yang Pengju, Zhu Zhenping
Institute of Application Chemistry, Shanxi University, Taiyuan 030006, China.
State Key Laboratory of Coal Conversion, Institute of Coal Chemistry, Chinese Academy of Sciences, Taiyuan 030001, China.
Chem Commun (Camb). 2017 Jan 26;53(9):1518-1521. doi: 10.1039/c6cc09050h.
To understand the mechanism of the photocatalytic direct synthesis of 1,1-diethoxyethane (DEE) from ethanol is vital for enhancing the reaction efficiency. Based on photocatalytic data of different phase TiO and F-TiO catalysts, radical trapping data, and GC-MS data, we proposed a photocatalytic mechanism for the preparation of both DEE in neat ethanol and 2,3-butanediol (2,3-BD) in ethanol-HO using photocatalytic methods. In neat ethanol, hydroxyl isn't involved in the catalytic cyclic process but hydroxyl has an indirect site-holding effect, thus leading to more hydroxyl groups with higher activity. In ethanol-HO, although the strong oxidant ˙OH radical is involved, fewer OH groups lead to higher selectivity of 2,3-BD. The interaction of the reactant/solvent with the surface group of the catalyst is important in the activity and selectivity of photocatalytic reactions. This finding gives fundamental insight into the role of TiO surface hydroxyl in the photocatalytic dehydrogenation process of alcohols and opens a promising path to obtaining both high selectivity and high conversion in TiO-based photocatalytic activity.
了解光催化由乙醇直接合成1,1 - 二乙氧基乙烷(DEE)的机理对于提高反应效率至关重要。基于不同相TiO和F - TiO催化剂的光催化数据、自由基捕获数据以及气相色谱 - 质谱数据,我们提出了一种光催化机理,用于通过光催化方法在纯乙醇中制备DEE以及在乙醇 - HO中制备2,3 - 丁二醇(2,3 - BD)。在纯乙醇中,羟基不参与催化循环过程,但羟基具有间接的位点占据效应,从而导致更多具有更高活性的羟基基团。在乙醇 - HO中,尽管涉及强氧化剂˙OH自由基,但较少的OH基团导致2,3 - BD具有更高的选择性。反应物/溶剂与催化剂表面基团的相互作用对光催化反应的活性和选择性很重要。这一发现为TiO表面羟基在醇类光催化脱氢过程中的作用提供了基本见解,并为在TiO基光催化活性中获得高选择性和高转化率开辟了一条有前景的途径。