Hu Yaqi, Liu Runze, Lu Kaiyun, Wu Daoning, Gao Pan, Hou Guangjin, Zhang Hongbo, Dai Weili
School of Materials Science and Engineering, Nankai University, Tianjin, PR China.
State Key Laboratory of Catalysis, National Laboratory for Clean Energy, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian, PR China.
Nat Commun. 2025 Jul 1;16(1):5851. doi: 10.1038/s41467-025-61150-0.
Hydrated hydronium ions formed in the pores/cages of zeolite catalysts are suggested as the active species that could impact the adsorption of reactant, the stability of intermediates or transition states, and the reaction mechanism in the aqueous phase alcohol dehydration. Nevertheless, under a typical vapor phase reaction condition, the relevant situation is still debatable. Herein, the promotion of water on cyclohexanol (CyOH) adsorption and dehydration under a vapor phase condition was clarified by in situ H MAS NMR, 2D H DQ MAS NMR and 2D H-Al HMQC NMR spectroscopy, systematic kinetic studies, isotope tracing and thermodynamic measurements. The water promoting effects were ascribed to water facilitating the formation of HO cluster (HO(HO)), and per Brønsted acid site (BAS) could be saturated by about 5 water at ambient temperature. The CyOH dehydration pathway was found to be highly dependent on the water concentrations, and a dimer reaction route with the C-H bond rupture as the kinetically relevant step (KRS) was verified as the main reaction pathway at high water concentrations. All these findings provide the deep insights into how water regulating the zeolite catalyzed dehydration reaction at a molecular level.
沸石催化剂孔道/笼中形成的水合水合氢离子被认为是可能影响反应物吸附、中间体或过渡态稳定性以及水相醇脱水反应机理的活性物种。然而,在典型的气相反应条件下,相关情况仍存在争议。在此,通过原位H MAS NMR、二维H DQ MAS NMR和二维H-Al HMQC NMR光谱、系统动力学研究、同位素示踪和热力学测量,阐明了气相条件下水对环己醇(CyOH)吸附和脱水的促进作用。水的促进作用归因于水促进了HO簇(HO(HO))的形成,在环境温度下每个布朗斯特酸位点(BAS)可被约5个水分子饱和。发现CyOH脱水途径高度依赖于水浓度,并且在高水浓度下,以C-H键断裂作为动力学相关步骤(KRS)的二聚体反应路线被确认为主要反应途径。所有这些发现为水在分子水平上如何调节沸石催化的脱水反应提供了深刻见解。