Evtushok Vasilii Yu, Ivanchikova Irina D, Zalomaeva Olga V, Gubanov Alexander I, Kolesov Boris A, Glazneva Tatiana S, Kholdeeva Oxana A
Boreskov Institute of Catalysis, Pr. Lavrentieva 5, Novosibirsk 630090, Russia.
Nikolaev Institute of Inorganic Chemistry, Pr. Lavrentieva 3, Novosibirsk 630090, Russia.
Dalton Trans. 2024 Jan 23;53(4):1528-1540. doi: 10.1039/d3dt03495j.
Catalytic properties of a crystalline zirconium tungstate, ZrWO, the material known mainly for its isotropic negative coefficient of thermal expansion, have been assessed for the liquid-phase selective oxidation of a range of organic substrates comprising CC, OH, S and other functional groups using aqueous hydrogen peroxide as the green oxidant. Samples of ZrWO were prepared by hydrothermal synthesis and characterised by N adsorption, PXRD, SEM, EDX, FTIR and Raman spectroscopic techniques. Studies by IR spectroscopy of adsorbed probe molecules (CO and CDCl) revealed the presence of Brønsted acidic and basic sites on the surface of ZrWO. It was demonstrated that ZrWO is able to activate HO under mild conditions and accomplish the epoxidation of CC bonds in alkenes and unsaturated ketones, oxidation of thioethers to sulfoxides and sulfones, along with the oxidation of alcoholic functions to produce ketones and aldehydes. The oxidation of tetramethylethylene and α-terpinene over ZrWO revealed the formation of peroxidation products, 2,3-dimethyl-3-butene-2-hydroperoxide and endoperoxide ascaridole, respectively, indicating the involvement of singlet oxygen in the oxidation process. The ZrWO catalyst preserves its structure and morphology under the turnover conditions and does not suffer from metal leaching. It can be easily recovered, regenerated by calcination, and reused without the loss of activity and selectivity.
一种晶体钨酸锆(ZrWO)的催化性能已得到评估。该材料主要因其各向同性的负热膨胀系数而闻名。使用过氧化氢水溶液作为绿色氧化剂,对一系列含有碳碳双键、羟基、硫等官能团的有机底物进行液相选择性氧化反应。通过水热合成制备了ZrWO样品,并采用氮气吸附、粉末X射线衍射(PXRD)、扫描电子显微镜(SEM)、能量色散X射线光谱(EDX)、傅里叶变换红外光谱(FTIR)和拉曼光谱技术对其进行了表征。通过对吸附探针分子(CO和CDCl)的红外光谱研究表明,ZrWO表面存在布朗斯特酸性和碱性位点。结果表明,ZrWO能够在温和条件下活化过氧化氢,并实现烯烃和不饱和酮中碳碳双键的环氧化、硫醚氧化为亚砜和砜,以及醇官能团氧化生成酮和醛。ZrWO对四甲基乙烯和α-萜品烯的氧化反应分别揭示了过氧化产物2,3-二甲基-3-丁烯-2-氢过氧化物和内过氧化物ascaridole的形成,表明单线态氧参与了氧化过程。ZrWO催化剂在反应条件下保持其结构和形态,且不会发生金属浸出。它可以很容易地回收,通过煅烧再生,并在不失活性和选择性的情况下重复使用。