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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Regio-and stereoselective terpene epoxidation using tungstate-exchanged takovites: a study of phase purity, takovite composition and stable catalytic activity
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Regio-and stereoselective terpene epoxidation using tungstate-exchanged takovites: a study of phase purity, takovite composition and stable catalytic activity

机译:钨酸盐交换的takovite区域和立体选择性萜烯环氧化:相纯度,takovite组成和稳定的催化活性的研究

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摘要

Nanocrystalline tungstate-exchanged layered double hydroxides of the takovite type, [Ni_xAl_(1-x)(OH)2](NO3)_(0.9-x)(WO4)_(0.05)·mH2O, have been prepared with changing values of x. The morphology-texture parameters of the synthesized materials were characterized by using scanning electron microscopy and nitrogen adsorption techniques. X-Ray diffraction, diffuse reflectance spectroscopy, ~(27)Al MAS NMR and infrared spectroscopy were applied to study the structure and the phase purity of the tungstate exchanged materials. Identification of the tungsten state was attempted by infrared and Raman spectroscopy. The catalytic properties of the pure tungstate exchanged takovites were tested in the bromide-assisted epoxidation of terpenic olefins using H2O2 as environmental benign oxidant. The bromide-assisted oxidation shows very interesting chemo-selectivity for various substrates with unique regio- and stereo-selectivity often opposite to that of many traditional methods. The activity of the tungstate catalyst was observed to highly depend on the Al content in the takovite support, most likely due to efficient charge shielding at the catalyst's surface. Tungstate exchanged on Al-rich takovite has a remarkable oxidation activity in terms of turnover frequency. Moreover, the takovite catalyst was found to be stable under reaction conditions and recyclable.
机译:纳米晶钨酸盐交换的塔科夫铁矿型层状双氢氧化物[Ni_xAl_(1-x)(OH)2](NO3)_(0.9-x)(WO4)_(0.05)·mH2O的变化值是X。利用扫描电子显微镜和氮气吸附技术表征了合成材料的形貌-结构参数。利用X射线衍射,漫反射光谱,〜(27)Al MAS NMR和红外光谱研究了钨酸盐交换材料的结构和相纯度。通过红外和拉曼光谱法试图鉴定钨态。在使用H2O2作为环境良性氧化剂的溴化物辅助的萜烯烯烃的环氧化中,测试了纯钨酸盐交换的Takovite的催化性能。溴化物辅助氧化对各种底物具有非常有趣的化学选择性,具有独特的区域选择性和立体选择性,通常与许多传统方法相反。观察到钨酸盐催化剂的活性高度依赖于塔夫石载体中的Al含量,这很可能归因于催化剂表面的有效电荷屏蔽。就周转率而言,在富铝的塔夫石上交换的钨酸盐具有显着的氧化活性。此外,发现该塔科维特催化剂在反应条件下是稳定的并且是可回收的。

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