李贵贤,张琪,季东,方伟国,赵鹬.低共熔混合物体系中合成无定型的磷酸氧钒催化剂及应用[J].分子催化,2014,(2):105-111
低共熔混合物体系中合成无定型的磷酸氧钒催化剂及应用
Ionothermal Synthesis of Amorphous Vanadium Phosphate Catalyst in Eutectic Mixture for the Oxidation Reaction
投稿时间:2013-12-11  修订日期:2014-03-08
DOI:
中文关键词:  离子液体热合成  低共熔混合物  磷酸氧钒  环己醇  环己酮
英文关键词:ionothermal synthesis  eutectic mixture  vanadium phosphate  cyclohexanol  cyclohexanone
基金项目:离子液体热合成法制备先进催化剂用于高品质燃料油的合成
作者单位E-mail
李贵贤 兰州理工大学 lgxwyf@163.com 
张琪 兰州理工大学 zhangqi071@126.com 
季东 兰州理工大学 jidong@163.com 
方伟国 兰州理工大学 fangweiguo0619@163.com 
赵鹬* 兰州理工大学 yzhao@lut.cn 
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中文摘要:
      以尿素/氯化胆碱形成的离子型低共熔混合物溶剂作为反应介质, 采用离子液体热合成法制备磷酸氧钒材料。傅里叶变换红外光谱(IR)、X射线衍射(XRD)、扫描电子显微镜(SEM)、能量弥散X射线谱(EDS)和氧化还原滴定表征结果表明:该材料为无定型的、混合价态的纳米尺寸钒磷酸盐,因此可暴露更多的活性位,从而提高催化活性。将其用于环己醇氧化反应,研究反应时间、温度、反应物配比等因素对反应的影响,最终使环己酮的选择性及收率分别达到93.5%和51.4%。
英文摘要:
       A vanadium phosphate catalyst was prepared through the ionothermal synthesis method in a deep eutectic solvent (DES) which was composed of urea and choline chloride. The results of FT-IR, XRD, EDS, redox titration and SEM measurements showed that the catalyst was an amorphous, mixed-valences and nano-sized vanadium phosphate. Thus it exhibited excellent performance for the selective oxidation reaction of cyclohexanol to cyclohexanone. Through optimization of the reaction conditions such as the molar ratios of H2O2 to cyclohexanol, reaction times and temperatures, the selectivity and yield of cyclohexanone reached 93.5% and 51.4%, respectively.
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