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CuFe2O4纳米粒子催化芳香酮的不对称硅氢化反应 被引量:1
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作者 朱洁莲 夏晓峰 +2 位作者 梁敏婷 刘湘 李和兴 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2016年第3期539-545,共7页
分别采用共沉淀法、溶胶-凝胶法和溶剂热法制备得到CuFe_2O_4纳米粒子,以(R)-联萘二苯基膦[(R)-BINAP]为手性配体、聚甲基氢硅氧烷(PMHS)为硅氢化试剂,将制得的CuFe_2O_4纳米粒子用于催化芳香酮的不对称硅氢化反应.结果表明,溶剂热法能... 分别采用共沉淀法、溶胶-凝胶法和溶剂热法制备得到CuFe_2O_4纳米粒子,以(R)-联萘二苯基膦[(R)-BINAP]为手性配体、聚甲基氢硅氧烷(PMHS)为硅氢化试剂,将制得的CuFe_2O_4纳米粒子用于催化芳香酮的不对称硅氢化反应.结果表明,溶剂热法能制得分散性好、粒径小且分布均匀的CuFe_2O_4纳米球,其催化活性明显优于其它2种方法.在添加剂t-Bu OK和t-BuOH的共同作用下,CuFe_2O_4纳米粒子的催化活性得以明显改善,最终得到一种高效的非均相催化体系CuFe_2O_4/t-Bu OK/t-BuOH.在室温和空气氛围下,用于催化芳香酮的不对称硅氢化反应,底物转化率和产物对映体过量值分别高达99%和92%.研究证实底物芳环上取代基的电子效应和空间位阻明显影响不对称硅氢化反应的结果.CuFe_2O_4纳米催化剂在外加磁场的作用下能较易从反应体系中分离回收,且催化剂经4次循环利用后仍具有较高的催化活性. 展开更多
关键词 不对称硅氢化反应 芳香酮 CuFe2O4纳米粒子 聚甲基氢硅氧烷
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Structures and magnetic properties of nanocomposite CoFe_2O_4-BaTiO_3 fibers by organic gel-thermal decomposition process 被引量:2
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作者 周智 沈湘黔 +1 位作者 宋福展 闵春英 《Journal of Central South University》 SCIE EI CAS 2010年第6期1172-1176,共5页
The nanocomposite xCoFe2O4-(1-x)BaTiO3(x=0.2,0.3,0.4,0.5,molar fraction) fibers with fine diameters and high aspect ratios(length to diameter ratios) were prepared by the organic gel-thermal decomposition process from... The nanocomposite xCoFe2O4-(1-x)BaTiO3(x=0.2,0.3,0.4,0.5,molar fraction) fibers with fine diameters and high aspect ratios(length to diameter ratios) were prepared by the organic gel-thermal decomposition process from citric acid and metal salts.The structures and morphologies of gel precursors and fibers derived from thermal decomposition of the gel precursors were characterized by Fourier transform infrared spectroscopy,X-ray diffractometry and scanning electron microscopy.The magnetic properties of the nanocomposite fibers were measured by vibrating sample magnetometer.The nanocomposite fibers consisting of ferrite(CoFe2O4) and perovskite(BaTiO3) are formed at the calcination temperature of 900 ℃ for 2 h.The average grain sizes of CoFe2O4 and BaTiO3 in the nanocomposite fibers increase from 25 to 65 nm with the calcination temperature from 900 to 1 180 ℃.The single fiber constructed from these nanograins of CoFe2O4 and BaTiO3 has a necklace-like morphology.The saturation magnetization of the nanocomposite 0.4CoFe2O4-0.6BaTiO3 fibers increases with the increase of CoFe2O4 grain size,while the coercivity reaches a maximum value when the average grain size of CoFe2O4 is around the critical single-domain size of 45 nm obtained at 1 000 ℃.The saturation magnetization and remanence of the nanocomposite xCoFe2O4-(1-x)BaTiO3(x=0.2,0.3,0.4,0.5) fibers almost exhibit a linear relationship with the molar fraction of CoFe2O4 in the nanocomposites. 展开更多
关键词 nanocomposite cefe2o4 BaTiO3 纤维器官的胶化热的分解过程磁性
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