产品展厅收藏该商铺

您好 登录 注册

当前位置:
美国布鲁克海文仪器公司>资料下载>测量应用案例-20210203

资料下载

测量应用案例-20210203

阅读:121          发布时间:2021-2-4
提 供 商 美国布鲁克海文仪器公司 资料大小 3.8MB
资料图片 下载次数 22次
资料类型 PDF 文件 浏览次数 121次
免费下载 点击下载    
 文献名: Synthesis of polymeric ionic liquids mircrospheres/Pd nanoparticles/CeO2 core-shell structure catalyst for catalytic oxidation of benzyl alcohol

 

作者:Wu Yangjina; Zhang Yiweia; Lv Xushuaia; Mao Chunfenga; Zhou Yuminga; Wu Wentinga; Zhang Huib; Huang Ziweia 

aSchool of Chemistry and Chemical Engineering, Southeast University, Jiangsu Optoelectronic Functional Materials and Engineering Laboratory, Nanjing 211189, PR China

bSchool of Environmental Science, Nanjing Xiaozhuang University, Nanjing 211171, PR China

 

摘要:New catalysts based on polymeric ionic liquids were synthesized and applied into selective oxidation of benzyl alcohol. Polymeric ionic liquid microspheres (PILM) were prepared by radical polymerization, and then the cations in the imidazole ring were exchanged with the metal anions. After that, the metal anions were reduced to Pd nanoparticles that was supported on the surface of PILM. This metal loading method favored the maximum amount of supported Pd nanoparticles that were uniformly distributed on the surface of PILM. In addition, the introduction of CeO2 prevented the aggregation of Pd nanoparticles and finally formed PILM/Pd/CeO2 catalysts with a core-shell structure. The performance of the PILM/Pd/CeO2 catalysts was evaluated by changing the [K2CO3] : [alcohol] molar ratio, reaction temperature and oxygen flow rate in the oxidation reaction of benzyl alcohol. The conversion and selectivity under the optimal reaction conditions reached 48% and 98% respectively The catalysts were effective and reusable after 5 cycles of experiments. In the end, a mechanism underlying the reaction pathway in benzyl alcohol oxidation was put forward.

收藏该商铺

登录 后再收藏

提示

您的留言已提交成功!我们将在第一时间回复您~

对比框

产品对比 产品对比 联系电话 二维码 意见反馈 在线交流

扫一扫访问手机商铺
010-62081908
在线留言