应用化学 ›› 1996, Vol. 0 ›› Issue (4): 17-20.

• 研究论文 • 上一篇    下一篇

新型层柱微孔材料──FeW11NiO39柱撑ZnAl阴离子粘土的合成、表征及催化性能

余新武1, 张淑云1, 张继余1, 王恩波1, 詹瑞云2, 刘桂珍2   

  1. 1. 东北师范大学化学系 长春 130024;
    2. 中国科学院长春应用化学研究所 长春
  • 收稿日期:1995-08-21 修回日期:1995-12-30 出版日期:1996-08-10 发布日期:1996-08-10
  • 基金资助:
    国家自然科学基金;吉林大学水热合成开放实验室资助

Synthesis,Characterization and Catalytic Activity of New Layered Microporous Material-FeW11NiO39Pillared Anion Clay

Yu Xinwu1, Zhang Shuyun1, Zhang Jiyu1, Wang Enbo1, Zhan Ruiyun2, Liu Guizhen2   

  1. 1. Department of Chemistry, Northeast Normal University, Changchun 130024;
    2. Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun
  • Received:1995-08-21 Revised:1995-12-30 Published:1996-08-10 Online:1996-08-10

摘要: 采用水热合成与离子交换方法,将中心原子为过渡金属(Fe)的钨系过渡金属取代型杂多阴离子FeW11NiO39(H2O)7-(缩写为FeW11Ni)嵌入ZnAl型阴离子层状结构粘土间,获得了大层间距、通道高度达1.32nm的新型层柱微孔化合物。通过XRD、IR及ESR等手段进行了表征。以ZnAl-Few11Ni为催化剂合成邻苯二甲酸二辛酯(DOP),选择性大于99%,转化率由嵌入前的12%提高到近50%,催化活性明显提高。

关键词: 微孔材料, 阴离子粘土, FeW11NiO39, 杂多化合物, 过渡元素, 催化性能

Abstract: Layered double hydroxides pillared by tungstoferrate heteropolyanion with substituted transition metal Ni, ZnAl-FeW11Ni, has been synthesized by means of hydrothermal ion exchange method. Powder X-ray diffraction shows that the anionic clay precursor possesses a regular layered structure and a good crystallinity, and the pillared derivative has 2θof 4.96°and gallery height of 1.325 nm. IR spectra indicate that the vibrational frequency and band shape of heteropolyanion existing in the layered regions of anionic clay are similar to those of the authentic heteropoly salt. So we can draw the conclusion that the Keggin structure of the gallery heteropoly anions is maintained. ESR results indicate that the heteropolyainons are of ordered arrangement in layered clay region.Tests show that the new pillared compound has a higher catalytic activity than that of anionic clay and heteronoly salts for dioctyl phthalate synthesis.

Key words: microporous material, anionic clay, FeW11NiO39, heteropoly compound, transition metal,catalytic activity