节点文献

层状复合金属氢氧化物:结构、性质及其应用

Layered Double Hydroxides: Structures, Properties and Applications

  • 推荐 CAJ下载
  • PDF下载
  • 不支持迅雷等下载工具,请取消加速工具后下载。

【作者】 雷立旭张卫锋胡猛Dermot O’Hare

【Author】 LEI Li-Xu*,1 ZHANG Wei-Feng1 HU Meng1 Dermot O′Hare2(1The Department of Chemistry and Chemical Engineering, Southeast University, Nanjing 210096)(2Inorganic Chemistry Laboratory, The University of Oxford, Oxford OX1 3QR, UK)

【机构】 东南大学化学化工系Inorganic Chemistry LaboratoryThe University of OxfordOxfordOX1 3QRUK 南京210096南京210096南京210096

【摘要】 本文评述层状复合金属氢氧化物(layered double hydroxides,LDH s)的化学及其应用。层状复合金属氢氧化物具有结合紧密的氢氧化物层和处于层间的阴离子,其比较突出的化学性质是可逆的阴离子交换和热分解性质。不过,因为受到氢氧化物层的局限,处于层间的阴离子表现出的特殊化学性质近年来也越来越受到重视。利用上述三个方面的性质,人们发掘了层状复合金属氢氧化物在材料(包括有机无机复合材料)制备、离子交换与有害阴离子脱除、异构体化学分离、化学反应控制、阻燃材料、活性分子储存与缓释、局部化学反应合成、催化剂及催化剂载体等方面的应用。

【Abstract】 This paper reviews chemistry and applications of layered double hydroxides (short as LDHs). The LDHs have chemically bonded, therefore pretty rigid hydroxide layers and interlayer anions; and they outstand there because of their marvelous reversible anion-exchange capabilities and thermochemical behaviors. Recently, another aspect has attracted much attention that they constrain the interlayer anions and make them react in special ways, consequently produce selective products. Benefiting from the above three properties of LDHs, researchers have investigated their applications in preparations of various materials (including organic-inorganic composites), anionic exchange and removals of hazardous anions, chemical separations of organic geometric isomers, controls of chemical reactions, storage and control release of biomolecules, preparation of flame retarding materials/additives, catalysts and catalyst supports, and topochemical syntheses.

【基金】 江苏省自然基金(No.BK2004071);中国科协-英国皇家学会(The RoyalSociety);短期研究访问基金(2004);教育部留学归国人员启动基金 (No.教外司留[2003]406);东南大学科研基金(No.XJ0419159)资助项目。
  • 【文献出处】 无机化学学报 ,Chinese Journal of Inorganic Chemistry , 编辑部邮箱 ,2005年04期
  • 【分类号】O611.64
  • 【被引频次】90
  • 【下载频次】1342
节点文献中: 

本文链接的文献网络图示:

本文的引文网络