Synthesis of todorokite-type manganese oxide from Cu-buserite by controlling the pH at atmospheric pressure

نویسندگان

  • Haojie Cui
  • Xionghan Feng
  • Wenfeng Tan
  • Jizheng He
  • Ronggui Hu
  • Fan Liu
چکیده

1387-1811/$ see front matter 2008 Elsevier Inc. A doi:10.1016/j.micromeso.2008.06.006 * Corresponding author. E-mail address: [email protected] (F. Liu). A todorokite-type manganese oxide molecular sieve material was successfully synthesized at atmospheric pressure by refluxing treatment of Cu exchanged Na-buserite (named as Cu-OMS-1). TEM (transmission electron microscope) and HRTEM (high resolution transmission electron microscope) images revealed that this material has a needle-phase crystal morphology with thickness 0.1–1 lm, and the lattice fringes spacing 1.0 nm corresponding to the [100] plane of the todorokite structure. Such morphological and intergrowth characteristics were similar to those of hydrothermally synthesized todorokites. The Cu-OMS-1 with a chemical composition of Cu0.34MnO2.19 1.11H2O, was stable below 400 C. The BET surface area was found to be 62.5 m/g, and a major micropore size distribution peak centered at 0.70 nm for Cu-OMS-1 by the Horvath–Kawazoe (HK) method. As determined by the t-plot method, 31% of the surface area was contributed by micropores. The pH of reaction solution plays an important role in the sub-structure modification of formed Cu-buserites and the formation of todorokite at atmospheric pressure. A mechanism for the influence of pH on the transformation is discussed. 2008 Elsevier Inc. All rights reserved.

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تاریخ انتشار 2008