4.7 Article

Preparation of metal sulfide mixtures in montmorillonite by solid-solid reactions

期刊

APPLIED CLAY SCIENCE
卷 115, 期 -, 页码 248-253

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.clay.2015.07.028

关键词

Manganese; Zinc; Cadmium; Sulfide; Montmorillonite; Solid-solid reaction

资金

  1. Higher Education Research Promotion and National Research University Project of Thailand, Office of the Higher Education Commission, through the Advanced Functional Materials Cluster of Khon Kaen University
  2. Center of Excellence for Innovation in Chemistry (PERCH-CIC), Commission on Higher Education, Ministry of Education Thailand

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Novel hybrids composed of mixed metal sulfides (manganese sulfide and zinc sulfide (MnS/ZnS) or cadmium sulfide (MnS/CdS), as well as zinc sulfide and cadmium sulfide (ZnS/CdS)) with montmorillonite were synthesized by solid-solid reactions between the ion exchanged montmorillonite and sodium sulfide. The products were characterized by powder X-ray diffraction, transmission electron microscopy, as well as Raman, UV-visible and photoluminescence spectroscopies. The Raman spectra indicated the presence of manganese sulfide, zinc sulfide, and/or cadmium sulfide in the products. The absorption onsets observed at 318-366 nm for MnS/ZnS@ montmorillonite, at 330-521 nm for MnS/CdS@montmorillonite, and at 360-480 nm for ZnS/CdS@montmorillonite indicated the formation of two metal sulfides in the interlayer spaces. In comparison with those of bulk MnS (340 nm), ZnS (360 nm) and CdS (525 nm), the absorption onsets owing to both metal sulfides were blue shifted probably due to quantum confinement effect, suggesting that the products are composed of nanometer sized sulfide particles. The photoluminescence bands owing to manganese sulfide (416 and 435 nm), zinc sulfide (413 and 440 nm), and cadmium sulfide (451 and 469 nm) were also seen. The emission intensity of MnS/ZnS@ montmorillonite was stronger than that of MnS/CdS@montmorillonite, probably due to the higher band gap energy of MnS/ZnS system that resulted in the increase of recombination of excitons. (C) 2015 Elsevier B.V. All rights reserved.

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