JOURNAL ARTICLE

Transition-metal oxide pillared clays

Trilochan MishraKulamani Parida

Year: 1997 Journal:   Journal of Materials Chemistry Vol: 7 (1)Pages: 147-152   Publisher: Royal Society of Chemistry

Abstract

Manganese(iii) pillared montmorillonite samples have been prepared by intercalating the trinuclear manganese(iii) acetate complex {[Mn 3 O(COOCH 3 ) 6 (H 2 O) 3 ] + CH 3 COO - } between the silicate layers of both Na-exchanged (NaMont) and acid-activated montmorillonite (HMont), and characterised by different techniques. As far as the intercalation is concerned, the multistep ion-exchange process gave better loading of the complex in comparison to the single-step process. FTIR analysis shows the presence of a bidentate acetate group inside the silicate layer which decomposes at 300 °C. Materials prepared from both clays are thermally stable up to 500 °C, with basal spacings of 17.1 and 16.9 Å and surface areas of 280 and 268 m 2 g -1 , (NaMont, HMont respectively). Although the acid-activated pillared montmorillonite shows low uptake of the complex and low surface area, the resultant material has higher pore volume and acidity in comparison to the product from the Na-exchanged material. Samples prepared from acid-activated clays possess both micropores and mesopores (average pore diameter 41 Å) while those prepared from Na-exchanged clays show predominately uniform small pores with an average pore diameter of 33 Å.

Keywords:
Oxide Transition metal Materials science Chemical engineering Metal Mineralogy Chemistry Metallurgy Organic chemistry Catalysis

Metrics

47
Cited By
2.33
FWCI (Field Weighted Citation Impact)
17
Refs
0.87
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Zeolite Catalysis and Synthesis
Physical Sciences →  Chemistry →  Inorganic Chemistry
Mesoporous Materials and Catalysis
Physical Sciences →  Materials Science →  Materials Chemistry
Catalysis and Oxidation Reactions
Physical Sciences →  Chemical Engineering →  Catalysis

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