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The spectral, structral and thermal characterizations of dimethyl sulphoxide, pyridine, ethanolamine and N-methyl formamide intercalated kaolinites

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info:eu-repo/semantics/openAccess

Date

2010

Author

Çağlar, Bülent
Afşin, Beytullah
Eren, Erdal
Tabak, Ahmet
Çırak, Çağrı
Çubuk, Osman

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Çağlar, B., Afşin, B., Eren, E., Tabak, A., Çırak, Ç. & Çubuk, O. (2010). The spectral, structral and thermal characterizations of dimethyl sulphoxide, pyridine, ethanolamine and N-methyl formamide intercalated kaolinites. Zeitschrift fur Naturforschung - Section A Journal of Physical Sciences, 65(11), 1009-1019. https://doi.org/10.1515/zna-2010-1111

Abstract

The intercalation of dimethyl sulphoxide (DMSO), pyridine (Py), ethanolamine (Ea), and Nmethyl formamide (NMF) molecules into the kaolinite interlayers led to an appreciable decrease of 3697 cm-1 of the hydroxyl band. The appearance of the peaks at 3662, 3541, and 3504 cm-1 proved that the DMSO species are intercalated between the kaolinite layers through forming H-bonds with internal-surface hydroxyl groups. The intensities of the 942 and 796 cm-1 bending peaks arising from inner-surface hydroxyls decreased and new vibrational features appeared due to the intercalation of the guest species. The d001 value of pure kaolinite was found at 7.18 Å, and the d001 values were seen at 11.26, 11.62, 10.77, and 10.67 Å for kaolinite-dimethyl sulphoxide (K-DMSO), kaolinite-pyridine (K-Py), kaolinite-ethanolamine (K-EA), and kaolinite-N-methyl formamide (K-NMF) composites, respectively. The endothermic differential thermal analysis (DTA) peaks at a temperature of 108 - 334°C reflected the changes in the physicochemical properties of the intercalated species. The thermal stability increase followed the order of K-Py<K-NMF<K-Ea<K-DMSO. Based on the thermal analysis data, the intercalation ratios of the composites above were determined as 80.0, 40.0, 81.6, and 82.0%, respectively. The specific surface areas are affected by the intercalation geometry of the composites within the gallery spacing. The surface areas of the K-DMSO, K-Py, and K-EA complexes increased whereas the surface area of K-NMF decreased with respect to that of untreated kaolinite. © 2010 Verlag der Zeitschrift für Naturforschung, Tübingen.

Source

Zeitschrift fur Naturforschung - Section A Journal of Physical Sciences

Volume

65

Issue

11

URI

https://doi.org/10.1515/zna-2010-1111
https://hdl.handle.net/11436/3816

Collections

  • FEF, Kimya Bölümü Koleksiyonu [474]
  • Scopus İndeksli Yayınlar Koleksiyonu [5931]



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