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            Spectroscopic investigations of delaminated and intercalated phyllosilicates

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            https://www.ksp.kit.edu/3937300589
            Author(s)
            Friedrich, Frank
            Language
            English
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            Abstract
            The characteristic feature of phyllosilicates like muscovite (KAl2[Si3AlO10(OH)2] is their layered structure. Due to the resulting anisotropic optical and electrical properties this mineral is an important raw material in paint industries and polymer composites.Crucial for many of these properties is on one hand a high aspect ratio of the stacks, which will be enhanced by delamination of the mineral. On the other hand the exchange of the interlayer cations like potassium changes the chemical properties of the muscovite, its refraction behaviour and surface properties. But these interlayer cations are difficult to access and are not exchangeable under normal conditions.Thus a process for the intercalation of cations like Cu2+, Mg2+ or Zn2+ from super saturated nitrate solutions in autoclaves was developed to reveal a chemically modified mica phase.The extensive modification of the muscovite structure, due to the intercalation is monitored by X-ray diffractometry and several spectroscopic methods. The XRD results strongly suggest the formation of an intercalated irregular mixed-layer phase. This is proven by far infrared spectroscopy which show the simultaneous occurrence of both K+ and Cu2+ in the interlayer region, strongly increasing the interlayer space.1Investigations in the mid infrared region using diffuse reflectance spectroscopy (DRIFT) suggest a further migration of the intercalated cations deep into the ditrigonal holes of the tetrahedral sheet and their fixation within these holes close to the OH groups.
            URI
            https://directory.doabooks.org/handle/20.500.12854/59832
            Keywords
            Spektroskopie; Interkalation; Phyllosilicate; Delamination
            DOI
            10.5445/KSP/1000003440
            ISBN
            3937300589
            Publisher
            KIT Scientific Publishing
            Publisher website
            http://www.ksp.kit.edu/
            Publication date and place
            2005
            Series
            Karlsruher Mineralogische und Geochemische Hefte,
            Classification
            History of engineering and technology
            Pages
            VIII, 150 p.
            Review type
            Full text
            Anonymity
            All identities known
            Reviewer type
            Editorial board member; External peer reviewer
            Review stage
            Pre-publication
            Open review
            No
            Publish responsibility
            Books or series editor
            • Imported or submitted locally

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              This project received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 871069.

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