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Featured researches published by Kira Fries.


Thin Solid Films | 1999

Development of fast switching photochromic coatings on transparent plastics and glass

Martin Mennig; Kira Fries; Marion Lindenstruth; Helmut K. Schmidt

Abstract A new photochromic organic-inorganic nanocomposite (Nanomer ® ) coating system has been developed. It is based on an epoxysilane as network former, an organic bisepoxide as spacer, an organic amine as thermal cross-linker and surface modified SiO 2 nanoparticles as fillers. This coating system is compatible with different photochromic dyes, like oxazines and pyrans. Photochromic coatings with blue, yellow, red, green, violet and neutral tints were prepared on flat glass and PMMA substrates by dip coating and cured for 3 h at 100°C. The photochromic coatings show the following properties: the transmittance changes reversibly between 80 and 20% with half fading times of about 2–20 s (comparable to the half fading time of the appropriate dye in ethanolic solution) after UV irradiation for 15 s with 5 mW/cm 2 . The coatings show a scratch hardness of about 15 g (scratch test with Vickers indenter, coating thickness 10 μm). The addition of only 3 wt.% SiO 2 nanoparticles relative to epoxysilane increases the scratch resistance of the coatings to about 20 g without changing the fast kinetics of the incorporated photochromic dye(s). The long term stability of the photochromic dye(s) in the matrix system can be considerably improved by the introduction of additives like antioxidants, hindered amine light stabilizer (HALS) and UV stabilizers. The half lifetime (decay to 50% of the initial photochromic intensity) of a blue spirooxazine dye (Blue A) measured in a dry sun-test (75 mW/cm 2 ) could be increased from 20 h without any additive up to 200 h with an UV absorber (Tinuvin 327) as a stabilizer, which is assumed to be sufficient for ophthalmic applications.


Archive | 1999

Photochromic coating composition comprising nanoscales particles and process for providing substrate coated with the same

Kira Fries; Lisong Hou; Marion Pietsch; Martin Mennig; Helmut Schmidt


Archive | 1998

Organic/inorganic composites with low hydroxyl group content, method for their production and application

Kira Fries; Martin Mennig; Helmut Schmidt; Ulrich Sohling; Qiwu Xing; Michael Zahnhausen


Archive | 1998

Hydroxylgruppen-arme organisch/anorganische komposite, verfahren zu deren herstellung und deren verwendung

Kira Fries; Martin Mennig; Helmut Schmidt; Ulrich Sohling; Qiwu Xing; Michael Zahnhausen


Archive | 1999

Photochromic coating compound and substrate coated with same

Kira Fries; Fine Hou; Marion Lindenstruth; Martin Mennig; Helmut Schmidt


MRS Proceedings | 1999

Photochromic organic-inorganic hybrid nanocomposite hard coatings with tailored fast switching properties

Martin Mennig; Kira Fries; Helmut K. Schmidt


Archive | 2010

PROCESS FOR PRODUCING ENCAPSULATED METAL COLLOIDS AS INORGANIC COLOURED PIGMENTS

Claudia Fink-Straube; Kira Fries; Martin Mennig; Dieter Anschütz; Sarah Schumacher; Peter William de Oliveira; Masahiko Ishii; Wataru Murata; Veronique Vandenberghe


Archive | 2011

Verfahren zur Herstellung von eingekapselten Metall-Kolloiden als anorganische Farbpigmente

Sarah Schumacher; Peter William de Oliveira; Masahiko Ishii; Wataru Murata; Claudia Fink-Straube; Kira Fries; Martin Mennig; Anschütz, Dieter, Dipl.-Chem.; Veronique Vandenberghe


Archive | 2010

Method for producing encapsulated metal colloids as inorganic pigments

Claudia Fink-Straube; Kira Fries; Martin Mennig; Dieter Anschütz; Sarah Schumacher; Oliveira Peter William De; Masahiko Ishii; Wataru Murata; Veronique Vandenberghe


Archive | 2009

A process for the preparation of encapsulated metal colloids as inorganic color pigments

Dieter Anschütz; Claudia Fink-Straube; Kira Fries; Masahiko Aichi Ishii; Martin Mennig; Wataru Murata; Peter William de Oliveira; Sarah Schumacher; Veronique Vandenberghe

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