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Solarskin™ derived as a product of processing raw materials which fully comply with the stipulated terms of the Regulation (EC) No. 1907/2006 of the European Parliament and of the Council concerning the Registration, Evaluation, Authorization and Restrictions of CHemical products (REACH).
The above regulation has replaced the Directives 67/548 and 1999/45.
Solarskin™ is registered in the State General Laboratory and the D.D.A. complies with the REACH Regulation No. 1907/2006 / (EK), Article 31 and the Regulation No. 453/2010 (EU). The entry also meets the new legislation CLP, which has become mandatory for all chemicals since 01.06.2015.

CERTIFICATIONS & TEST TRIALS

– NCSR Demokritos, Institute of Nanoscience and Nanotechnology (Study of properties permeability and hydrophobicity of Solarskin™)
– TUV testing according to standards: ISO 2409, ISO 11507, ISO-11998 & IEC 61215,
– Quality management system in production by ISO 9001: 2008.

PATENTS OF THE SCIENTIFIC TEAM

1) N.D. Papadopoulos et.al. “Valuable Products Obtained From Red Mud”, PCT, WO/2010/079369, July, 15, 2010.
2) N.D. Papadopoulos et.al. “Direct production of hydrogen from water”, ΟΒΙ, 2012.
3) BFP hellas O.E., “Method of restoration of solid substrates and development of water / oil repellent of protective coating system with high resistance and transparency”, ΟΒΙ, 2014.

PUBLICATIONS OF THE SCIENTIFIC TEAM.

1) Papadopoulos, D. N. et al. (2013). Experimental and first-principles characterization of functionalized magnetic nanoparticles. Journal of Chemical Physics and Physical Chemistry, vol. 14 (6), pp. 1934 – 1942. (doi: 10.1002/cphc.201300161)2) Papadopoulos, D. N. et al. (2013). Low-temperature synthesis of maghemite nanoparticles. Key Engineering Materials , vol. 543, pp. 468 – 471. (doi: 10.4028/www.scientific.net/KEM.543.468)

3) Papadopoulos, D. N. et al. (2012). Growth, structural and mechanical characterization and reliability of chemical vapor deposited Co and Co 3O4 thin films as candidate materials for sensing applications. Journal of Optoelectronics and Advanced Materials, vol. 14 (1-2), pp. 169 – 175.

4) Papadopoulos, D. N. et al. (2012). Growth, structural and mechanical characterization and reliability of chemical vapor deposited Co and Co3O4 thin films as candidate materials for sensing applications. Key Engineering Materials, vol. 495, pp. 108 – 111. (doi: 10.4028/www.scientific.net/KEM.495.108)

5) Papadopoulos, D. N. et al. (2012). TiO2 coating onto Fe powders via Fluidized Bed CVD. Key Engineering Materials , vol. 495, pp. 138 – 141. (doi: 10.4028/www.scientific.net/KEM.495.138)

6) Papadopoulos, D. N. et al. (2011). Effects of MOCVD thin cobalt films’ structure and surface characteristics on their magnetic behavior. Chemical Vapor Deposition, vol. 17 (7-9), pp. 211 – 220. (doi: 10.1002/cvde.201106907)

7) Papadopoulos, D. N. et al. (2011). MOCVD cobalt oxide deposition from inclusion complexes: Decomposition mechanism, structure, and properties. Journal of the Electrochemical Society, vol. 158 (1), pp. P5 – P13. (doi: 10.1149/1.3509698)

8) Metaxa, E. et al. (2011). Elucidation of the Local Character of Chemical Reactivity through the Time-Resolved Chromatographic Analysis of Local Molecular Properties of Gaseous Molecules Adsorbed on Solid Surfaces. The Journal of Physical Chemistry, vol. C 115 (51), pp. 25389–25412. (doi: 10.1021/jp2089824)9) Papadopoulos, D. N. et al. (2010). Cyclodextrin inclusion complexes as novel MOCVD precursors for potential cobalt oxide deposition. Applied Organometallic Chemistry, vol. 24 (2), pp. 112 – 121. (doi: 10.1002/aoc.1588)

10) Metaxa, E. et al. (2009). Gas Chromatographic Study of Degradation Phenomena concerning Building and Cultural Heritage Materials. Journal of Hazardous Material, vol 164 (2-3), pp. 592-599. (doi:10.1016/j.jhazmat.2008.08.114)

11) Papadopoulos, D. N. et al. (2008). Magnetic properties in red mud after thermal treatment. Journal of Optoelectronics and Advanced Materials, vol. 10 (5), pp. 1085 – 1088.

12) Papadopoulos, D. N. et al. (2008). Synthesis and characterization of cobalt precursors for the growth of magnetic thin films by the MOCVD method. Journal of Optoelectronics and Advanced Materials, vol. 10 (5), pp. 1098 – 1102.

13) Metaxa, E. et al. (2007). Time-Resolved Gas Chromatography Applied to Submonolayer Adsorption Modeling and Experimental Approach. Applied Surface Science, vol. 253 (13), pp. 5841-5845.

14) Papadopoulos, D. N. et al. (2005). Structural and electrical properties of undoped SnO2 films developed by a low cost CVD technique with two different methods: Comparative study. Journal of Optoelectronics and Advanced Materials, vol. 7 (5), pp. 2693 – 2706.



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