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Polymorphism and luminescence properties of CMONS organic crystals: bulk crystals and nanocrystals confined in gel-glasses

机译:CMONS有机晶体的多态性和发光特性:凝胶晶体中的块状晶体和纳米晶体

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摘要

In order to compare the polymorphism of 1-cyano-1-(4-nitrophenyl)-2-(4-methoxyphenyl)ethene CMONS crystallized in solutions to that of CMONS nanocrystals grown in the pores of dense sol-gel matrices, we have first studied the CMONS polymorphism in various solvents which were then used in the nanocrystallization processes. The different polymorphs were characterized by differential scanning calorimetry, X-ray diffraction and absorption as well as luminescence spectroscopies. The differences observed between CMONS powders and CMONS nanocrystals illustrate the role played by the silicate matrices on the polymorphism of CMONS. This matrix effect would be used to stabilize a particular polymorph of an organic phase and thus to adjust the optical properties of the nanocomposite hybrid organic-inorganic material.
机译:为了比较在溶液中结晶的1-氰基-1-(4-硝基苯基)-2-(4-甲氧基苯基)乙烯CMONS与在致密的溶胶-凝胶基质孔中生长的CMONS纳米晶体的多态性,我们首先研究了在各种溶剂中的CMONS多态性,然后将其用于纳米结晶过程。通过差示扫描量热法,X射线衍射和吸收以及发光光谱学来表征不同的多晶型物。 CMONS粉末和CMONS纳米晶体之间观察到的差异说明了硅酸盐基质对CMONS多态性的作用。该基质效应将用于稳定有机相的特定多晶型物,从而调节纳米复合杂化有机-无机材料的光学性质。

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