Platinum free thermally curable siloxanes for optoelectronic application – synthesis and properties |
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Authors: | Nils Steinbrü ck,Svenja Pohl,Guido Kickelbick |
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Affiliation: | Saarland University, Inorganic Solid State Chemistry, Campus Building C41, 66123 Saarbrücken Germany, |
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Abstract: | Polysiloxanes for applications in the area of optical devices are usually based on two-component platinum catalysed cross-linked materials. Here we report the synthesis and properties of a novel one-component siloxane that can be thermally cured showing similar tailorable properties like commercially available encapsulation systems without using a noble metal catalyst. The pre-curing material is formed by an acid catalysed condensation reaction of trialkoxysilanes (TAS), dialkoxysilanes (DAS) and alkoxy-terminated polysiloxanes. NMR analysis of the formed polymeric compounds reveal that the materials are partially cross-linked gels. The obtained compounds can be thermally cured and consolidated at temperatures between 160 and 200 °C. Depending on the composition a tuneable hardness in between 50–90 Shore A, refractive indices of 1.494–1.505, as well as high temperature stabilities up to 443 °C were obtained. The high thermal- and photostability, the high transparency, as well as the tailorable refractive index makes these materials to ideal systems for optoelectronic applications. Investigations under increased temperatures and high-density illumination reveal that the material can withstand conditions, which are typical for high-performance light emitting diodes (LED).One component thermally curable polysiloxanes with tailorable properties were developed and investigated for their use as LED encapsulation materials. |
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