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Innovative oxygen evolving catalysts, taken from the pool of nanosized, water soluble, molecular metal oxides, the so-called polyoxometalates (POMs), represent an extraordinary opportunity in the field of artificial photosynthesis. These catalysts possess a highly robust, totally inorganic structure, and can provide a unique mimicry of the oxygen evolving center in photosynthetic II enzymes. As a...
The range of potential applications of fullerenes and fullerene derivatives in materials science is becoming broader in virtue of the increased number of derivatives that are continuously produced. New opportunities arise from the combination of the fullerene properties with those of other classes of materials, such as polymers, electro- or photoactive units, liquid crystals, etc. In this article...
The most significant developments of recent years on organofullerene materials are presented in this comprehensive review. With selected examples chosen from the current literature, original and well-established synthetic protocols utilizing mainly addition and cycloaddition reactions that have been successfully applied to fullerenes, are discussed. Among these, 1,3-dipolar cycloadditions, Bingel...
The most significant developments of recent years on organofullerene materials are presented in this comprehensive review. With selected examples chosen from the current literature, original and well-established synthetic protocols utilizing mainly addition and cycloaddition reactions that have been successfully applied to fullerenes, are discussed. Among these, 1,3-dipolar cycloadditions, Bingel...
Bimetallic nanoparticles are considered as next generation materials with synergistic optical, electrical and catalytic properties. They are composed of two different metals and exhibit superior performance as compared to their monometallic nanoparticles. In this present study we have developed a green synthetic route for the synthesis of Cu@Pt, using polyphenol as reducing, as well as functionalizing...
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