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Functional metallo-supramolecular polyelectrolyte systems: Synthesis, structure and properties in solution

Functional metallo-supramolecular polyelectrolyte systems: Synthesis, structure and properties in solution
功能性金属超分子聚电解质体系:溶液中的合成、结构和性能
批准号:
448712046
负责人:
Professor Dr. Ulrich S. Schubert
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
--
资助国家:
德国
项目状态:
未结题
起止时间:

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中文摘要
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英文摘要
In the proposed joint project between the two groups from polymer chemistry (Schubert) and polymer physics (Tsvetkov) the preparation of charged side-chain metallopolymers and their molecular and conformational analysis in solution is targeted. The applicants aim for a fundamental understanding of how the various structural parameters of the metallopolymers (nature of the metal center, presence of charges, counterions, etc.) contribute to their solution properties. For this purpose, three different types of metallopolymers will be in focus of interest: Metallopolymers with pending terpyridine complexes, metallocene/metallocenium sites and metal-carbonyl complexes. Such polymers are of significant importance regarding, for instance, (photo)catalytic, optoelectronic, nanotechnological or biomedical applications. However, in-depth investigations correlating their performance to their molecular and conformational structure have not yet been made. The modularity of synthesis, combining controlled radical polymerization techniques and metal-to-ligand coordination chemistry, will allow an accurate preparation of a systematic set of metallopolymer libraries (Schubert group) required for the analysis by the various hydrodynamic and optical methods available in the Tsvetkov group. The applicants have agreed cooperation with two external partners to further utilize the synthesized metallopolymers to fabricate bimetallic nanoparticles for data-storage applications (Wong group, Hong Kong, P.R. China) and as photoactive antimicrobial metallodrugs (Schatzschneider group, Würzburg, Germany).Finally, interpolyelectrolyte complexes, the supramolecular associates of the prepared polycationic metallopolymers and natural or synthetic polyanions, will be assembled and characterized accordingly.
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