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Pyrene-Functionalized Polyacetylenes: Synthesis and Photoluminescence Property

机译:yr官能化的聚乙炔:合成和光致发光性能

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摘要

Four pyrene-functionalized polyacetylenes were designed and prepared through a typical post-polymerization modification route, which is the highly efficient reaction between activated ester and primary anime groups. The chemical structures of the resultant polymers were characterized with multiple spectroscopic techniques and the data indicated the successful functionalization of the polyacetylenes. The introduction of the pyrene moieties into the polymer structure allowed us to investigate the interactions between the polymer backbone and side chains. For the mono-substituted polyacetylenes, both the monomer and excimer emission features of the pyrene groups could be recorded, while for the di-substituted polyacetylenes, the fluorescence from the pyrene excimer vanished and the fluorescence intensity from the pyrene monomer decreased, the fluorescence from the polymer chain predominated the emission features. The concomitant energy transfer from the pyrene monomer and excimer to poly(diphenylacetylene) backbone was associated with the underlying mechanism. In addition to the substitution modes, the linkage between the poly(diphenylacetylene) backbone and the pyrene moiety also played a significant role in the determination of the emission species. A long alkyl spacer was beneficial to the pyrene monomer emission while a short one may be helpful to the formation of the excimer and intramolecular energy transfer.
机译:通过典型的聚合后修饰途径,设计和制备了四种pyr官能化的聚乙炔,这是活化酯和一级动漫基团之间的高效反应。用多种光谱技术表征了所得聚合物的化学结构,数据表明聚乙炔的成功官能化。将the部分引入聚合物结构使我们能够研究聚合物主链与侧链之间的相互作用。对于单取代的聚乙炔,可以同时记录the基团的单体和受激准分子的发射特征,而对于双取代的聚乙炔,,的准分子的荧光消失,from单体的荧光强度降低,decreased的荧光强度降低。聚合物链占主导地位的排放特征。从the单体和受激准分子到聚二苯乙炔主链的伴随能量转移与潜在机理有关。除取代模式外,聚二苯乙炔主链与pyr部分之间的连接在确定发射物种方面也起着重要作用。较长的烷基间隔基有利于monomer单体的发射,而较短的烷基间隔基可能有助于准分子的形成和分子内的能量转移。

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