Lin Ruey-Chorng, Kuo Shiao-Wei
Department of Materials and Optoelectronic Science, National Sun Yat-Sen University Kaohsiung 80424 Taiwan
RSC Adv. 2018 Apr 11;8(24):13592-13611. doi: 10.1039/c8ra00506k. eCollection 2018 Apr 9.
Well-defined thermally polymerizable hyperbranched polymers (TPA-BZs) containing various numbers of triphenylamine (TPA) and benzoxazine (BZ) units have been prepared using a "click-like" reaction concept, through one-pot Mannich condensations of 4-(bis(4-aminophenyl)amino)phenol (TPA-2NH-OH, as the AB branching groups), aniline (as the focal groups), CHO, and phenol in 1,4-dioxane, with a unique feeding approach. Two design strategies for the chemical construction were applied: (i) simple hyperbranched TPA-BZs, such as those containing one or three TPA units, developed from the focal or the terminal group direction to form the resultant monomers; (ii) three dendritic TPA-BZs containing four TPA units possessing different degrees of branching (DBs) for the conformation study. The exothermic temperature for the dendritic TPA-BZs decreased upon increasing the DB. The bathochromic shifts of the dendritic TPA-BZs increased upon increasing the number of TPA units, in UV-Vis absorption and PL emission spectra, presumably because of an increase in the effective conjugation length. In addition, the polymerized dendritic TPA-BZ DG1 possessed thermal properties superior to those of the hyperbranched TPA-BZ polybenzoxazines, possibly because the segmental mobility in the polymer network was restricted by the dendrimer core group and because of its symmetrical construction. The hyperbranched TPA-BZ possessed unique photophysical properties, suggesting potential applications in optoelectronic devices.
通过“类点击”反应概念,采用独特的加料方式,在1,4 - 二氧六环中,使4 - (双(4 - 氨基苯基)氨基)苯酚(TPA - 2NH - OH,作为AB支化基团)、苯胺(作为焦点基团)、CHO和苯酚进行一锅法曼尼希缩合反应,制备了含有不同数量三苯胺(TPA)和苯并恶嗪(BZ)单元的结构明确的热聚合超支化聚合物(TPA - BZs)。应用了两种化学结构设计策略:(i)简单的超支化TPA - BZs,例如那些含有一个或三个TPA单元的聚合物,从焦点基团或末端基团方向发展以形成所得单体;(ii)三种含有四个TPA单元的树枝状TPA - BZs,具有不同的支化度(DBs)用于构象研究。树枝状TPA - BZs的放热温度随DB增加而降低。在紫外 - 可见吸收光谱和光致发光发射光谱中,树枝状TPA - BZs的红移随TPA单元数量增加而增加,这可能是由于有效共轭长度增加所致。此外,聚合后的树枝状TPA - BZ DG1具有优于超支化TPA - BZ聚苯并恶嗪的热性能,这可能是因为聚合物网络中的链段迁移率受到树枝状核心基团的限制以及其对称结构的缘故。超支化TPA - BZ具有独特的光物理性质,表明其在光电器件中具有潜在应用。