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交替二烷基硅撑间隔给体-受体共聚物的折叠:齐聚物方法。

Folding of alternating dialkylsilylene-spaced donor-acceptor copolymers: the oligomer approach.

机构信息

Department of Chemistry, National Taiwan University, Taipei, 106, Taiwan.

出版信息

Chemistry. 2012 Jan 2;18(1):347-54. doi: 10.1002/chem.201102031. Epub 2011 Dec 8.

Abstract

A series of oligmers with donor-acceptor pairs separated by diisopropylsilylene (iPr(2)Si) spacers, composed of monomer 4b, dimer 5, trimer 6, and tetramer 7, were synthesized to scrutinize the folding behavior. Monomer 4a with a dimethylsilylene (Me(2)Si) spacer was also prepared for comparison. The 4-aminostyrene moiety was used as the donor and the stilbene moiety as the acceptor. Both steady-state and time-resolved fluorescence spectroscopic measurement were made. Regardless of the substituents on the silicon atom, the emission spectra of 4a and 4b exhibit both local excited (LE) emission of the acceptor chromophore and emission from the charge-separated state (CT emission), which are similar to that of the corresponding Me(2)Si-spaced copolymer 2a with the same donor and acceptor chromophores, but different from that of the copolymer with the iPr(2)Si spacer 2b. Dimer 5 behaves like 4 and 2a. As the chain length of the oligomers increases, the emission properties of the higher homologues become prone to that of 2b. Thus, tetramer 7 exhibits emission from the charge-transfer complex, which is essentially same as that of 2b. Moreover, charge-transfer absorptions emerge in 6 and 7. These results suggest that the folding nature of oligomers approaches that of the corresponding polymer, as the degree of oligomerization increases, and the electronic interactions between adjacent donor-acceptor pairs are controlled by the steric effect of the substituents on the silicon atoms and concomitant amplification of the stabilizing energy by extending the distance of the folding structure.

摘要

一系列具有供体-受体对的齐聚物,通过二异丙基硅(iPr(2)Si)间隔基隔开,由单体 4b、二聚体 5、三聚体 6 和四聚体 7 组成,用于仔细研究折叠行为。还制备了具有二甲基硅(Me(2)Si)间隔基的单体 4a 进行比较。4-氨基苯乙烯部分用作供体,二苯乙烯部分用作受体。进行了稳态和时间分辨荧光光谱测量。无论硅原子上的取代基如何,4a 和 4b 的发射光谱都表现出受体发色团的局部激发(LE)发射和电荷分离态(CT 发射),这与具有相同供体和受体发色团的相应 Me(2)Si 间隔共聚体 2a 相似,但与具有 iPr(2)Si 间隔基的共聚体 2b 不同。二聚体 5 的行为类似于 4 和 2a。随着齐聚物链长的增加,较高同系物的发射性质变得类似于 2b。因此,四聚体 7 表现出电荷转移复合物的发射,这与 2b 基本相同。此外,在 6 和 7 中出现了电荷转移吸收。这些结果表明,随着齐聚物聚合度的增加,齐聚物的折叠性质趋近于相应聚合物的折叠性质,并且相邻供体-受体对之间的电子相互作用受到硅原子上取代基的空间效应和折叠结构距离延伸的稳定能放大的控制。

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