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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Effect of Group-14 and Group-16 Substitution on the Photophysics of Structurally Related Donor-Acceptor Polymers
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Effect of Group-14 and Group-16 Substitution on the Photophysics of Structurally Related Donor-Acceptor Polymers

机译:第14和第16组取代对结构相关的供体-受体聚合物的光物理的影响

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A series of eight polymers based on the parent structure, poly[2,6-(4,4-bis-(2-ethyIhexyl)-4H-cyclopenta[2,1-b;3,4-b']-dithiophene)-alt-4,7-(2,1,3-benzothiadiazole)3 (PCPDTBT), were synthesized for a systematic group-14 and group-16 single atom substitution study. The eight polymers were constructed with C/Si/Ge and S/Se/Te varied in the donor and acceptor, respectively. By examining experimental spectroscopic data and DFT calculated geometry and electronic structure, we gain new physical insights into the effects of heavy atom substitution at different positions in a donor—acceptor polymer. Absorption and emission experiments demonstrate that group-14 substitution in the donor unit only slightly blue shifts the long wavelength absorption (HOMO to LUMO transition) and that group-16 substitution in the acceptor affects this absorption to a much greater extent. Solvatochromism experiments show that the charge transfer excited state is most polarized when the acceptor contains a lighter atom and is influenced very little by the atom in the donor. Changing the atom in the acceptor has less effect on the absorption of the Si-donor and Ge-donor polymers than the C-donor polymers. Polymers that contain C-donors are stronger light absorbers than their Si-donor and Ge-donor analogues regardless of which atom is in the acceptor position. These results clarify the effects of single atom substitution on donor—acceptor polymers and aid in the future design of polymers containing heavy atoms.
机译:一系列基于母体结构的八种聚合物,聚[2,6-(4,4-双-(2-乙基己基)-4H-环戊[2,1-b; 3,4-b']-二噻吩)合成了-alt-4,7-(2,1,3-苯并噻二唑)3(PCPDTBT),用于系统的第14组和第16组单原子取代研究。用供体和受体分别变化的C / Si / Ge和S / Se / Te构造了八种聚合物。通过检查实验光谱数据和DFT计算的几何形状和电子结构,我们获得了新的物理见解,了解了重原子取代在供体-受体聚合物中不同位置的影响。吸收和发射实验表明,供体单元中的第14组取代仅使蓝光稍微改变了长波长吸收(从HOMO到LUMO的跃迁),受体中的第16组取代对这种吸收的影响更大。溶剂致变色实验表明,当受体包含较轻的原子时,电荷转移激发态最极化,并且受主中的原子影响很小。改变受体中的原子对Si-施主和Ge-施主聚合物的吸收的影响小于C-施主聚合物。包含C供体的聚合物比其Si供体和Ge供体类似物具有更强的吸光度,无论哪个原子位于受体位置。这些结果阐明了单原子取代对施主-受主聚合物的影响,并有助于将来设计包含重原子的聚合物。

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