首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Toward panchromatic organic functional molecules: Density functional theory study on the electronic absorption spectra of substituted tetraanthracenylporphyrins
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Toward panchromatic organic functional molecules: Density functional theory study on the electronic absorption spectra of substituted tetraanthracenylporphyrins

机译:面向全色有机功能分子:取代四蒽基卟啉电子吸收光谱的密度泛函理论研究

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摘要

To achieve full solar spectrum absorption of organic dyes for organic solar cells and organic solar antenna collectors, a series of tetraanthracenylporphyrin derivatives including H _2(TAnP), H _2(α-F _4TAnP), H _2(β,β′- F _8TAnP), H _2(γ,γ′-F _8TAnP), H _2(δ,δ′-F _8TAnP), H _2[α- (NH _2) _4TAnP], H _2[β,β′-(NH _2) _8TAnP], H _2[γ,γ′-(NH _2) _8TAnP], and H _2[δ,δ′- (NH _2) _8TAnP] was designed and their electronic absorption spectra were systematically studied on the basis of TDDFT calculations. The nature of the broad and intense electronic absorptions of H _2(TAnP) in the range of 500-1700 nm is clearly revealed, and different types of π → π* electronic transitions associated with different absorption bands are revealed to correspond to different electron density moving direction between peripherally fused 14-electron-π-conjugated anthracene units and the central 18-electron-π-conjugated porphyrin core. Introduction of electron-donating groups onto the periphery of the H _2(TAnP) macrocycle is revealed to be able to lead to novel NIR dyes such as H _2[α-(NH _2) _4TAnP] and H _2[δ,δ′-(NH _2) _8TAnP] with regulated UV-vis-NIR absorption bands covering the full solar spectrum in the range of 300-2400 nm.
机译:为了实现用于有机太阳能电池和有机太阳能天线收集器的有机染料的完整太阳光谱吸收,一系列四蒽基卟啉衍生物包括H _2(TAnP),H _2(α-F_4TAnP),H _2(β,β'-F _8TAnP ),H _2(γ,γ'-F_8TAnP),H _2(δ,δ'-F_8TAnP),H _2 [α-(NH _2)_4TAnP],H _2 [β,β'-(NH _2)设计了_8TAnP],H _2 [γ,γ'-(NH _2)_8TAnP]和H _2 [δ,δ'-(NH _2)_8TAnP],并在TDDFT计算的基础上系统地研究了它们的电子吸收光谱。清楚地揭示了H _2(TAnP)在500-1700 nm范围内广泛而强烈的电子吸收的性质,并且揭示了与不同吸收带相关的不同类型的π→π*电子跃迁对应于不同的电子密度周围稠合的14电子-π共轭蒽单元与中心18电子-π共轭卟啉核之间的运动方向。已发现将给电子基团引入H _2(TAnP)大环的外围能够产生新型的近红外染料,例如H _2 [α-(NH _2)_4TAnP]和H _2 [δ,δ'- (NH _2)_8TAnP],具有受监管的UV-vis-NIR吸收带,覆盖了300-2400 nm范围内的整个太阳光谱。

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