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首页> 外文期刊>Dyes and Pigments >New triazine bridged triads based on BODIPY-porphyrin systems: Extended absorption, efficient energy transfer and upconverted emission
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New triazine bridged triads based on BODIPY-porphyrin systems: Extended absorption, efficient energy transfer and upconverted emission

机译:基于Bodipy-Porphyrin系统的新Tri嗪桥接三合会:扩展吸收,高效的能量转移和升级排放

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摘要

Two novel triads connecting a BODIPY to ethylenediamine substituted porphyrins via triazine linker have been synthesized and characterized. One of the triads is a linear D-A structure with one BODIPY (D) and one porphyrin (A) bridged by the triazine linker and the other one is a branched A-D 4 structure with the porphyrin core linked to four BODIPY units. The triads show extended absorption in the visible region with contributions from both porphyrin (Soret band centred at 410-430 nm) and BODIPY units (strong absorption at N 502 nm) in good agreement with the expected molar ratio. Both triads exhibit linear and nonlinear optical properties featuring an efficient energy transfer from the BODIPY donor to the porphyrin acceptor. The nonlinear upconverted emission properties of the triads were studied by two-photon excitation in the Near-infrared (NIR, 710-930 nm). The maximum two-photon absorption cross-section values for the triads (40-70 GM) are larger than those typically reported in this wavelength range for porphyrins and BODIPY. Both the green emission of BODIPY (approximate to 514 nm) and the red emission of porphyrins (650-750 nm) were observed under NIR excitation at 930 nm. The distinct features of triads, namely i) an extended absorption; ii) an efficient energy transfer and iii) the nonlinear upconverted emission featuring a large separation between the excitation and emission wavelengths could be beneficial for application in sensing and imaging procedures.
机译:合成并表征了两种通过三嗪连接剂将BODIPY连接到乙二胺取代卟啉的新型三元组。其中一个是线性D-a结构,一个BODIPY(D)和一个卟啉(a)通过三嗪连接物桥接,另一个是分支的a-D 4结构,卟啉核心连接到四个BODIPY单元。三元组在可见光区域显示出扩展的吸收,来自卟啉(Soret带中心位于410-430 nm)和BODIPY单元(在N 502 nm处具有强吸收)的贡献与预期的摩尔比非常一致。这两种三元组都表现出线性和非线性光学特性,具有从BODIPY供体到卟啉受体的有效能量转移。通过近红外(NIR,710-930nm)双光子激发,研究了三元组的非线性上转换发射特性。三元组(40-70 GM)的最大双光子吸收截面值大于卟啉和BODIPY在该波长范围内的典型值。在930nm的近红外激发下,观察到BODIPY的绿色发射(约514nm)和卟啉的红色发射(650-750nm)。三位一体的显著特征,即i)扩展吸收;ii)有效的能量转移和iii)具有激发和发射波长之间大间隔的非线性上转换发射可能有利于在传感和成像程序中的应用。

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