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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Synthesis and excited-state photodynamics of perylene-porphyrin dyads Part 3. Effects of perylene, linker, and connectivity on ultrafast energy transfer
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Synthesis and excited-state photodynamics of perylene-porphyrin dyads Part 3. Effects of perylene, linker, and connectivity on ultrafast energy transfer

机译:ylene-卟啉二联体的合成和激发态光动力学第3部分。of,连接基和连接性对超快能量转移的影响

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New perylene-porphyrin dyads have been designed that exhibit superior light-harvesting and energy-utilization activity compared with earlier generations of structurally related dyads. The new dyads consist of a perylene mono( imide) dye (PMI) connected to a porphyrin (Por) via an ethynylphenyl (ep) linker. The PMI-ep-Por arrays were prepared with the porphyrin as either a zinc or magnesium complex (Por = Zn or Mg) or a free-base form (Por = Fb). The absorption properties of the perylene complement those of the porphyrin. Following excitation of the perylene (forming PMI*) in toluene, each array exhibits ultrafast (k(ENT) greater than or equal to (0.5 ps)(-1)) and essentially quantitative energy transfer from PMI* to the ground-state porphyrin (forming Por*). In each of the arrays, the properties of the excited porphyrin (lifetime, fluorescence yield, etc.) are basically unperturbed from those of the isolated pigment. Thus, following energy transfer, the excited porphyrin is not quenched by deleterious reactions involving the perylene accessory unit that would otherwise limit the ability of Por* to emit light or transfer energy to another stage in a molecular photonic device. Collectively, the PMI-ep-Por dyads represent the successful result of a molecular design strategy to produce arrays with excellent properties for use as light-input and energy-transduction elements for applications in molecular optoelectronics. [References: 48]
机译:与前几代结构相关的二元组相比,设计了新型per-卟啉二元组,它们显示出优异的光收集和能量利用活性。新的二联体由通过乙炔基苯基(ep)接头与卟啉(Por)连接的per单(酰亚胺)染料(PMI)组成。用卟啉以锌或镁络合物(Por = Zn或Mg)或游离碱形式(Por = Fb)制备PMI-ep-Por阵列。 ylene的吸收性质与卟啉的吸收性质互补。在甲苯中激发per(形成PMI *)之后,每个阵列都显示超快的(k(ENT)大于或等于(0.5 ps)(-1)),并且从PMI *到基态卟啉的能量转移基本上是定量的(形成Por *)。在每个阵列中,受激发的卟啉的性质(寿命,荧光产量等)基本上不受孤立颜料的干扰。因此,在能量转移之后,激发的卟啉不会被涉及the辅助单元的有害反应淬灭,否则该有害反应会限制Por *发射光或将能量转移至分子光子器件另一阶段的能力。总的来说,PMI-ep-Por二元组代表了分子设计策略的成功结果,该策略生产出具有优异性能的阵列,用作分子光电中的光输入和能量转换元件。 [参考:48]

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