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首页> 外文期刊>Journal of the American Chemical Society >Null Exciton-Coupled Chromophoric Dimer Exhibits Symmetry-Breaking Charge Separation
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Null Exciton-Coupled Chromophoric Dimer Exhibits Symmetry-Breaking Charge Separation

机译:NULL激子偶联的发色二聚体表现出对称性的电荷分离

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摘要

A comprehensive understanding of the structure-property relationships in multichromophoric architectures has pushed the limits for developing robust photosynthetic mimics and molecular photovoltaics. The elusive phenomenon of null exciton splitting has gathered immense attention in recent years owing to the occurrence in unique chromophoric architectures and consequent emergent properties. Herein, we unveil the hitherto unobserved null exciton coupling assisted highly efficient photo-induced symmetry-breaking charge separation (SB-CS) in a Greek cross (+)-oriented spiro-conjugated perylenediimide dimer (Sp-PDI_2). Quantum chemical calculations have rationalized the infrequent manifestation of null exciton coupling behavior in Sp-PDI_2. Negligible contribution of long-range Coulombic and short-range charge-transfer mediated coupling renders a monomer-like spectroscopic signature for Sp-PDI_2 in toluene. The Greek cross (+)-arranged Sp-PDI_2 possesses a selective hole-transfer coupling, facilitating the ultrafast dissociation of null excitons and evolution of the charge-separated state in polar solvents. Radical cationic and anionic spectroscopic signatures were characterized by employing femtosecond transient absorption spectroscopy. The substantial hole transfer electronic coupling and lower activation energy barrier of Sp-PDI_2 accelerated the charge separation rate. The rate of charge recombination (CR) markedly decelerated due to falling into the inverted region of the Marcus parabola, where the driving force of CR is larger than the total reorganization energy for CR. Hence, the ratio of the rates for SB-CS over CR of Sp-PDI_2 exhibited an unprecedently high value of 2647 in acetonitrile. The current study provides impeccable evidence for the role of selective charge filtering in governing efficient SB-CS and thereby novel insights towards the design of biomimics and advanced functional materials.
机译:全面了解多尺寸架构中的结构性质关系推动了开发鲁棒光合模拟和分子光伏的限制。近年来由于独特发烧架构的发生和随之而来的紧急性质,近年来近年来的难以关注的难以置信。在此,我们揭示了迄今为止的Nulloved Null激子偶联辅助高效的光学诱导的对称电荷分离(SB-CS),以希腊十字(+)定向的螺旋缀合的前亚丁二聚体二聚体(SP-PDI_2)。量子化学计算合理化了SP-PDI_2中的空激子耦合行为的罕见表现。远程库仑和短程电荷转移介导的偶联的可忽略不计贡献促使SP-PDI_2在甲苯中的单体样光谱签名。希腊交叉(+) - 布置的SP-PDI_2具有选择性的空穴传递耦合,促进零激子的超快解离和极性溶剂中的电荷分离状态的演变。通过采用飞秒瞬态吸收光谱,特征是自由基阳离子和阴离子光谱鉴定。 SP-PDI_2的大量空穴传输电子耦合和下激活能量屏障加速了电荷分离速率。由于落入马氏抛物线的倒置而显着减速的电荷重组(Cr)速率,其中Cr的驱动力大于Cr的总重组能量。因此,SP-PDI_2对SP-PDI_2的CR的速率与乙腈的不可或缺的高值为2647。目前的研究为有效的SB-CS提供了选择性电荷滤波的作用,提供了无可挑剔的证据,从而设计了对生物摩染和先进功能材料设计的新颖见解。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2021年第34期|13769-13781|共13页
  • 作者单位

    School of Chemistry Indian Institute of Science Education and Research Thiruvananthapuram (IISER TVM) Thiruvananthapuram 695551 Kerala India;

    School of Chemistry Indian Institute of Science Education and Research Thiruvananthapuram (IISER TVM) Thiruvananthapuram 695551 Kerala India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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