Structure-Spectroscopy Correlation in the Self-Assembled Perylene Diimide-Based Dimers via Inter-Chromophore Coupling.

IF 2.8 2区 化学 Q3 CHEMISTRY, PHYSICAL The Journal of Physical Chemistry B Pub Date : 2024-10-10 Epub Date: 2024-09-05 DOI:10.1021/acs.jpcb.4c04181
Sanjukta Parida, Sanjib K Patra, Sabyashachi Mishra
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Abstract

The impact of conformational change on the ground and excited states of seven perylene diimide (PDI)-based dimeric systems is examined by introducing longitudinal shift, transverse shift, and rotation of one monomer with respect to another. The minimum energy conformations are compared via an energy decomposition analysis. The heteroatom-substituted dimeric systems, such as B2 N2-embedded PDI, trans-thio-PDI (trans-S2-PDI), and N-PDI, show BN···π, C═S···π, and N···H interactions that survive over a longer range of longitudinal and transverse shifts. The excitonic coupling analysis reveals that both Coulomb- and CT-mediated couplings are crucial for understanding aggregate absorption spectra. While the Coulomb coupling exhibits a monotonic behavior with conformation changes, the CT component changes significantly with minor geometrical deviations. The interplay between the two couplings leads to J-type, H-type, and null aggregates, depending on the conformations of the dimers. The overall trend of both couplings is consistent across all systems, although they differ in magnitude. The trans-S2-PDI shows the strongest Coulomb and CT couplings, while it is weak in perylene and B2N2-PDI dimers. The resonant model for strongly coupled Frenkel excitonic (FE) and CT states successfully characterizes the single- and double-band nature of absorption spectra in dimers. In strong coupling regions, the dimers show blue-shifted single-band excitation to the upper FE state. In contrast, excitation to the lower FE and upper CT states produces a red-shifted two-band spectrum in the weakly coupled regions. The intensity of the CT band diminishes with the monomer separation. In most cases, the perpendicularly stacked structures show null-aggregate behavior with no spectral shift due to the absence of Coulomb and CT couplings. The exciton relaxation pathway of the heteroatom-substituted PDIs is found to be influenced by the presence of nπ* states between the FE and CT states.

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通过色团间偶联自组装的二聚体中的结构-光谱相关性
通过引入纵向移动、横向移动以及一个单体相对于另一个单体的旋转,研究了构象变化对七个基于过二亚胺(PDI)的二聚体系统的基态和激发态的影响。通过能量分解分析比较了最小能量构象。杂原子取代的二聚体系,如 B2 N2-嵌入式 PDI、反式硫代-PDI(反式-S2-PDI)和 N-PDI,显示出 BN--π、C═S--π 和 N-H 相互作用在较长的纵移和横移范围内都能存活。激子耦合分析表明,库仑耦合和 CT 介导的耦合对于理解聚合体吸收光谱至关重要。库仑耦合随构象变化而呈现单调行为,而 CT 分量则随微小的几何偏差而发生显著变化。这两种耦合的相互作用会导致 J 型、H 型和空聚合体,具体取决于二聚体的构象。这两种耦合的总体趋势在所有体系中都是一致的,尽管它们在大小上有所不同。反式-S2-PDI 显示出最强的库仑耦合和 CT 耦合,而在过烯烃和 B2N2-PDI 二聚体中则较弱。强耦合弗伦克尔激子(FE)态和 CT 态的共振模型成功地描述了二聚体吸收光谱的单带和双带性质。在强耦合区域,二聚体的上层 FE 状态显示出蓝移单带激发。相反,在弱耦合区域,激发到下层 FE 和上层 CT 状态会产生红移双波段光谱。CT 波段的强度随着单体分离而减弱。在大多数情况下,由于不存在库仑耦合和 CT 耦合,垂直堆叠结构显示出无聚集行为,光谱没有偏移。研究发现,杂原子取代的 PDI 的激子弛豫路径受到 FE 和 CT 态之间 nπ* 态的影响。
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CiteScore
5.80
自引率
9.10%
发文量
965
审稿时长
1.6 months
期刊介绍: An essential criterion for acceptance of research articles in the journal is that they provide new physical insight. Please refer to the New Physical Insights virtual issue on what constitutes new physical insight. Manuscripts that are essentially reporting data or applications of data are, in general, not suitable for publication in JPC B.
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Probing Bioinorganic Electron Spin Decoherence Mechanisms with an Fe2S2 Metalloprotein. Issue Editorial Masthead Issue Publication Information Structure-Spectroscopy Correlation in the Self-Assembled Perylene Diimide-Based Dimers via Inter-Chromophore Coupling. Absorption of Polypropylene in Dipalmitoylphosphatidylcholine Membranes: The Role of Molecular Weight and Initial Configuration of Polymer Chains.
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