Size-dependent optical properties of [6]-, [8]- and [10]Cycloparaphenylene dications: the role of degenerate states

IF 1.6 4区 化学 Q4 CHEMISTRY, PHYSICAL Theoretical Chemistry Accounts Pub Date : 2024-03-22 DOI:10.1007/s00214-024-03106-z
Akhil Chakravarthy Kakarlamudi, Probal Nag, Sivaranjana Reddy Vennapusa
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Abstract

The E \(\otimes\) e Jahn–Teller (JT) effects associated with the lowest excited degenerate electronic states (S\(_1\) and S\(_2\)) of [6]-, [8]- and [10]cycloparaphenylene dications are studied to unravel their size-dependent optical properties. A model Hamiltonian within the linear vibronic coupling approach is adapted to generate the JT-split potential energy surfaces. Computed JT stabilization energy follows the trend: [6]CPP\(^{2+}\) < [8]CPP\(^{2+}\) > [10]CPP\(^{2+}\). Theoretical absorption spectral features are generated using the wavepacket simulations within the reduced- and full-dimensional framework. These simulations reproduce the size-dependent absorption spectral broadening where the broadening increases with the increase in CPP ring size. The near-degeneracy of JT-split states (S\(_1\) and S\(_2\)) indicates a possible fluorescence emission from both the states in these molecules.

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6]-、[8]- 和 [10]Cycloparaphenylene dications 大小相关的光学特性:退化态的作用
研究了与[6]-、[8]-和[10]环联苯二阳离子的最低激发变性电子态(S(_1)和S(_2))相关的贾恩-泰勒(JT)效应,以揭示它们与尺寸相关的光学性质。线性振子耦合方法中的哈密顿模型适用于生成 JT 分裂势能面。计算出的 JT 稳定能遵循以下趋势:[6]CPP\(^{2+}\) < [8]CPP\(^{2+}\) > [10]CPP\(^{2+}\).理论吸收光谱特征是在还原和全维框架内利用波包模拟生成的。这些模拟再现了与尺寸相关的吸收光谱展宽,展宽随 CPP 环尺寸的增加而增加。JT 分裂态(S(_1\)和 S(_2\))的近乎退化性表明这些分子中的两种态都可能发出荧光。
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来源期刊
Theoretical Chemistry Accounts
Theoretical Chemistry Accounts 化学-物理化学
CiteScore
3.40
自引率
0.00%
发文量
74
审稿时长
3.8 months
期刊介绍: TCA publishes papers in all fields of theoretical chemistry, computational chemistry, and modeling. Fundamental studies as well as applications are included in the scope. In many cases, theorists and computational chemists have special concerns which reach either across the vertical borders of the special disciplines in chemistry or else across the horizontal borders of structure, spectra, synthesis, and dynamics. TCA is especially interested in papers that impact upon multiple chemical disciplines.
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