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揭示典型线性碳链中的早期激发态弛豫事件。

Disclosing Early Excited State Relaxation Events in Prototypical Linear Carbon Chains.

作者信息

Kabaciński Piotr, Marabotti Pietro, Fazzi Daniele, Petropoulos Vasilis, Iudica Andrea, Serafini Patrick, Cerullo Giulio, Casari Carlo S, Zavelani-Rossi Margherita

机构信息

Dipartimento di Fisica, Politecnico di Milano, piazza Leonardo da Vinci 32, 20133 Milano, Italy.

Dipartimento di Energia, Politecnico di Milano, via G. Ponzio 34/3, 20133 Milano, Italy.

出版信息

J Am Chem Soc. 2023 Aug 23;145(33):18382-18390. doi: 10.1021/jacs.3c04163. Epub 2023 Aug 1.

Abstract

One-dimensional (1D) linear nanostructures comprising -hybridized carbon atoms, as derivatives of the prototypical allotrope known as carbyne, are predicted to possess outstanding mechanical, thermal, and electronic properties. Despite recent advances in their synthesis, their chemical and physical properties are still poorly understood. Here, we investigate the photophysics of a prototypical polyyne (i.e., 1D chain with alternating single and triple carbon bonds) as the simplest model of finite carbon wire and as a prototype of -carbon-based chains. We perform transient absorption experiments with high temporal resolution (<30 fs) on monodispersed hydrogen-capped hexayne H─(C≡C)─H synthesized by laser ablation in liquid. With the support of computational studies based on ground state density functional theory (DFT) and excited state time-dependent (TD)-DFT calculations, we provide a comprehensive description of the excited state relaxation processes at early times following photoexcitation. We show that the internal conversion from a bright high-energy singlet excited state to a low-lying singlet dark state is ultrafast and takes place with a 200 fs time constant, followed by thermalization on the picosecond time scale and decay of the low-energy singlet state with hundreds of picoseconds time constant. We also show that the time scale of these processes does not depend on the end groups capping the -carbon chain. The understanding of the primary photoinduced events in polyynes is of key importance both for fundamental knowledge and for potential optoelectronic and light-harvesting applications of low-dimensional nanostructured carbon-based materials.

摘要

作为原型同素异形体卡宾的衍生物,由sp-杂化碳原子构成的一维(1D)线性纳米结构预计具有出色的机械、热学和电学性质。尽管其合成方面最近取得了进展,但其化学和物理性质仍知之甚少。在这里,我们研究了一种典型聚炔(即具有交替单键和三键的1D链)的光物理性质,它是有限碳纳米线的最简单模型,也是基于sp-碳的链的原型。我们对通过液体中的激光烧蚀合成的单分散氢封端己炔H─(C≡C)₆─H进行了具有高时间分辨率(<30 fs)的瞬态吸收实验。在基于基态密度泛函理论(DFT)和激发态含时(TD)-DFT计算的理论研究支持下,我们对光激发后早期的激发态弛豫过程进行了全面描述。我们表明,从明亮的高能单重激发态到低能单重暗态的内转换是超快的,以200 fs的时间常数发生,随后在皮秒时间尺度上热化,低能单重态以数百皮秒的时间常数衰减。我们还表明,这些过程的时间尺度不取决于封端sp-碳链的端基。对聚炔中主要光诱导事件的理解对于基础知识以及低维纳米结构碳基材料的潜在光电和光捕获应用都至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8373/10450801/f472a58a939b/ja3c04163_0001.jpg

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