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本文引用的文献

1
Conjugated [5]Cumulene Polymers Enabled by Condensation Polymerization of Propargylic Electrophiles.通过炔丙基亲电试剂缩聚制备的共轭[5]累积烯聚合物
J Am Chem Soc. 2023 Nov 1;145(43):23755-23763. doi: 10.1021/jacs.3c08290. Epub 2023 Oct 18.
2
Electroreductive Radical Borylation of Unactivated (Hetero)Aryl Chlorides Without Light by Using Cumulene-Based Redox Mediators.使用基于累积烯的氧化还原介质对未活化的(杂)芳基氯进行无光电还原自由基硼化反应。
Angew Chem Int Ed Engl. 2023 Oct 2;62(40):e202310246. doi: 10.1002/anie.202310246. Epub 2023 Aug 22.
3
Disclosing Early Excited State Relaxation Events in Prototypical Linear Carbon Chains.揭示典型线性碳链中的早期激发态弛豫事件。
J Am Chem Soc. 2023 Aug 23;145(33):18382-18390. doi: 10.1021/jacs.3c04163. Epub 2023 Aug 1.
4
Stable and Solution-Processable Cumulenic sp-Carbon Wires: A New Paradigm for Organic Electronics.稳定且可溶液加工的累积烯型sp碳纳米线:有机电子学的新范例
Adv Mater. 2022 Apr;34(15):e2110468. doi: 10.1002/adma.202110468. Epub 2022 Mar 3.
5
Spin-Spin Interactions in One-Dimensional Assemblies of a Cumulene-Based Singlet Biradical.基于累积烯的单线态双自由基一维组装体中的自旋-自旋相互作用。
Angew Chem Int Ed Engl. 2021 Sep 20;60(39):21319-21326. doi: 10.1002/anie.202105740. Epub 2021 Aug 23.
6
Cumulene Wires Display Increasing Conductance with Increasing Length.累积多烯键导线的长度越长,其电导率越高。
Nano Lett. 2020 Nov 11;20(11):8415-8419. doi: 10.1021/acs.nanolett.0c03794. Epub 2020 Oct 23.
7
Tight-binding analysis of helical states in carbyne.碳炔中螺旋态的紧束缚分析。
J Chem Phys. 2020 Sep 28;153(12):124304. doi: 10.1063/5.0021146.
8
A Field-Effect Transistor Based on Cumulenic sp-Carbon Atomic Wires.基于累积烯型sp-碳原子线的场效应晶体管。
J Phys Chem Lett. 2020 Mar 5;11(5):1970-1974. doi: 10.1021/acs.jpclett.0c00141. Epub 2020 Feb 26.
9
Directing isomerization reactions of cumulenes with electric fields.在电场中引导累积二烯的异构化反应。
Nat Commun. 2019 Oct 2;10(1):4482. doi: 10.1038/s41467-019-12487-w.
10
Carbene derived diradicaloids - building blocks for singlet fission?卡宾衍生的双自由基类化合物——单重态裂变的构建模块?
Chem Sci. 2018 Jul 2;9(28):6107-6117. doi: 10.1039/c8sc01999a. eCollection 2018 Jul 28.

四苯基[3] - 累积烯中的扭转无序:对激发态猝灭的洞察。

Torsional disorder in tetraphenyl [3]-cumulenes: Insight into the excited state quenching.

作者信息

Bain David, Chang Julia, Lai Yihuan, Khazanov Thomas, Milner Phillip, Musser Andrew

机构信息

Department of Chemistry and Chemical Biology, Cornell University, Ithaca 14850, United States.

出版信息

Photochem. 2024 Mar;4(1):138-150. doi: 10.3390/photochem4010008. Epub 2024 Feb 9.

DOI:10.3390/photochem4010008
PMID:39465191
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11501088/
Abstract

Cumulenes are linear molecules consisting of consecutive double bonds linking chains of sp-hybridized carbon atoms. They have primarily been of interest for potential use as molecular wires or in other nanoscale electronic devices, but more recently other applications such as catalysis or even light harvesting through singlet fission have been speculated. Despite the recent theoretical and experimental interest, photoexcitation of cumulenes typically results in quenching on the picosecond timescale, and the exact quenching mechanism for even the simplest of [3]-cumulenes lacks a clear explanation. In this report, we perform transient absorption spectroscopy on a set of model [3]-cumulene derivatives in a wide range of environmental conditions to demonstrate that planarization of phenyl groups ultimately quenches the excited state. By restricting this intermolecular motion, we increase the excited state lifetime out to a few nanoseconds, strongly enhancing the photoluminescence and demonstrating an approach to stabilize them for photochemical applications.

摘要

累积烯烃是由连接sp杂化碳原子链的连续双键组成的线性分子。它们主要因其作为分子导线或用于其他纳米级电子器件的潜在用途而受到关注,但最近有人推测了其他应用,如催化甚至通过单线态裂变进行光捕获。尽管最近在理论和实验方面都有研究兴趣,但累积烯烃的光激发通常会在皮秒时间尺度上导致猝灭,即使是最简单的[3]-累积烯烃的确切猝灭机制也缺乏明确的解释。在本报告中,我们在广泛的环境条件下对一组模型[3]-累积烯烃衍生物进行了瞬态吸收光谱研究,以证明苯基的平面化最终会猝灭激发态。通过限制这种分子间运动,我们将激发态寿命延长至几纳秒,极大地增强了光致发光,并展示了一种将它们稳定用于光化学应用的方法。