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具有极高自由基捕获特性的12-磷酸石墨烯的μ子光谱学。

Muon spectroscopy of a 12-phosphatetraphene with extremely efficient radical trapping properties.

作者信息

Ito Shigekazu, Yasuda Kohei, Ishihara Keisuke, Karner Victoria L, Kojima Kenji M, McKenzie Iain

机构信息

Department of Chemical Science and Engineering, School of Materials and Chemical Technology, Tokyo Institute of Technology, 2-12-1-H-113 Ookayama, Meguro-ku, Tokyo, 152-8552, Japan.

Centre for Molecular and Materials Science, TRIUMF, 4004 Wesbrook Mall, Vancouver, BC, V6T 2A3, Canada.

出版信息

Sci Rep. 2025 Jan 7;15(1):1181. doi: 10.1038/s41598-024-84611-w.

Abstract

This paper describes muon spin spectroscopy studies of 12-phosphatetraphene stabilized by a peri-trifluoromethyl group and a meso-aryl substituent. Even though the prepared solution in tetrahydrofuran (THF) was quite dilute (0.060 M) for transverse-field muon spin rotation (TF-µSR) measurements, the π-extended heavier congener of tetraphene presented a pair of signals due to a muoniated radical from which the muon hyperfine coupling constant (hfc) was determined. This muoniated radical was produced by the diffusion-controlled regioselective addition of muonium (Mu = [µe]) to the sp-hybridized phosphorus atom. The assignment of the muoniated radical structure was confirmed by observing a resonance due to the I = 1/2 (P) nucleus in a muon (avoided) level-crossing resonance (µLCR) spectrum. The P hfc was determined from the resonance position, and a comparison with the value obtained from density functional theory (DFT) calculations indicated that the radical retained a flat π-delocalized tetracyclic skeleton. This higher energy structure is hypothesized to be preferable because of the increased zero-point energy of the light mass of the muon. The findings of this study could be fruitful in developing novel spin-functional materials featuring efficient radical capture and π-delocalized paramagnetic molecular systems.

摘要

本文描述了由周边三氟甲基和中芳基取代基稳定的12-磷四苯的μ子自旋光谱研究。尽管用于横向场μ子自旋旋转(TF-µSR)测量的四氢呋喃(THF)中的制备溶液相当稀(0.060 M),但四苯的π扩展较重同系物呈现出一对信号,这是由于一个μ子化自由基产生的,由此确定了μ子超精细耦合常数(hfc)。这个μ子化自由基是由μonium(Mu = [µe])向sp杂化磷原子的扩散控制区域选择性加成产生的。通过在μ子(避免)能级交叉共振(µLCR)光谱中观察到由于I = 1/2(P)核引起的共振,证实了μ子化自由基结构的归属。从共振位置确定了P hfc,并与密度泛函理论(DFT)计算得到的值进行比较,表明该自由基保留了一个扁平的π离域四环骨架。由于μ子轻质量的零点能增加,推测这种较高能量结构更可取。这项研究的结果可能有助于开发具有高效自由基捕获和π离域顺磁分子系统的新型自旋功能材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20f4/11707175/8b213e1bdb42/41598_2024_84611_Fig1_HTML.jpg

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