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对称氧化[n]螺旋烯的螺旋伸长对其结构、光物理和手性光学特性的影响。

Impact of helical elongation of symmetric oxa[n]helicenes on their structural, photophysical, and chiroptical characteristics.

作者信息

Salem Mohamed S H, Sharma Rubal, Suzuki Seika, Imai Yoshitane, Arisawa Mitsuhiro, Takizawa Shinobu

机构信息

SANKEN, Osaka University, Osaka, Japan.

Pharmaceutical Organic Chemistry Department, Faculty of Pharmacy, Suez Canal University, Ismailia, Egypt.

出版信息

Chirality. 2024 May;36(5):e23673. doi: 10.1002/chir.23673.

Abstract

The adjustment of the main helical scaffold in helicenes is a fundamental strategy for modulating their optical features, thereby enhancing their potential for diverse applications. This work explores the influence of helical elongation (n = 5-9) on the structural, photophysical, and chiroptical features of symmetric oxa[n]helicenes. Crystal structure analyses revealed structural variations with helical extension, impacting torsion angles, helical pitch, and packing arrangements. Through theoretical investigations using density functional theory (DFT) calculations, the impact of helical extension on aromaticity, planarity distortion, and heightened chiral stability were discussed. Photophysical features were studied through spectrophotometric analysis, with insights gained through time-dependent DFT (TD-DFT) calculations. Following optical resolution via chiral high-performance liquid chromatography (HPLC), the chiroptical properties of both enantiomers of oxa[7]helicene and oxa[9]helicene were investigated. A slight variation in the main helical scaffold of oxa[n]helicenes from [7] to [9] induced an approximately three-fold increase in dissymmetry factors with the biggest values of|g| of oxa[9]helicene (2.2 × 10) compared to|g|of oxa[7]helicene (0.8 × 10), findings discussed and supported by TD-DFT calculations.

摘要

螺旋烯中主要螺旋支架的调整是调节其光学特性的基本策略,从而增强其在多种应用中的潜力。这项工作探讨了螺旋伸长(n = 5 - 9)对对称氧化[ n ]螺旋烯的结构、光物理和手性光学特性的影响。晶体结构分析揭示了随着螺旋延伸的结构变化,影响扭转角、螺旋螺距和堆积排列。通过使用密度泛函理论(DFT)计算的理论研究,讨论了螺旋延伸对芳香性、平面性畸变和增强的手性稳定性的影响。通过分光光度分析研究光物理特性,并通过含时密度泛函理论(TD - DFT)计算获得相关见解。通过手性高效液相色谱(HPLC)进行光学拆分后,研究了氧化[7]螺旋烯和氧化[9]螺旋烯两种对映体的手性光学性质。氧化[ n ]螺旋烯从[7]到[9]的主要螺旋支架的轻微变化导致不对称因子增加了约三倍,氧化[9]螺旋烯的| g |最大值为2.2×10,而氧化[7]螺旋烯的| g |为0.8×10,这些发现通过TD - DFT计算进行了讨论和支持。

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