Readily Accessible, Versatile, and Adaptive Biaxially Chiral Chromophores

IF 14.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Summer J. Brown, Jiaoyan Zhao, Ellen Forehand, Lukasz Dobrzycki, Rupam Roy, A M Mahmudul Hasan, Wendu Ding, Cedric Schaack, Austin M. Evans
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Abstract

Precisely controlling quantum states is relevant in next-generation quantum computing, encryption, and sensing. Chiral organic chromophores host unique light–matter interactions, which allow them to manipulate the quantized circular polarization of photons. Axially chiral organic scaffolds, such as helicenes or twisted acenes, are powerful motifs in chiral light manipulation. However, these systems usually require complex syntheses and small-scale (10 mg) enantiomer separations, typically complicating systematic investigations of their structure–property relationships. We report here the straightforward synthesis of both enantiomers (R/S) of 10 different axially chiral chromophores. This protocol relies on a readily accessible, enantiomerically pure, and axially chiral contorting element, benzodinaptho[1,4]dioxicine-2,3-diamine (DODA), that we synthesize in two steps with high purity and good yield at gram scale. Subsequent derivation of DODA transfers the chirality from one axis to twist the dominant chromophore around a second, orthogonal axis. Using this biaxial contortion design element, we produce 10 enantiopure biaxial chromophores, without the need for chromatographic separations, and no observable compromise to chiroptical integrity. These chromophores exhibit broadband single-handed absorption without Cotton effects from 265 to 485 nm, indicating chiral excitonic character that forms between the DODA and twisted core chromophore. This platform is responsive to solvent polarity in the excited state, displaying >50 nm bathochromic shifts in the photoluminescence spectra. In addition, this scaffold intensely interacts with changes in pH, which allows us to ultimately access monosignate circular dichroism absorption over a 300 nm range.

Abstract Image

易于获取、通用和自适应的双轴手性发色团
精确控制量子态与下一代量子计算、加密和传感相关。手性有机发色团拥有独特的光-物质相互作用,这使它们能够操纵光子的量子化圆偏振。轴向手性有机支架,如螺旋烯或扭曲癸烯,是手性光操纵的有力基序。然而,这些系统通常需要复杂的合成和小规模(10毫克)对映体分离,通常使其结构-性质关系的系统研究复杂化。本文报道了10种不同轴向手性发色团的两种对映体(R/S)的直接合成。该方案依赖于一种易于获得的,对映体纯的,轴向手性的变形元素,苯并萘唑[1,4]二恶辛-2,3-二胺(DODA),我们以两步合成,纯度高,收率高,以克为单位。随后的DODA推导将手性从一个轴转移到围绕第二个正交轴扭转显性发色团。使用这种双轴扭曲设计元件,我们生产了10个对映纯双轴发色团,而不需要色谱分离,并且没有观察到对热学完整性的损害。这些发色团在265 ~ 485 nm范围内表现出无棉花效应的宽带单手吸收,表明在DODA和扭曲核发色团之间形成了手性激子特征。该平台在激发态下响应溶剂极性,在光致发光光谱中显示出>; 50nm的色移。此外,这种支架与pH值的变化强烈相互作用,这使我们最终能够在300 nm范围内获得单信号圆二色性吸收。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
24.40
自引率
6.00%
发文量
2398
审稿时长
1.6 months
期刊介绍: The flagship journal of the American Chemical Society, known as the Journal of the American Chemical Society (JACS), has been a prestigious publication since its establishment in 1879. It holds a preeminent position in the field of chemistry and related interdisciplinary sciences. JACS is committed to disseminating cutting-edge research papers, covering a wide range of topics, and encompasses approximately 19,000 pages of Articles, Communications, and Perspectives annually. With a weekly publication frequency, JACS plays a vital role in advancing the field of chemistry by providing essential research.
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