利用BINAPs/BINAPOs的逐步手性放大定制圆偏振余辉

IF 7.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Bo Yang, Suqiong Yan, Shirong Ban, Hui Ma, Yuan Zhang, Fanda Feng and Wei Huang
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引用次数: 0

摘要

由于手性荧光粉具有圆极化有机超长室温磷光(CP-OURTP)的能力,克服自旋禁止辐射受到了广泛的关注。然而,由于手性分子中控制电偶极矩和磁偶极矩的奇偶选择规则不同,以及通过系统间杂交(ISC)产生的三态居群差,它们的寿命短和不对称因素低,阻碍了它们的发展。通过在分子和超分子方面的逐步手性扩增,我们首次报道了具有可调D-A特征和三重态培养的供体-装饰性BINAPs/BINAPOs,它可以实现杂交局部和电荷转移(HLCT)特性、重原子和p−π*效应。这些发射体可以作为聚合物基体中的客体。掺杂的磷光聚合物表现出高量子效率的单分子圆偏振发光,令人印象深刻的CP-OURTP寿命(高达1.02 s)和良好的不对称因子(10−3能级)。综合研究揭示了单体发射的令人印象深刻的CP-OURTP归因于1hlct控制的ISC和长寿命的3le控制的三重态辐射,以及优越的电磁偶极矩环境。此外,鉴于刚性聚合的高RTP活性,我们证明了在CP-OURTP扩增中的潜在应用。通过原位手性液晶聚合,掺杂0.1 wt% PO1的RM257液晶显示出二级螺旋组装,显示出光聚合后gCP-RTP因子(±0.11)和较长的寿命(0.83 s)。当前材料在CP-OURTP中的优异性能和结构依赖性可以作为余辉模式用于多重光加密。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Customizing circularly polarized afterglow by stepwise chiral amplification in BINAPs/BINAPOs†

Customizing circularly polarized afterglow by stepwise chiral amplification in BINAPs/BINAPOs†

Overcoming spin-forbidden radiation in chiral phosphors has attracted enormous attention because of their capacity to exhibit circularly polarized organic ultra-long room temperature phosphorescence (CP-OURTP). However, their development has been hindered by the short lifetimes and low dissymmetry factors, which are attributed to the differing parity selection rules that govern the electric and magnetic dipole moments in chiral molecules and poor triplet populations via intersystem crossing (ISC). Considering stepwise chiral amplification at molecular and supramolecular aspects, herein, we first reported donor-decorated BINAPs/BINAPOs with tunable D–A character and triplet incubation, which could enable hybridized local and charge-transfer (HLCT) characteristics, heavy atoms, and p–π* effects. These emitters could serve as guests in the polymer matrix. The doped phosphorescent polymer exhibits unimolecular circularly polarized luminescence (C) with high quantum efficiency, impressive CP-OURTP lifetimes (up to 1.02 s), and decent dissymmetry factors (10−3 level). Comprehensive studies unveil that the impressive CP-OURTP from monomer emission is ascribed to the 1HLCT-controlled ISC, long-lived 3LE-governing triplet radiation, and superior electric–magnetic dipole moment environments. Moreover, given the high RTP activity of rigid polymerization, we demonstrate their potential application in CP-OURTP amplification. Using in situ chiral liquid crystal polymerization, RM257 liquid crystals doped with 0.1–1.0 wt% PO1 guests demonstrate a secondary helical assembly, showing an amplified gCP-RTP factor (±0.11) and a long lifetime (0.83 s) after photopolymerization. The current materials' excellent performance in CP-OURTP and structural dependence could lead to their use in afterglow patterns for multiple optical encryption.

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来源期刊
Chemical Science
Chemical Science CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
14.40
自引率
4.80%
发文量
1352
审稿时长
2.1 months
期刊介绍: Chemical Science is a journal that encompasses various disciplines within the chemical sciences. Its scope includes publishing ground-breaking research with significant implications for its respective field, as well as appealing to a wider audience in related areas. To be considered for publication, articles must showcase innovative and original advances in their field of study and be presented in a manner that is understandable to scientists from diverse backgrounds. However, the journal generally does not publish highly specialized research.
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