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Circularly polarized luminescent porous crystalline nanomaterials

机译:圆偏振发光多孔晶体纳米材料

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摘要

Circularly polarized luminescence (CPL)-active materials have attracted exclusive attention because of their wide potential applications in low-power-consumption displays, encrypted information storage, chiroptical sensors, and so on. However, there is always a trade-off between the luminescence dissymmetry factor (g(lum)) and luminescence quantum yield, which are two critical parameters. Therefore, developing materials with both large g(lum) values and high luminescence efficiency is a key issue for constructing high-efficiency CPL materials. To date, chiral porous crystalline nanomaterials (PCNMs) including metal-organic frameworks (MOFs), porous organic-cages (POCs), metal-organic cages (MOCs), and supramolecular organic frameworks (SOFs), have shown excellent potential for solving this problem and achieving functional CPL-active materials. In this review, we will summarize several approaches for fabricating CPL-active PCNMs, such as direct synthesis, chirality induction, and symmetry breaking. Furthermore, with flexibly tunable structures and comprehensive host-guest chemistry, modulation and amplification of CPL can be achieved in these PCNMs. We would like to provide insight and perspective that PCNMs can act as an efficient platform in the CPL research field.
机译:圆偏振发光(CPL)活性材料吸引了独家的注意由于其广泛的应用前景装显示器,加密信息存储,chiroptical传感器等上。发光的不对称因子(g(亮度))发光量子产率,这是两个关键参数。材料与大g(亮度)和高值发光效率是一个关键问题构建高效的石油测井资料。日期、手性多孔晶体纳米材料(PCNMs)包括有机框架(mof),多孔organic-cages (poc),有机笼(举),和超分子有机框架(sof),显示很优秀解决这一问题,实现的可能性功能性CPL-active材料。我们将总结的几种方法捏造CPL-active PCNMs,如直接合成、手性诱导和对称打破。结构和全面的主CPL的化学、调制和放大可以在这些PCNMs实现。PCNMs可以提供见解和观点在石油测井研究作为一个有效的平台字段。

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