可控光子上转换和多维光调制的手性双湮灭子模型

IF 15.7 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Honghan Ji, Zhiwang Luo, Xuefeng Yang, Xue Jin, Tonghan Zhao, Pengfei Duan
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引用次数: 0

摘要

三重态-三重态湮灭光子上转换寻求低能光子到高能发射的有效转换。然而,三重态-三重态湮灭光子上转换系统由于在敏化剂和湮灭剂之间高效的三重态-三重态能量传递依赖于三重态能量匹配,在发射色域上存在局限性,难以实现多通道发光和多维光学控制。为了克服这一障碍,我们提出了一种手性双湮灭子模型,该模型减轻了能量匹配的限制,并通过双通道三重态-三重态能量转移过程实现了圆偏振发光的轻松操纵。提出了一个量化三重态-三重态总能量传递效率和敏化剂与两种湮灭剂之间能量流的理论方程。实验方面通过对三态-三态湮灭光子上转换发射带宽的精细控制(平均误差小于4.5%)证明了该方法的准确性。此外,通过引入手性液晶,双湮灭子模型实现了数据编码和多维光学加密应用。这种双湮灭子模型加深了对能量流的理解,为光子上转换的精确、多维调制奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Chiral dual-annihilator model for controllable photon upconversion and multi-dimensional optical modulation

Chiral dual-annihilator model for controllable photon upconversion and multi-dimensional optical modulation

Triplet-triplet annihilation photon upconversion seeks efficient conversion of low-energy photons to high-energy emission. However, the triplet-triplet annihilation photon upconversion system faces limitations in emission gamut because efficient triplet-triplet energy transfer between sensitizer and annihilator relies on triplet energy matching, making it challenging to realize multi-channel luminescence and multi-dimensional optical control. Here, to overcome this barrier, we propose a chiral dual-annihilator model, which mitigates the restriction of energy matching and achieves facile manipulation of circularly polarized luminescence through a dual-channel triplet-triplet energy transfer process. A theoretical equation for quantifying the overall triplet-triplet energy transfer efficiency and the energy flow between the sensitizer and two kinds of annihilators is proposed. Its accuracy is demonstrated by fine-controlling the emission bandwidth of triplet-triplet annihilation photon upconversion (average error less than 4.5%) in the experimental aspect. In addition, by introducing chiral liquid crystals, the dual-annihilator model achieves data coding and multi-dimensional optical encryption applications. This dual-annihilator model deepens the understanding of energy flow and lays the foundation for accurate, multidimensional modulation of photon upconversion.

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来源期刊
Nature Communications
Nature Communications Biological Science Disciplines-
CiteScore
24.90
自引率
2.40%
发文量
6928
审稿时长
3.7 months
期刊介绍: Nature Communications, an open-access journal, publishes high-quality research spanning all areas of the natural sciences. Papers featured in the journal showcase significant advances relevant to specialists in each respective field. With a 2-year impact factor of 16.6 (2022) and a median time of 8 days from submission to the first editorial decision, Nature Communications is committed to rapid dissemination of research findings. As a multidisciplinary journal, it welcomes contributions from biological, health, physical, chemical, Earth, social, mathematical, applied, and engineering sciences, aiming to highlight important breakthroughs within each domain.
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