扩展三重-三重湮灭上转换性能的官能化湮灭剂研究进展

Wen-Yue Lin, Zhi Huang, Ling Huang, Gang Han
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引用次数: 0

摘要

近年来,三重-三重湮灭上转换(TTA-UC)在太阳能光收集、光催化、生物成像和传感等许多新兴领域取得了重大进展。TTA-UC 由光敏剂和湮灭剂组成。除了作为发射体之外,湮灭剂的化学修饰还将其作用扩展到形成有机凝胶以避免氧介导的三重淬灭、放大圆偏振发光的不对称系数、作为识别单元构建上转换传感器、作为光可移动保护基团以及光催化剂以实现长波长光驱动的有机转化。在此,我们将重点介绍除光致发光外,功能化湮灭剂的其他重要应用,这些应用可通过与其他功能单元进行化学修饰来实现。最后,我们将阐述 TTA-UC 目前存在的问题,包括分子设计、材料开发和新兴领域应用方面的挑战。根据我们的研究经验,我们将提出潜在的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advances in functionalized annihilators to extend triplet–triplet annihilation upconversion performances
Triplet–triplet annihilation upconversion (TTA-UC) has made major advances in many emerging fields in recent years, such as solar light harvesting, photocatalysis, biological imaging, and sensing. TTA-UC consists of photosensitizers and annihilators. In addition to acting as emitters, chemical modification of annihilators has expanded their roles to include the formation of organic gel to avoid oxygen-mediated triplet quenching, amplifying the asymmetry factor of circularly polarized luminescence, constructing an upconversion sensor as recognition units, serving as photoremovable protecting groups, and photocatalysts to realize long-wavelength light-driven organic transformations. Here, we will focus on the significant applications of functionalized annihilators other than photoluminescence, which are manifested via chemical modification with other functional units. Finally, we will elaborate on the existent issues with TTA-UC, including challenges in molecular design, material development, and emerging field applications. In accordance with our research experience, we will propose potential solutions.
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