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Solvent-dependent photophysics of a red-shifted, biocompatible coumarin photocage

机译:红移的生物相容性香豆素光笼的溶剂依赖性光物理

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Controlling the activity of biomolecules with light-triggered photocages is an important research tool in the life sciences. We describe here a coumarin photocage that unusually combines the biocompatible optical properties of strong absorption at a long wavelength close to 500 nm and high photolysis quantum yields. The favourable properties are achieved by synthetically installing on the photocage scaffold a diethyl amino styryl moiety and a thionoester group rather than the lactone typical for coumarins. The photocage's photophysics are analysed with microsecond transient absorption spectroscopy to reveal the nature of the excited state in the photolysis pathway. The excited state is found to be strongly dependent on solvent polarity with a triplet state formed in DMSO and a charge-separated state in water that is likely due to aggregation. A long triplet lifetime is also correlated with a high photolysis quantum yield. Our study on the biocompatible photocage reveals fundamental insight for designing advanced photocages such as longer wavelengths in different solvent conditions tailored for applications in basic and applied research.
机译:用光触发光笼控制生物分子的活性是生命科学中的重要研究工具。我们在这里描述了一种香豆素光笼,它在不寻常的情况下结合了在接近500 nm的长波长处具有很强的吸收能力和高光解量子产率的生物相容性光学特性。通过在光笼支架上合成安装二乙基氨基苯乙烯基部分和硫代磺酸酯基团而不是香豆素通常的内酯,可以获得良好的性能。用微秒瞬态吸收光谱法分析了光笼的光物理性质,以揭示光解途径中激发态的性质。发现激发态强烈依赖于溶剂极性,DMSO中形成了三重态,而水中可能由于聚集而形成了电荷分离态。三重态寿命长还与高光解量子产率相关。我们对生物相容性光笼的研究揭示了设计高级光笼的基础见解,例如在基础和应用研究中量身定制的不同溶剂条件下的更长波长。

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