首页> 外文期刊>The Journal of Organic Chemistry >Room-temperature long-lived triplet excited states of naphthalenediimides and their applications as organic triplet photosensitizers for photooxidation and triplet-triplet annihilation upconversions
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Room-temperature long-lived triplet excited states of naphthalenediimides and their applications as organic triplet photosensitizers for photooxidation and triplet-triplet annihilation upconversions

机译:萘二酰亚胺的室温长寿命三重态激发态及其作为有机三重态光敏剂用于光氧化和三重态-三重态an灭上转换的应用

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摘要

Naphthalenediimide (NDI) derivatives with 2,6- or 2,3,6,7-tetrabromo or amino substituents were prepared. N,N'-dialkyl-2,6-dibromo NDI (compound 2) and N,N'-dialkyl-2,3,6,7-tetrabromo NDI (compound 4) show phosphorescence emission at 610 or 667 nm, respectively. Phosphorescence was never observed for NDI derivatives. Conversely, N,N'-dialkyl-2,6-dibromo-3,7-diamino NDI (compound 5) shows strong absorption at 526 nm and fluorescence at 551 nm, and no phosphorescence was observed. However, nanosecond time-resolved transient difference absorption spectroscopy confirmed that the triplet excited state of 5 was populated upon photoexcitation. 2,3,6,7-Tetraamino NDI (6) shows fluorescence, and no triplet excited state was populated upon excitation. The compounds were used as singlet oxygen (~1O _2) photosensitizers for the photooxidation of 1,5-dihydroxylnaphthalene (DHN). We found that 5 is more efficient than the conventional photosensitizer, such as Ir(ppy) _2(bpy)[PF _6]. The compounds were also used as organic triplet photosensitizers for triplet-triplet annihilation based upconversions. An upconversion quantum yield up to 18.5% was observed.
机译:制备了具有2,6-或2,3,6,7-四溴或氨基取代基的萘二酰亚胺(NDI)衍生物。 N,N'-二烷基-2,6-二溴NDI(化合物2)和N,N'-二烷基-2,3,6,7-四溴NDI(化合物4)分别在610或667 nm处发出磷光。从未观察到NDI衍生物的磷光。相反,N,N′-二烷基-2,6-二溴-3,7-二氨基NDI(化合物5)在526nm处显示强吸收,在551nm处显示荧光,未观察到磷光。然而,纳秒级时间分辨的瞬态差吸收光谱法证实了光激发后填充了三​​重态激发态5。 2,3,6,7-四氨基NDI(6)显示荧光,并且激发时未填充三重态激发态。该化合物用作单线态氧(〜1O _2)光敏剂,用于1,5-二羟基萘(DHN)的光氧化。我们发现5比常规的光敏剂(如Ir(ppy)_2(bpy)[PF _6])更有效。该化合物还用作有机三重态光敏剂,用于基于三重态-三重态t灭的上转换。观察到高达18.5%的上转换量子产率。

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