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Cyclometalated iridium–BODIPY ratiometric O2 sensors

机译:环金属化铱-BODIPY比例式氧气传感器

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摘要

Here we introduce a new class of ratiometric O _(2) sensors for hypoxic environments. Two-component structures composed of phosphorescent cyclometalated Ir( III ) complexes and the well-known organic fluorophore BODIPY have been prepared by the 1?:?1 reaction of bis-cyclometalated iridium synthons with pyridyl-substituted BODIPY compounds. Two different cyclometalating ligands are used, which determine the relative energies of the iridium-centered and BODIPY-centered excited states, and the nature of the linker between iridium and BODIPY also has a small influence on the photoluminescence. Some of the conjugates exhibit dual emission, with significant phosphorescence from the iridium site and fluorescence from the BODIPY, and thus function as ratiometric oxygen sensors. Oxygen quenching experiments demonstrate that as O _(2) is added the phosphorescence is quenched while the fluorescence is unaffected, with dynamic ranges that are well suited for hypoxic sensing ( p O _(2) < 160 mmHg).
机译:在这里,我们介绍一种用于缺氧环境的新型比例式O _(2)传感器。通过双环金属化铱合成子与吡啶基取代的BODIPY化合物的1′:?1反应,制备了由磷光的环金属化的Ir(III)配合物和众所周知的有机荧光团BODIPY组成的两组分结构。使用两种不同的环金属配体,它们确定了以铱为中心和以BODIPY为中心的激发态的相对能量,并且铱和BODIPY之间的连接基的性质对光致发光的影响也很小。一些结合物表现出双重发射,具有铱位点显着的磷光和BODIPY发出的荧光,因此起比例氧传感器的作用。氧猝灭实验表明,添加O _(2)后,磷光被猝灭,而荧光不受影响,其动态范围非常适合低氧传感(p O _(2)<160 mmHg)。

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