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Oxygen Sensing by the Hybrid Langmuir-Blodgett Films of Iridium(III) Complexes and Synthetic Saponite on the Basis of Energy Transfer

机译:基于能量转移的铱(III)配合物和合成皂石混合Langmuir-Blodgett薄膜的氧传感

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An ultra-thin hybrid film of amphiphilic iridium(III) complexes and synthetic saponite was manipulated by means of the modified Langmuir-Blodgett method. In the film deposited onto a quartz substrate, the external mixed molecular layer of amphiphilic iridium(III) complexes was reinforced by the inner layer of exfoliated synthetic saponite. As components of the molecular layer, two iridium(III) complexes were used: [Ir(dfppy) 2 (dc9bpy)] + (dfppyH = 2-(4?¢???2,6?¢???2-difluorophenyl) pyridine; dc9bpy = 4,4?¢???2-dinonyl-2,2?¢???2-bipyridine) (denoted as DFPPY) and [Ir(piq) 2 (dc9bpy)] + (piqH = 1-phenyisoquinoline)) denoted as PIQ). The emission spectra from the films changed from blue to red maxima with the decrease of a ratio of DFPPY/PIQ due to the energy transfer from excited DFPPY to PIQ. The intensity of red decreased with the increase of oxygen pressure through the quenching of excited iridium(III) complexes, promising a possibility as an oxygen-sensing film.
机译:通过改进的Langmuir-Blodgett方法处理两亲性铱(III)配合物和合成皂石的超薄杂化膜。在沉积到石英基板上的薄膜中,两性铱(III)配合物的外部混合分子层由片状合成皂石的内层增强。作为分子层的成分,使用了两种铱(III)配合物:[Ir(dfppy)2(dc9bpy)] +(dfppyH = 2-(4 ¢ 2,2,6 ¢ 22-2-二氟苯基) )吡啶; dc9bpy = 4,4 ¢ 2-2-二壬基-2,2 ¢ 2-2-联吡啶)(表示为DFPPY)和[Ir(piq)2(dc9bpy)] +(piqH = 1 -苯基异喹啉))表示为PIQ)。由于从激发的DFPPY到PIQ的能量转移,随着DFPPY / PIQ比的减小,膜的发射光谱从蓝色最大值变为红色最大值。通过激发的铱(III)配合物的猝灭,红色的强度随着氧气压力的增加而降低,这有望成为一种氧敏膜。

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