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Absorption Characteristics of Ruthenium (Ru)-II Nanoparticles as a Dissolved Oxygen Sensing Material

机译:钌(Ru)-ii纳米粒子作为溶解氧传感材料的吸收特性

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Ruthenium (Ru)-II complexes such as the Ruthenium-tris(4,7-diphenyl-l,10-phenanthroline) dichloride (Ru(dpp)_3~(2+)) is commonly used for dissolved oxygen sensing because of their profound advantages such as visible absorption, a large Stokes' shift, good fluorescence quantum yields, long excitation lifetimes and good oxygen quenching efficiency. In this study, we report on the absorption characteristics of (Ru(dpp)_3~(2+)) when it is exposed to dissolved oxygen where the absorption was determined using ultraviolet-visible (UV-Vis) absorbance spectroscopy. The results show that by decreasing the concentration of Ru(ddp)32+, the absorbance remained constant at optical wavelength of 455nm while the intensity changes with the presence of dissolved oxygen. The sensitivity of detecting dissolved oxygen was proven to improve by increasing the amount of Ru(ddp)_3~(2+) used.
机译:钌(Ru)-ii配合物如钌-tris(4,7-二苯基-1,10-菲咯啉)二氯化物(Ru(dpp)_3〜(2+)通常用于溶解氧感应,因为它们是深刻的可见吸收等优点,大的斯托克斯的偏移,良好的荧光量子产量,长的激发寿命和良好的氧淬火效率。在这项研究中,我们报告(Ru(DPP)_3〜(2+)的吸收特性,当它暴露于溶解氧时,使用紫外线可见(UV-VIS)吸光光度光谱测定吸收。结果表明,通过降低Ru(DDP)32+的浓度,在455nm的光波长下吸收仍然恒定,而强度随着溶解氧的存在而变化。通过增加所用的Ru(DDP)_3〜(2+)的量,证明了检测溶解氧的敏感性。

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