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Water-Soluble Osmium Complexes Suitable for use in Luminescence-Based, Hydrogel-Supported Sensors

机译:水溶性O络合物,适用于基于发光的水凝胶支持的传感器

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Osmium transition metal complexes are of particular interest in luminescence-based sensing applications because of their longer wavelength absorptions and emissions, relative to similar ruthenium and rhenium complexes, that allow for inexpensive excitation and minimize interferences from autofluorescence when the sensor is used in biological samples. Reported here are the photophysical properties of a series of water-soluble osmium complexes suitable for use in hydrogel-based sensors: [Os(bpy)(2)(sulf-dpp)]Cl-2, [Os(phen)(2)(sulf-dpp)]Cl-2, [Os(dpp)(2)(sulf-dpp)]Cl-2, and [Os(CO)(2)Cl-2(sulf-dpp)], where bpy is 2,2'-bipyridine, phen is 1,10-phenanthroline, dpp is 4,7-diphenyl-1,10-phenanthroline, and sulf-dpp is bathophenanthrolinedisulfonic acid disodium salt. The family of complexes showed minimal oxygen quenching, making them particularly well-suited for sensing applications in which oxygen concentration varies. Luminescence anisotropy was found to depend more significantly on net dipole moment than hydrodynamic radius of the molecule, and, as expected, excited state lifetime and luminescence anisotropy were highly dependent on the local environment of the reporter molecule. Results obtained for hydrogel-based relative humidity sensors containing [Os(CO)(2)Cl-2(sulf-dpp)] and [Os(bpy)(2)(sulf-dpp)]Cl-2 complexes highlight the significant potential for this class of compounds in a hydrogel-supported luminescence-based sensing approach.
机译:similar过渡金属络合物在基于发光的传感应用中特别受关注,因为与类似的钌和rh络合物相比,它们具有更长的波长吸收和发射,当在生物样品中使用传感器时,它允许廉价的激发并最小化自发荧光的干扰。此处报道的是适用于基于水凝胶的传感器的一系列水溶性配合物的光物理性质:[Os(bpy)(2)(sulf-dpp)] Cl-2,[Os(phen)(2) (sulf-dpp)] Cl-2,[Os(dpp)(2)(sulf-dpp)] Cl-2和[Os(CO)(2)Cl-2(sulf-dpp)],其中bpy是2,2'-联吡啶,phen是1,10-菲咯啉,dpp是4,7-二苯基-1,10-菲咯啉,而sulf-dpp是红菲咯啉二磺酸二钠盐。配合物家族显示出最小的氧猝灭,使其特别适合于氧浓度变化的传感应用。发现发光各向异性比分子的流体动力学半径对净偶极矩的依赖性更大,并且如所预期的,激发态寿命和发光各向异性高度依赖于报告分子的局部环境。使用[Os(CO)(2)Cl-2(sulf-dpp)]和[Os(bpy)(2)(sulf-dpp)] Cl-2复合物的基于水凝胶的相对湿度传感器获得的结果突出了巨大的潜力水凝胶支持的基于发光的传感方法中用于此类化合物的方法。

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