File S1 - A Colorimetric and Luminescent Dual-Modal Assay for Cu(II) Ion Detection Using an Iridium(III) Complex
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Contains Table S1, Photophysical properties of complex 1 in CH3CN at 298 K. Figure S1, UV/Vis absorption spectrum of complex 1 (1 µM) in CH3CN solution at 298 K. Figure S2, White light (a) and UV light photograph images (b) of 1 (2 µM) in the presence of different concentrations of Cu2+ ions (0–10 µM) in CH3CN solution. Figure S3, Curve of luminescence intensity of 1 (1 µM) at 560 nm versus concentration of Cu2+ ions in CH3CN solution. λex = 355 nm. Figure S4, UV-Vis absorption spectra of 1 (1 µM) in the presence of Cu2+ ion and 2 equivalents of thirteen other metal ions in CH3CN solution. (DOCX)
本数据集包含表S1:298 K下乙腈(CH3CN)中配合物1的光物理性质。 图S1:298 K下乙腈溶液中浓度为1 µM的配合物1的紫外-可见(UV/Vis)吸收光谱。 图S2:乙腈溶液中,不同浓度Cu²+离子(0–10 µM)存在下,浓度为2 µM的配合物1的白光(a)与紫外光(b)实拍照片。 图S3:激发波长(λex)为355 nm时,乙腈溶液中配合物1(1 µM)在560 nm处的发光强度随Cu²+离子浓度的变化曲线。 图S4:乙腈溶液中,配合物1(1 µM)与Cu²+离子及13种其他金属离子(各2当量)共存时的紫外-可见吸收光谱。 (DOCX)



