UV Light Generation and Challenging Photoreactions Enabled by Upconversion in Water
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Data underlying the figures in the publication “UV Light Generation and Challenging Photoreactions Enabled by Upconversion in Water”, published in <em>J. Am. Chem. Soc.</em> <strong>2020</strong>, 142, 23, 10468–10476. https://pubs.acs.org/doi/10.1021/jacs.0c02835 Table of contents: <strong>1. Figure 2</strong>; Excel file with the numerical values of the sensitizer characteristics displayed in <em>Figure 2</em>. Experimental data summarizing the pertinent ground- and excited-state properties of the Ir-based sensitizers (<em>a</em>, <strong>Ir(sCH<sub>2</sub>ppy)ppy<sub>2</sub></strong>; <em>b</em>, <strong>Irsppy</strong>; <em>c</em>, <strong>IrFsppy</strong>; and <em>d</em>, <strong>IrdFsppy</strong>). <strong>2. Figure 3</strong>; Excel file with the numerical values of the photophysical properties of the acceptors/annihilators under study (<em>a</em>, <strong>NDS</strong>; <em>b</em>, <strong>NPX</strong>) displayed in <em>Figure 3</em>. <strong>3. Figure 4</strong>; Excel file with the numerical values of the spectroscopic investigations on the upconversion mechanism, displayed in <em>Figure 4</em>. <strong>4. Figure 5</strong>; Excel file with the numerical values of the kinetics of the C-Br bond activation for the study of the reductive debromination, displayed in <em>Figure 5</em>.



