碳酸丙烯酯
三碘化物
乙腈
离子液体
化学
碘化物
碘
无机化学
电解质
电化学
有机化学
色素敏化染料
物理化学
催化作用
电极
作者
Cameron L. Bentley,Alan M. Bond,Anthony F. Hollenkamp,Peter J. Mahon,Jie Zhang
标识
DOI:10.1021/acs.jpcc.5b07484
摘要
The iodide/triiodide/iodine (I – /I 3 – /I 2 ) redox system has been the subject of electrochemical investigations for well over half a century and remains a contemporary research interest due to the integral role of the I – /I 3 – couple in dye-sensitized solar cell (DSSC) technology. In this study, we have calculated the formal potential ( E 0′ ) of the I – /I 2 process and the stability constant ( K stab ) of I 3 – in two protic solvents (water and ethanol), two aprotic solvents (acetonitrile and propylene carbonate), eight aprotic ionic liquids (AILs), and one protic ionic liquid (PIL) using the voltammetric methodology developed herein. Furthermore, using 1-ethyl-3-methylimidazlium bis(trifluoromethanesulfonyl)imide (abbr. [C 2 mim][NTf 2 ]) as a “model” ionic liquid-based DSSC electrolyte system, we have also investigated the influence of three common additives/impurities in DSSCs (i.e., tert -butylpyridine, Li +, and water) on the parameters E 0′ (I – /I 2 ) and K stab and characterized two analogous redox systems, Br – /Br 3 – /Br 2 and SeCN – /(SeCN) 3 – /(SeCN) 2 . E 0′ (I – /I 2 ) and K stab (I 3 – ) increase in the order ethanol ≈ acetonitrile < propylene carbonate < AILs < PIL < water; and water < ethanol ≈ PIL < acetonitrile ≈ AILs < propylene carbonate, respectively. In the presence of the additives/impurities (see above), E 0′ (I – /I 2 ) and K stab increase in the order 0.5 M tert -butylpyridine < neat [C 2 mim][NTf 2 ] ≈ 0.3 M Li + < 2 wt % water and 0.5 M tert -butylpyridine ≪ 2 wt % water < 0.3 M Li + ≈ neat [C 2 mim][NTf 2 ], respectively. Finally, E 0′ (X – /X 2 ) and K stab (X 3 – ) increase in the order SeCN – /(SeCN) 2 ≈ I – /I 2 < Br – /Br 2 and (SeCN) 3 – ≪ Br 3 – < I 3 –, respectively, in [C 2 mim][NTf 2 ]. The trends in the (pseudo)halide/(pseudo)halogen formal potentials and tri(pseudo)halide stability constants have been rationalized in terms of the physicochemical parameters (i.e., polarity, Gutmann donor/acceptor numbers, ionic strength, etc.) of the respective solvent/ionic liquid media.
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