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INTERMEDIATES IN PHOTOCHEMISTRY OF Fe(III) COMPLEXES IN WATER

机译:水中Fe(III)复合物的中间体中间体

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The photochemistry of Fe(OH)~(2+)complex and complexes formed by Fe(III) and pyruvic (Pyr), tartaric (Tart), sulfosalycilic (SSA) and oxalic (Ox) acids in aqueous solutions were studied by means of stationary and nanosecond laser flash photolysis. The application of different scavengers of transient radicals has shown that the hydroxyl radical is the primary photochemical species in photochemistry of the FeOH~(2+) complex. In the photochemistry of FePyr~(2+) and FeTart~+ complexes a weak absorption was found in the red spectral region which was attributed to [Fe~(II)...R-COO~·]~(2+) radical complexes. Laser flash photolysis of FePyr~(2+) and FeTart~+ complexes in the presence of methyl viologen (effective scavenger of different free radicals) gave evidence of MV~(·+) radical cation formation with concentration as small as ~2% of Fe(III) complex disappeared. The reaction mechanism including inner-sphere electron transfer with the formation of [Fe~(II)...R-COO~·]~(2+) radical complex and its transformation to the reaction products is proposed. The main photochemical process for Fe~(III)(C_2O_4)_3~(3-) complex in aqueous solutions was found to be intramolecular electron transfer from the ligand to Fe(III) ion with the formation of a primary radical complex [(C_2O_4)_2Fe~(II)(C_2O_4~·)]~(3-). The yield of free radical species (i.e., CO_2~(·-) and C_2O_4~(·-)) was found to be less then 6% of Fe~(III)(C_2O_4)_3~(3-) disappeared after a laser pulse.
机译:通过方法研究了由Fe(III)和丙酮(Pyr),牙氨酸(Pyr),酒石酸(Tart),磺基质(SSA)和草酸(OX)酸形成的Fe(OH)〜(2+)复合物的光化学是通过的固定式和纳秒激光闪光光解。不同清除剂的瞬态基团的应用表明,羟基自由基是MeOH〜(2+)复合物的光化学中的初级光化学物质。在Fepyr〜(2+)和Fetart〜+复合物中,在红色光谱区域中发现了弱吸收的弱吸收,其归因于[Fe〜(ii)... R-CoO〜·]〜(2+)自由基复合物。 Fepyr〜(2+)和Fetart〜+复合物在存在甲基Viologen(不同自由基的有效清除剂)中的激光闪光光解,使得MV〜(+)自由基阳离子形成的浓度小于〜2% Fe(iii)复杂消失。提出了包括[Fe〜(II)...... R-CoO〜·]〜(2+)基团复合物的内球电子转移的反应机制及其对反应产物的转化。在水溶液中的Fe〜(III)(C_2O_4)_3〜(3-)复合物的主要光化学方法被发现是从配体到Fe(III)离子的分子内电子与初级基团复合物的形成[(C_2O_4 )_2fe〜(ii)(c_2o_4〜·)]〜(3-)。发现自由基物质的产率(即,CO_2〜(· - )和C_2O_4〜(· - ))较少,在激光后消失的0.FE〜(III)(C_2O_4)_3〜(3-)消失脉冲。

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