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Comparison of rhenium–porphyrin dyads for CO₂ photoreduction: photocatalytic studies and charge separation dynamics studied by time-resolved IR spectroscopy

机译:por-卟啉二元化合物对CO 2光还原的比较:时间分辨红外光谱研究光催化研究和电荷分离动力学

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摘要

We report a study of the photocatalytic reduction of CO₂ to CO by zinc porphyrins covalently linked to [ReI(2,2′-bipyridine)(CO)₃L]⁺/⁰ moieties with visible light of wavelength >520 nm. Dyad 1 contains an amide C₆H₄NHC(O) link from porphyrin to bipyridine (Bpy), Dyad 2 contains an additional methoxybenzamide within the bridge C₆H₄NHC(O)C₆H₃(OMe)NHC(O), while Dyad 3 has a saturated bridge C₆H₄NHC(O)CH₂; each dyad is studied with either L = Br or 3-picoline. The syntheses, spectroscopic characterisation and cyclic voltammetry of Dyad 3 Br and [Dyad 3 pic]OTf are described. The photocatalytic performance of [Dyad 3 pic]OTf in DMF/triethanolamine (5 : 1) is approximately an order of magnitude better than [Dyad 1 pic]PF₆ or [Dyad 2 pic]OTf in turnover frequency and turnover number, reaching a turnover number of 360. The performance of the dyads with Re–Br units is very similar to that of the dyads with [Re–pic]⁺ units in spite of the adverse free energy of electron transfer. The dyads undergo reactions during photocatalysis: hydrogenation of the porphyrin to form chlorin and isobacteriochlorin units is detected by visible absorption spectroscopy, while IR spectroscopy reveals replacement of the axial ligand by a triethanolaminato group and insertion of CO₂into the latter to form a carbonate. Time-resolved IR spectra of [Dyad 2 pic]OTf and [Dyad 3 pic]OTf (560 nm excitation in CH₂Cl₂) demonstrated electron transfer from porphyrin to Re(Bpy) units resulting in a shift of ν(CO) bands to low wavenumbers. The rise time of the charge-separated species for [Dyad 3 pic]OTf is longest at 8 (±1) ps and its lifetime is also the longest at 320 (±15) ps. The TRIR spectra of Dyad 1 Br and Dyad 2 Br are quite different showing a mixture of 3MLCT, IL and charge-separated excited states. In the case of Dyad 3 Br, the charge-separated state is absent altogether. The TRIR spectra emphasize the very different excited states of the bromide complexes and the picoline complexes. Thus, the similarity of the photocatalytic data for bromide and picoline dyads suggests that they share common intermediates. Most likely, these involve hydrogenation of the porphyrin and substitution of the axial ligand at rhenium.
机译:我们报道了通过与[ReI(2,2'-联吡啶)(CO)₃L]⁺/⁰部分共价连接的锌卟啉与波长大于520 nm的可见光光催化还原CO 2为CO的研究。二元化合物1包含一个从卟啉到联吡啶(Bpy)的酰胺C₄H₄NHC(O)连接,二元化合物2在桥C₆H₄NHC(O)C₆H₃(OMe)NHC(O)中包含一个额外的甲氧基苯甲酰胺,而二元化合物3具有一个饱和的桥C₆H₄NHC(O) )CH 2;用L = Br或3-picoline研究每个二元组。描述了Dyad 3 Br和[Dyad 3 pic] OTf的合成,光谱表征和循环伏安法。 [Dyad 3 pic] OTf在DMF /三乙醇胺(5:1)中的光催化性能比[Dyad 1 pic]PF₆或[Dyad 2 pic] OTf的周转频率和周转数大约高一个数量级,达到周转率数目为360。尽管电子转移的自由能很低,但具有Re-Br单元的二元组的性能与具有[Re-pic]⁺单元的二元组的性能非常相似。二元体在光催化过程中发生反应:通过可见吸收光谱法检测卟啉的氢化形成二氢卟酚和异细菌二氯单元,而红外光谱显示三乙醇胺基团取代了轴向配体,并向后者插入了CO 2形成碳酸盐。时间分辨的[Dyad 2 pic] OTf和[Dyad 3 pic] OTf的红外光谱(在CH 2 Cl 2中激发560 nm)表明电子从卟啉转移到Re(Bpy)单元,导致ν(CO)谱带向低波数转移。 [Dyad 3 pic] OTf的电荷分离物的上升时间最长,为8(±1)ps,其寿命也最长,为320(±15)ps。 Dyad 1 Br和Dyad 2 Br的TRIR光谱差异很大,显示出3MLCT,IL和电荷分离的激发态的混合物。在Dyad 3 Br的情况下,完全不存在电荷分离状态。 TRIR光谱强调了溴化物配合物和甲基吡啶配合物的非常不同的激发态。因此,溴化物和甲基吡啶二联体的光催化数据的相似性表明它们共享共同的中间体。这些很可能涉及卟啉的氢化和the上的轴向配体的取代。

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