School of Chemistry & Chemical Biology, University College Dublin, Belfield, Dublin 4, Ireland.
Inorg Chem. 2013 May 6;52(9):5395-402. doi: 10.1021/ic400347r. Epub 2013 Apr 17.
Analogues of Ru(bpy)3 were prepared in which one pyridine ligand site is substituted by a N-heterocyclic carbene (NHC) ligand, that is, either by an imidazolylidene with a variable wingtip group R (R = Me, 3a; R = Et, 3b; R = iPr, 3c), or by a benzimidazolylidene (Me wingtip group, 3d), or by a 1,2,3-triazolylidene (Me wingtip group, 3e). All complexes were characterized spectroscopically, photophysically, and electrochemically. An increase of the size of the wingtip groups from Me to Et or iPr groups distorts the octahedral geometry (NMR spectroscopy) and curtails the reversibility of the ruthenium oxidation. NHC ligands with methyl wingtip groups display reversible ruthenium oxidation at a potential that reflects the donor properties of the NHC ligand (triazolylidene > imidazolylidene > benzimidazolylidene). The most attractive properties were measured for the triazolylidene ruthenium complex 3e, featuring the smallest gap between the highest occupied molecular orbital (HOMO) and the lowest unoccupied molecular orbital (LUMO) in the series (2.41 eV), a slightly red-shifted absorption profile, and reasonable excited-state lifetime (188 ns) when compared to Ru(bpy)3. These features demonstrate the potential utility of triazolylidene ruthenium complexes as photosensitizers for solar energy conversion.
Ru(bpy)3的类似物被制备出来,其中一个吡啶配体位点被 N-杂环卡宾 (NHC) 配体取代,即通过带有可变翼基团 R 的咪唑啉(R = Me, 3a;R = Et, 3b;R = iPr, 3c),或者通过苯并咪唑啉(Me 翼基团,3d),或者通过 1,2,3-三唑啉(Me 翼基团,3e)。所有配合物均通过光谱、光物理和电化学进行了表征。翼基团大小从 Me 增加到 Et 或 iPr 基团会扭曲八面体几何形状(NMR 光谱)并缩短钌氧化的可逆性。带有甲基翼基团的 NHC 配体在反映 NHC 配体供体性质的电位下显示出可逆的钌氧化(三唑啉 > 咪唑啉 > 苯并咪唑啉)。对于三唑啉钌配合物 3e,测量到了最吸引人的性质,该配合物在系列中具有最小的最高占据分子轨道 (HOMO) 和最低未占据分子轨道 (LUMO) 之间的能隙(2.41 eV),吸收谱稍微红移,激发态寿命(188 ns)合理,与 Ru(bpy)3相比。这些特性表明三唑啉钌配合物作为太阳能转换的光敏剂具有潜在的应用价值。