Department of Chemistry, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.
Dalton Trans. 2013 Nov 28;42(44):15656-62. doi: 10.1039/c3dt52094c.
A new series of ruthenium polypyridyl complexes with a hydroxypyridine ligand were prepared, and their properties were investigated spectroscopically and electrochemically. Particular focus is paid to the effects of protonation-deprotonation and ethylation of the hydroxypyridine ligand, which affects the NMR, electronic spectroscopy, and electrochemistry of the complex. The changes to the UV-vis spectrum were used to determine a pka of 10.5 for the hydroxypyridine nitrogen. In the NMR, protonation of the hydroxypyridine ligand of the complex causes changes in the chemical shifts of the protons on both the hydroxypyridine and bipyridine rings, indicating some degree of electronic communication between these ligands. In addition, it is found that deprotonation of the hydroxypyridine ligand strongly affects the redox potential of the ruthenium metal center, shifting it more negative by 0.4 V. While the electrochemistry of the protonated complex contains irreversible electrochemical events, both deprotonation and subsequent ethylation of the hydroxypyridine ligand result in reversible electrochemistry for all events within the solvent window. For the ethylated complex, we search for a ligand to ligand charge transfer band, corresponding to electron transfer between bipyridine ligands in the mixed valence state. Despite the potential for electronic coupling between ligands through the metal center, we were unable to find any spectroscopic evidence of such electronic coupling.
合成了一系列新的含羟吡啶配体的钌多吡啶配合物,并对其光谱和电化学性质进行了研究。特别关注了羟吡啶配体的质子化-去质子化和乙基化的影响,这影响了配合物的 NMR、电子光谱和电化学。紫外可见光谱的变化用于确定羟吡啶氮的 pKa 值为 10.5。在 NMR 中,配合物中羟吡啶配体的质子化导致羟吡啶和联吡啶环上质子的化学位移发生变化,表明这些配体之间存在一定程度的电子通讯。此外,发现羟吡啶配体的去质子化强烈影响钌金属中心的氧化还原电位,使其向更负方向移动 0.4 V。虽然质子化配合物的电化学包含不可逆的电化学事件,但羟吡啶配体的去质子化和随后的乙基化导致在溶剂窗口内的所有事件都具有可逆电化学。对于乙基化配合物,我们寻找配体到配体电荷转移带,对应于混合价态联吡啶配体之间的电子转移。尽管通过金属中心可能存在配体间的电子偶联,但我们未能找到任何电子偶联的光谱证据。