MOE Key Laboratory of Bioinorganic and Synthetic Chemistry, School of Chemistry, Sun Yat-Sen University , Guangzhou 510275, China.
J Am Chem Soc. 2017 Feb 8;139(5):1778-1781. doi: 10.1021/jacs.6b12353. Epub 2017 Jan 26.
The paddle-wheel type cluster Co(RCOO)(L) (R = substituent group, L = terminal ligand), possessing unusual metal coordination geometry compared with other cobalt compounds, may display high catalytic activity but is highly unstable especially in water. Here, we show that with judicious considerations of the host/guest geometries and modular synthetic strategies, the labile dicobalt clusters can be immobilized and stabilized in a metal-organic framework (MOF) as coordinative guests. The Fe(na)(L) fragment in the MOF [{Fe(μ-O)(bdc)}{Fe(na)(L)}] (Hbdc = 1,4-benzenedicaboxylic acid, Hna = nicotinic acid) can be removed to give [{Fe(μ-O)(bdc)}] with a unique framework connectivity possessing suitable distribution of open metal sites for binding the dicobalt cluster in the form of Co(na)(L). After two-step, single-crystal to single-crystal, postsynthetic modifications, a thermal-, water-, and alkaline-stable MOF [{Fe(μ-O)(bdc)}{Co(na)(L)}] containing the desired dicobalt cluster was obtained, giving extraordinarily high electrocatalytic oxygen evolution activity in water at pH = 13 with overpotential as low as 225 mV at 10.0 mA cm.
桨轮型簇合物 Co(RCOO)(L)(R = 取代基,L = 端基配体)与其他钴化合物相比具有不寻常的金属配位几何形状,可能表现出高催化活性,但极不稳定,尤其是在水中。在这里,我们表明,通过对主体/客体几何形状和模块化合成策略的明智考虑,不稳定的二钴簇可以作为配位客体固定在金属有机骨架(MOF)中。MOF [{Fe(μ-O)(bdc)}{Fe(na)(L)}](Hbdc = 1,4-苯二甲酸,Hna = 烟酸)中的 Fe(na)(L)片段可以被去除,得到具有独特框架连接的 [{Fe(μ-O)(bdc)}],具有合适的开放金属位点分布,可将二钴簇以 Co(na)(L)的形式结合。经过两步、单晶到单晶、后合成修饰,得到了含有所需二钴簇的热稳定、水稳定和堿稳定的 MOF [{Fe(μ-O)(bdc)}{Co(na)(L)}],在 pH = 13 的水中具有极高的电催化氧气析出活性,过电位低至 225 mV 时可达 10.0 mA cm。