Center for Materials Science, Zewail City of Science and Technology , Sheikh Zayed District, 12588 Giza, Egypt.
Laboratoire de Chimie des Processus Biologiques, PSL Research University, Collège de France, CNRS UMR8229, Université Pierre et Marie Curie , 11 Place Marcelin Berthelot, 75231 Cedex 05 Paris, France.
ACS Appl Mater Interfaces. 2016 Aug 10;8(31):19994-20002. doi: 10.1021/acsami.6b05031. Epub 2016 Jul 28.
A number of permanently porous polymers containing Ru(bpy)n photosensitizer or a cobaloxime complex, as a proton-reduction catalyst, were constructed via one-pot Sonogashira-Hagihara (SH) cross-coupling reactions. This process required minimal workup to access porous platforms with control over the apparent surface area, pore volume, and chemical functionality from suitable molecular building blocks (MBBs) containing the Ru or Co complexes, as rigid and multitopic nodes. The cobaloxime molecular building block, generated through in situ metalation, afforded a microporous solid that demonstrated noticeable catalytic activity toward hydrogen-evolution reaction (HER) with remarkable recyclability. We further demonstrated, in two cases, the ability to affect the excited-state lifetime of the covalently immobilized Ru(bpy)3 complex attained through deliberate utilization of the organic linkers of variable dimensions. Overall, this approach facilitates construction of tunable porous solids, with hybrid composition and pronounced chemical and physical stability, based on the well-known Ru(bpy)nor the cobaloxime complexes.
一系列含有 Ru(bpy)n 光敏剂或钴卟啉配合物的永久多孔聚合物,作为质子还原催化剂,通过一锅 Sonogashira-Hagihara (SH) 交叉偶联反应构建。该过程需要最小的后处理即可获得多孔平台,可通过适当的分子砌块(MBB)控制表观表面积、孔体积和化学功能,这些分子砌块含有 Ru 或 Co 配合物,作为刚性和多靶点节点。通过原位金属化生成的钴卟啉分子砌块提供了一种微孔固体,该固体对氢析出反应(HER)表现出显著的催化活性,且具有良好的可循环性。我们进一步在两种情况下证明了通过故意利用具有不同尺寸的有机连接物,影响共价固定的 Ru(bpy)3 配合物的激发态寿命的能力。总的来说,该方法基于众所周知的 Ru(bpy)n 或钴卟啉配合物,促进了可调谐多孔固体的构建,其具有混合组成和显著的化学和物理稳定性。