Samanta Dipak, Mukherjee Partha Sarathi
Department of Inorganic and Physical Chemistry, Indian Institute of Science, Bangalore 560 012 (India), Fax: (+91) 8023601552.
Chemistry. 2014 Sep 22;20(39):12483-92. doi: 10.1002/chem.201402553. Epub 2014 Aug 8.
Dynamic supramolecular systems involving a tetratopic palladium(II) acceptor and three different pyridine- and imidazole-based donors have been used for self-selection by a synergistic effect of morphological information and coordination ability of ligands through specific coordination interactions. Three different cages were first synthesized by two-component self-assembly of individual donor and acceptor. When all four components were allowed to interact in a reaction mixture, only one out of three cages was isolated. The preferential binding affinity towards a particular partner was also established by transforming a non-preferred cage into a preferred cage by interaction with the appropriate ligand. Computational studies further supported the fact that coordination interaction of imidazole moiety to Pd(II) is enthalpically more preferred compared to pyridine, which drives the selection process. Analysis of crystal packing of both complexes indicated the presence of strong hydrogen bonds between nitrate and water molecules and also H-bonded 3D networks of water. Both complexes exhibit promising proton conductivity (10(-5) to ca. 10(-3) S cm(-1) ) at ambient temperature under a relative humidity of circa 98 % with low activation energy.
涉及四配位钯(II)受体以及三种不同吡啶和咪唑基供体的动态超分子体系,已通过配体的形态信息和配位能力的协同效应,利用特定的配位相互作用进行自选择。首先通过单个供体和受体的两组分自组装合成了三种不同的笼状结构。当所有四种组分在反应混合物中相互作用时,仅分离出三种笼状结构中的一种。通过与合适的配体相互作用,将非优选的笼状结构转化为优选的笼状结构,还确立了对特定配体的优先结合亲和力。计算研究进一步支持了这样一个事实,即与吡啶相比,咪唑部分与Pd(II)的配位相互作用在焓上更有利,这推动了选择过程。对两种配合物晶体堆积的分析表明,硝酸盐和水分子之间存在强氢键,并且还存在水的氢键三维网络。两种配合物在环境温度下、相对湿度约为98%时均表现出有前景的质子传导率(10^(-5)至约10^(-3) S cm^(-1)),且活化能较低。