Key Laboratory for the Chemistry and Molecular Engineering of Medicinal Resources (Ministry of Education of China), School of Chemistry & Chemical Engineering of Guangxi Normal University, Guilin, 541004, PR China.
Dalton Trans. 2011 Mar 7;40(9):1911-8. doi: 10.1039/c0dt01278e. Epub 2011 Jan 21.
The reactions of new chiral organic ligands trimesoyltri(L-alanine) (L-TMTAH(3)) or trimesoyltri(D-alanine) (D-TMTAH(3)) with transition metal salts in the presence of an ancillary ligand of 4,4'-bipyridine gave two pairs of three dimensional frameworks [Co(3)(L-TMTA)(2)(4,4'-bpy)(4)]·28H(2)O (1), [Co(3)(D-TMTA)(2)(4,4'-bpy)(4)]·28H(2)O (2) [Ni(3)(L-TMTA)(2)(4,4'-bpy)(4)]·2C(2)H(5)OH·14H(2)O (3) and [Ni(3)(D-TMTA)(2)(4,4'-bpy)(4)]·2C(2)H(5)OH·14H(2)O (4). These compounds were characterized by elemental analysis, IR, and X-ray powder diffraction analysis and the structures of 1-3 were determined from X-ray single crystal diffraction analysis. Complexes 1-4 feature linear trinuclear secondary building blocks M(3)(COO)(4) formed via the connection of three metal ions by four carboxylato groups from four TMTA(3-) ligands. Every adjacent two linear trinuclear secondary building blocks are linked by one and three 4,4'-bipyridine molecules along the a and c axis, respectively, to form two-dimensional sheets, which are further connected by TMTA(3-) ligands to construct a porous three dimensional framework with one-dimensional channels. Compound 3 was taken as an example to investigate the adsorption properties of compounds 1-4. It revealed a saturated hydrogen uptake of 216.6 cm(3) g(-1) (2.0 wt%) at 11.1 atm measured at 77 K, a maximum CO(2) uptake of 119.4 cm(3) g(-1) (23.5 wt%) at 19.5 atm measured at 298 K and a saturated CH(4) uptake of 77.8 cm(3) g(-1) (5.6 wt%) at 27.1 atm measured at 298 K. The magnetic studies of complexes 1 and 3 indicate the presence of antiferromagnetic interactions between the metal ions in the two compounds.
新的手性有机配体三(三(L-丙氨酸)(L-TMTAH(3))或三(三(D-丙氨酸)(D-TMTAH(3))与过渡金属盐在辅助配体 4,4'-联吡啶的存在下反应,得到两对三维框架[Co(3)(L-TMTA)(2)(4,4'-bpy)(4)]·28H(2)O (1)、[Co(3)(D-TMTA)(2)(4,4'-bpy)(4)]·28H(2)O (2)、[Ni(3)(L-TMTA)(2)(4,4'-bpy)(4)]·2C(2)H(5)OH·14H(2)O (3)和[Ni(3)(D-TMTA)(2)(4,4'-bpy)(4)]·2C(2)H(5)OH·14H(2)O (4)。这些化合物通过元素分析、IR 和 X 射线粉末衍射分析进行了表征,并通过 X 射线单晶衍射分析确定了 1-3 的结构。配合物 1-4 的特征是通过三个金属离子的连接,由四个 TMTA(3-)配体上的四个羧基基团形成线性三核次级建筑块M(3)(COO)(4)。每个相邻的两个线性三核次级建筑块沿着 a 和 c 轴分别由一个和三个 4,4'-联吡啶分子连接,形成二维片,这些片通过 TMTA(3-)配体进一步连接,以构建具有一维通道的多孔三维框架。以 3 为例研究了化合物 1-4 的吸附性能。在 77 K 下,在 11.1 atm 时,它的饱和氢气吸收量为 216.6 cm(3)g(-1)(2.0 wt%),在 298 K 下,在 19.5 atm 时,它的最大 CO(2)吸收量为 119.4 cm(3)g(-1)(23.5 wt%),在 298 K 下,在 27.1 atm 时,它的饱和 CH(4)吸收量为 77.8 cm(3)g(-1)(5.6 wt%)。复合物 1 和 3 的磁性研究表明,两种化合物中金属离子之间存在反铁磁相互作用。