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手性螺旋金属有机骨架的第 1 族金属。

Homochiral helical metal-organic frameworks of group 1 metals.

机构信息

Department of Chemistry and Biochemistry, University of South Carolina, Columbia, South Carolina 29208, United States.

出版信息

Inorg Chem. 2013 Sep 3;52(17):10041-51. doi: 10.1021/ic401327h. Epub 2013 Aug 14.

Abstract

The reactions of (S)-2-(1,8-naphthalimido)propanoic acid (HL(ala)) and (S)-2-(1,8-naphthalimido)-3-hydroxypropanoic acid (HL(ser)), protonated forms of ligands that contain a carboxylate donor group, an enantiopure chiral center, and a 1,8-naphthalimide π···π stacking supramolecular tecton and in the case of HL(ser) an alcohol functional group, with the appropriate alkali metal hydroxide followed by a variety of crystallization methods leads to the formation of crystalline K(L(ala))(MeOH) (1), K(L(ala))(H2O) (2), Na(L(ala))(H2O) (3), KL(ser) (4), CsL(ser) (5), and CsL(ala) (6). Each of these new complexes has a solid state structure based on six-coordinate metals linked into homochiral helical rod secondary building unit (SBU) central cores. In addition to the bonding of the carboxylate and solvent (in the case of L(ser) the ligand alcohol) to the metals, both oxygens on the 1,8-naphthalimide act as donor groups. One naphthalimide oxygen bonds to the same helical rod SBU as the carboxylate group of that ligand forming a chelate ring. The other naphthalimide oxygen bonds to adjacent SBUs. In complexes 1-3, this inter-rod link has a square arrangement bonding four other rods forming a three-dimensional enantiopure metal-organic framework (MOF) structure, whereas in 4-6 this link has a linear arrangement bonding two other rods forming a two-dimensional, sheet structure. In the latter case, the third dimension is supported exclusively by interdigitated π···π stacking interactions of the naphthalimide supramolecular tecton, forming enantiopure supramolecular MOF solids. Compounds 1-3 lose the coordinated solvent when heating above 100 °C. For 1, the polycrystalline powder reverts to 1 only by recrystallization from methanol, whereas compounds 2 and 3 undergo gas/solid, single-crystal to single-crystal transformations to form dehydrated compounds 2* and 3*, and rehydration occurs when crystals of these new complexes are left out in air. The reversible single-crystal to single-crystal transformation of 2 involves the dissociation/coordination of a terminal water ligand, but the case of 3 is remarkable considering that the water that is lost is the only bridging ligand between the metals in the helical rod SBU and a carboxylate oxygen that is a terminal ligand in 3 moves into a bridging position in 3* to maintain the homochiral helical rods. Both 2* and 3* contain five-coordinate metals. There are no coordinated solvents in compounds 4-6, in two cases by designed ligand modification, which allows them to have high thermal stability. Compounds 1-3 did not exhibit observable Second Harmonic Generation (SHG) efficiency at an incident wavelength of 1064 nm, but compounds 4-6 did exhibit modest SHG efficiency for MOF-like compounds in the range of 30 × α-SiO2.

摘要

(S)-2-(1,8-萘二甲酰亚胺基)丙酸(HL(ala))和(S)-2-(1,8-萘二甲酰亚胺基)-3-羟基丙酸(HL(ser))的反应,这些配体含有羧酸供体基团、手性中心和 1,8-萘二甲酰亚胺π···π堆积超分子结构,在 HL(ser)的情况下还含有醇官能团,与适当的碱金属氢氧化物结合,然后通过各种结晶方法,形成结晶的 K(L(ala))(MeOH)(1)、K(L(ala))(H2O)(2)、Na(L(ala))(H2O)(3)、KL(ser)(4)、CsL(ser)(5)和 CsL(ala)(6)。这些新的配合物中的每一个都具有基于六配位金属的固态结构,这些金属连接成同手性螺旋棒二级建筑单元(SBU)中心核。除了羧酸盐和溶剂(对于 L(ser),配体醇)与金属的键合之外,1,8-萘二甲酰亚胺上的两个氧原子都充当供体基团。一个萘二甲酰亚胺氧原子与同一螺旋棒 SBU 结合,与该配体的羧酸盐基团形成螯合环。另一个萘二甲酰亚胺氧原子与相邻的 SBUs 结合。在复合物 1-3 中,这种杆间连接具有正方形排列,连接四个其他杆形成三维同手性金属有机骨架(MOF)结构,而在 4-6 中,这种连接具有线性排列,连接两个其他杆形成二维、片状结构。在后一种情况下,第三个维度仅由萘二甲酰亚胺超分子结构的互穿插π···π堆积相互作用支持,形成同手性超分子 MOF 固体。化合物 1-3 在加热超过 100°C 时失去配位溶剂。对于 1,多晶粉末仅通过从甲醇中重结晶才能恢复为 1,而化合物 2 和 3 经历气相/固相、单晶到单晶的转变,形成脱水化合物 2和 3,并且当这些新配合物的晶体暴露在空气中时会发生再水合作用。2 的可逆单晶到单晶转变涉及末端水配体的解离/配位,但考虑到在 SBU 中螺旋棒中失去的水是金属之间唯一的桥连配体,并且在 3 中羧酸盐氧原子是 3 的末端配体,它移动到 3中的桥接位置以保持同手性螺旋棒,这种情况是很显著的。2和 3*都含有五配位金属。在化合物 4-6 中没有配位溶剂,在两种情况下都是通过设计配体修饰,这使得它们具有高热稳定性。化合物 1-3 在 1064nm 入射波长下没有表现出可观察到的二次谐波产生(SHG)效率,但化合物 4-6 在 MOF 类化合物的范围内表现出适度的 SHG 效率,范围为 30×α-SiO2。

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