Ruđer Bošković Institute, Bijenička Cesta 54, Zagreb 10000, Croatia.
Department of Physics, Faculty of Science, University of Zagreb, Bijenička cesta 32, Zagreb 10000, Croatia.
Inorg Chem. 2023 Jun 19;62(24):9418-9428. doi: 10.1021/acs.inorgchem.3c00443. Epub 2023 Jun 8.
Two heterometallic coordination polymers {[NH(CH)(CH)][MnClCr(CO)]} () and {[NH(CH)-(CH)][MnClCr(CO)]} () were obtained by slow evaporation of an aqueous solution containing the building block [A][Cr(CO)] [A = (CH)(CH)NH or (CH)(CH)NH] and MnCl·2HO. The isostructural compounds comprise irregular two-dimensional (2D) oxalate-bridged anionic layers [MnClCr(CO)] with a Shubnikov plane net topology designated as (4·8), interleaved by the hydrogen-bonded templating cations (CH)(CH)NH () or (CH)(CH)NH (). They exhibit remarkable humidity-sensing properties and very high proton conductivity at room temperature [1.60 × 10 (Ω·cm) at 90% relative humidity (RH) of and 9.6 × 10 (Ω·cm) at 94% RH of ]. The layered structure facilitates the uptake of water molecules, which contributes to the enhancement of proton conductivity at high RH. The better proton transport observed in compared to that in can be tentatively attributed to the higher hydrophilicity of the cations (CH)(CH)NH, which is closely related to their affinity for water molecules. The original topology of the anionic networks in both compounds leads to the development of interesting magnetic phases upon cooling. The magnetically ordered ground state can be described as the coupling of ferromagnetic spin chains in which Mn and Cr ions are bridged by bis(bidentate) oxalate groups into antiferromagnetic planes through monodentate-bidentate oxalate bridges in the layers, which are triggered to long-range order below temperature 4.45 K via weaker interlayer interactions.
两个杂化金属配位聚合物{[NH(CH)(CH)][MnClCr(CO)]}()和{[NH(CH)-(CH)][MnClCr(CO)]}()是通过含有构建块[A][Cr(CO)]的水溶液缓慢蒸发得到的[A = (CH)(CH)NH 或 (CH)(CH)NH]和 MnCl·2HO。同构化合物包含不规则的二维(2D)草酸桥联阴离子层[MnClCr(CO)],具有 Shubnikov 平面网拓扑结构,标记为(4·8),由氢键模板阳离子(CH)(CH)NH()或(CH)(CH)NH()交替排列。它们在室温下表现出显著的湿度感应性能和非常高的质子电导率[90%相对湿度(RH)下为 1.60×10(Ω·cm),94% RH 下为 9.6×10(Ω·cm)]。层状结构有利于水分子的吸收,这有助于在高 RH 下提高质子电导率。与化合物相比,在化合物中观察到的质子传输更好可以暂时归因于阳离子(CH)(CH)NH 的更高亲水性,这与其对水分子的亲和力密切相关。两种化合物中阴离子网络的原始拓扑结构导致在冷却时发展出有趣的磁性相。磁性有序的基态可以描述为通过层中的单齿-双齿草酸桥将 Mn 和 Cr 离子桥接的反铁磁平面中的铁磁自旋链的耦合,通过较弱的层间相互作用在低于 4.45 K 的温度下触发长程有序。