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一对具有零场单分子磁体行为、质子传导特性和磁光法拉第效应的多功能铜(II)-镝(III)对映体

A Pair of Multifunctional Cu(II)-Dy(III) Enantiomers with Zero-Field Single-Molecule Magnet Behaviors, Proton Conduction Properties and Magneto-Optical Faraday Effects.

作者信息

Zhu Shui-Dong, Zhou Yu-Lin, Liu Fang, Lei Yu, Liu Sui-Jun, Wen He-Rui, Shi Bin, Zhang Shi-Yong, Liu Cai-Ming, Lu Ying-Bing

机构信息

College of Chemistry and Chemical Engineering, Gannan Normal University, Ganzhou 341000, China.

Jiangxi Provincial Key Laboratory of Functional Molecular Materials Chemistry, School of Chemistry and Chemical Engineering, Jiangxi University of Science and Technology, Ganzhou 341000, China.

出版信息

Molecules. 2023 Nov 9;28(22):7506. doi: 10.3390/molecules28227506.

Abstract

Multifunctional materials with a coexistence of proton conduction properties, single-molecule magnet (SMM) behaviors and magneto-optical Faraday effects have rarely been reported. Herein, a new pair of Cu(II)-Dy(III) enantiomers, [DyCu(-HL)(HO)(NO)]·(NO)·(HO) (- and -) (HL = [/] -N,N'-bis [3-hydroxysalicylidene] -1,2-cyclohexanediamine), has been designed and prepared using homochiral Schiff-base ligands. - and - contain linear Cu(II)-Dy(III)-Cu(II) trinuclear units and possess 1D stacking channels within their supramolecular networks. - and - display chiral optical activity and strong magneto-optical Faraday effects. Moreover, - shows a zero-field SMM behavior. In addition, - demonstrates humidity- and temperature-dependent proton conductivity with optimal values of 1.34 × 10 S·cm under 50 °C and 98% relative humidity (RH), which is related to a 1D extended H-bonded chain constructed by water molecules, nitrate and phenol groups of the -HL ligand.

摘要

同时具有质子传导特性、单分子磁体(SMM)行为和磁光法拉第效应的多功能材料鲜有报道。在此,使用手性席夫碱配体设计并制备了一对新的铜(II)-镝(III)对映体,[DyCu(-HL)(HO)(NO)]·(NO)·(HO)(-和-)(HL = [/] -N,N'-双[3-羟基水杨醛]-1,2-环己二胺)。-和-包含线性铜(II)-镝(III)-铜(II)三核单元,并且在其超分子网络中具有一维堆积通道。-和-表现出手性光学活性和强磁光法拉第效应。此外,-表现出零场单分子磁体行为。另外,-在50°C和98%相对湿度(RH)下表现出与湿度和温度相关的质子传导性,最佳值为1.34×10 S·cm,这与由-HL配体的水分子、硝酸根和酚基团构建的一维扩展氢键链有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b20e/10673516/1b1e4366efda/molecules-28-07506-g001.jpg

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