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钴(II)立方烷的合成、磁性和 STM 光谱学研究 [Co(II) (4)(Cl)(4)(HL)(4)]。

Synthesis, magnetic properties, and STM spectroscopy of cobalt(II) Cubanes [Co(II) (4)(Cl)(4)(HL)(4)].

机构信息

Department Chemie und Pharmazie, Lehrstuhl für Anorganische und Allgemeine Chemie, Universität Erlangen-Nürnberg, Egerlandstr. 1, 91058 Erlangen, Germany.

出版信息

Chemistry. 2010 Apr 26;16(16):4784-92. doi: 10.1002/chem.200902578.

Abstract

Reaction of cobalt(II) chloride hexahydrate with N-substituted diethanolamines H(2)L(2-4) (3) in the presence of LiH in anhydrous THF leads under anaerobic conditions to the formation of three isostructural tetranuclear cobalt(II) complexes [Co(II) (4)(Cl)(4)(HL(2-4))(4)] (4) with a Co(4)(mu(3)-O)(4) cubane core. According to X-ray structural analyses, the complexes 4 a,c crystallize in the tetragonal space group I4(1)/a, whereas for complex 4 b the tetragonal space group P$\bar 4$ was found. In the solid state the orientation of the cubane cores and the formation of a 3D framework were controlled by the ligand substituents of the cobalt(II) cubanes 4. This also allowed detailed magnetic investigations on single crystals. The analysis of the SQUID magnetic susceptibility data for 4 a gave intramolecular ferromagnetic couplings of the cobalt(II) ions (J(1) approximately 20.4 K, J(2) approximately 7.6 K), resulting in an S=6 ground-state multiplet. The anisotropy was found to be of the easy-axis type (D=-1.55 K) with a resulting anisotropy barrier of Delta approximately 55.8 K. Two-dimensional electron-gas (2DEG) Hall magnetization measurements revealed that complex 4 a is a single-molecule magnet and shows hysteretic magnetization characteristics with typical temperature and sweep-rate dependencies below a blocking temperature of about 4.4 K. The hysteresis loops collapse at zero field owing to fast quantum tunneling of the magnetization (QTM). The structural and electronic properties of cobalt(II) cubane 4 a, deposited on a highly oriented pyrolytic graphite (HOPG) surface, were investigated by means of STM and current imaging tunneling spectroscopy (CITS) at RT and standard atmospheric pressure. In CITS measurements the rather large contrast found at the expected locations of the metal centers of the molecules indicated the presence of a strongly localized LUMO.

摘要

六水合氯化钴(II)与 N-取代的二乙醇胺 H(2)L(2-4)(3)在无水四氢呋喃中的反应,在 LiH 的存在下,在无氧条件下导致形成三个结构相同的四核钴(II)配合物[Co(II)(4)(Cl)(4)(HL(2-4))(4)](4),具有Co(4)(mu(3)-O)(4)的立方烷核。根据 X 射线结构分析,配合物 4a、c 在四方晶系 I4(1)/a 中结晶,而对于配合物 4b,则发现四方晶系 P$\bar 4$。在固态中,立方烷核的取向和三维框架的形成受钴(II)立方烷 4 的配体取代基控制。这也允许对单晶进行详细的磁性研究。对 4a 的 SQUID 磁化率数据的分析表明,钴(II)离子之间存在分子内铁磁耦合(J(1)约为 20.4 K,J(2)约为 7.6 K),导致 S=6 的基态多重态。发现各向异性为易轴型(D=-1.55 K),导致各向异性势垒约为 Delta 约为 55.8 K。二维电子气(2DEG)霍尔磁化率测量表明,配合物 4a 是一个单分子磁体,并显示出滞后磁化特性,典型的温度和扫速依赖性低于约 4.4 K 的阻塞温度。由于磁矩的快速量子隧穿(QTM),在零场下,滞后磁环坍塌。在室温下和标准大气压下,通过 STM 和电流成像隧道光谱学(CITS)研究了沉积在高取向热解石墨(HOPG)表面上的钴(II)立方烷 4a 的结构和电子性质。在 CITS 测量中,在分子的金属中心的预期位置发现的相当大的对比度表明存在强烈的局域化的 LUMO。

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