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醇类与 Mn(12) 单分子磁体 (SMM) 的结合:获得最高势垒 Mn(12) SMM。

Binding of higher alcohols onto Mn(12) single-molecule magnets (SMMs): access to the highest barrier Mn(12) SMM.

机构信息

Department of Chemistry, University of Florida, Gainesville, Florida 32611, USA.

出版信息

Inorg Chem. 2010 Feb 15;49(4):1325-36. doi: 10.1021/ic901480y.

Abstract

Two new members of the Mn(12) family of single-molecule magnets (SMMs), [Mn(12)O(12)(O(2)CCH(2)Bu(t))(16)(Bu(t)OH)(H(2)O)(3)].2Bu(t)OH (3.2Bu(t)OH) and [Mn(12)O(12)(O(2)CCH(2)Bu(t))(16)(C(5)H(11)OH)(4)] (4) (C(5)H(11)OH is 1-pentanol), are reported. They were synthesized from [Mn(12)O(12)(O(2)CMe)(16)(H(2)O)(4)].2MeCO(2)H.4H(2)O (1) by carboxylate substitution and crystallization from the appropriate alcohol-containing solvent. Complexes 3 and 4 are new members of the recently established [Mn(12)O(12)(O(2)CCH(2)Bu(t))(16)(solv)(4)] (solv = H(2)O, alcohols) family of SMMs. Only one bulky Bu(t)OH can be accommodated into 3, and even this causes significant distortion of the [Mn(12)O(12)] core. Variable-temperature, solid-state alternating current (AC) magnetization studies were carried out on complexes 3 and 4, and they established that both possess an S = 10 ground state spin and are SMMs. However, the magnetic behavior of the two compounds was found to be significantly different, with 4 showing out-of-phase AC peaks at higher temperatures than 3. High-frequency electron paramagnetic resonance (HFEPR) studies were carried out on single crystals of 3.2Bu(t)OH and 4, and these revealed that the axial zero-field splitting constant, D, is very different for the two compounds. Furthermore, it was established that 4 is the Mn(12) SMM with the highest kinetic barrier (U(eff)) to date. The results reveal alcohol substitution as an additional and convenient means to affect the magnetization relaxation barrier of the Mn(12) SMMs without major change to the ligation or oxidation state.

摘要

两个新的锰(12)家族的单分子磁体(SMM),[Mn(12)O(12)(O 2 CCH 2 Bu(t))(16)(Bu(t)OH)(H 2 O)(3)]。2Bu(t)OH(3.2Bu(t)OH)和[Mn(12)O(12)(O 2 CCH 2 Bu(t))(16)(C 5 H 11 OH)(4)](4)(C 5 H 11 OH 是 1-戊醇),被报道。它们是由[Mn(12)O(12)(O 2 CMe)(16)(H 2 O)(4)]。2MeCO 2 H.4H 2 O(1)通过羧酸取代和从适当的醇溶剂中结晶得到的。配合物 3 和 4 是最近建立的[Mn(12)O(12)(O 2 CCH 2 Bu(t))(16)(溶剂)(4)](溶剂= H 2 O,醇)家族的新成员。只有一个庞大的 Bu(t)OH 可以容纳在 3 中,即使这样也会导致[Mn(12)O(12)]核心的显著扭曲。对配合物 3 和 4 进行了变温固态交流(AC)磁化研究,结果表明它们都具有 S = 10 基态自旋,是 SMM。然而,这两种化合物的磁行为发现有显著的不同,4 在较高温度下显示出反相交流峰比 3。对 3.2Bu(t)OH 和 4 的单晶进行了高频电子顺磁共振(HFEPR)研究,结果表明,这两种化合物的轴向零场分裂常数 D 非常不同。此外,还确定了 4 是迄今为止具有最高动力学势垒(U(eff))的 Mn(12)SMM。结果表明,醇取代是一种额外的、方便的方法,可以在不改变配体或氧化态的情况下影响 Mn(12)SMM 的磁化弛豫势垒。

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