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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Noncovalent Grafting of a Dy-2(III) Single-Molecule Magnet onto Chemically Modified Multiwalled Carbon Nanotubes
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Noncovalent Grafting of a Dy-2(III) Single-Molecule Magnet onto Chemically Modified Multiwalled Carbon Nanotubes

机译:在化学改性的多壁碳纳米管上,非共价嫁接Dy-2(III)单分子磁体

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While synthetic methods for the grafting of nanoparticles or photoactive molecules onto carbon nanotubes (CNTs) have been developed in the last years, a very limited number of reports have appeared on the grafting of single molecule magnets (SMMs) onto CNTs. There are many potential causes, mainly focused on the fact that the attachment of molecules on surfaces remains not trivial and their magnetic properties are significantly affected upon attachment. Nevertheless, demanding fields such as spintronic devices makes of utmost implementation of this particular type of hybrid material in importance the investigation of new synthetic protocols for effective grafting. In this paper, we demonstrate a new experimental protocol for the noncovalent grafting of Dili, SMM, [Dy-2(NO3)(2)(saph)(2)(DMF)(4)], where H(2)saph = N-salicylidene-o-aminophenol and DMF = N,N-dimethylformamide, onto the surface of functionalized multiwalled CNTs (MWCNTs). We present a simple wet chemical method, followed by an extensive washing protocol, where the cross-referencing of data from high -resolution transmission electron microscopy combined with electron energy loss spectroscopy, conventional magnetic measurements (direct and alternating current), X-ray photoelectron spectroscopy, and Raman spectroscopy was used to investigate the physical properties, chemical nature, and overall magnetic behavior of the resulting hybrids. A key point to the whole synthesis involves the functionalization of MWCNTs with carboxylic groups, which proved to be a powerful strategy for enhancing the ability to process MWCNTs and facilitating the preparation of hybrid composites. While in the majority of analogous hybrid materials the raw carbon material (multiwalled or single -walled nanotubes) is heavily treated to minimize the contribution of contaminant traces of magnetic nanoparticles with important effects on their electronic properties, this method can lead easily to elimination of the largest part of the imp
机译:虽然纳米颗粒或光活性分子到碳纳米管(CNT)的接枝的合成方法已经在过去几年中得到了发展,非常有限的报告数量的出现在单分子磁体(的SMM)到CNT的接枝。有许多潜在的原因,主要集中在分子在表面上的附着仍然不是小事和他们的磁特性在附件显著影响的事实。然而,苛刻的领域,如自旋电子器件,使最实施的重要性这种特殊类型的混合材料的有效嫁接新合成的协议进行调查的。在本文中,我们证明了帝,SMM的非共价接枝新实验方案,[镝-2(NO 3)(2)(SAPH)(2)(DMF)(4)],其中,H(2)SAPH =的N-亚水杨基 - 邻 - 氨基苯酚和DMF = N,N-二甲基甲酰胺,在官能化多壁面CNT(碳纳米管)的表面上。我们提出了一个简单的湿化学法,接着是充分洗涤协议,其中从高 - 分辨率透射电子显微镜利用电子能量损失谱,常规磁测量(直流和交流电流),X射线光电子组合的数据的交叉引用光谱和拉曼光谱被用来研究的物理性质,化学性质,产生的杂种的总体磁行为。一个关键点到整个合成包括具有羧酸基团,其被证明是用于增强的能力,多壁碳纳米管的过程和促进混杂复合材料的制备中的有力策略多壁碳纳米管的官能化。虽然在大多数类似杂化材料的碳原料(多壁或单壁纳米管)是重处理,以最小化与在他们的电子性质有重要影响的磁性纳米粒子的污染物迹线的贡献,这种方法很容易导致消除的小鬼的最大部分

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