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Molecular and electronic structures and magnetic properties of multilayer graphene nanoclusters and their changes under the influence of adsorbed molecules

机译:多层石墨烯纳米能器的分子和电子结构和磁性特性及其在吸附分子的影响下的变化

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摘要

The results of investigations of the structures and properties of multilayer graphene nano-clusters (nanographites), structural blocks of activated carbon fibers, and their changes under the influence of adsorbed molecules are presented. The presence of specific edge p-electron-ic states in the nanographites and a reversible decrease in their density at the Fermi level upon the interaction of the graphite nanoparticles with adsorbed molecules of oxygen, chlorine, and water were found. The explanation of the discovered effect was proposed in the terms of the model of spin splitting of edge p-electronic states initiated by the transfer of a small fraction of the electron density from the nanographites to adsorbed molecules. The change in the sign of the temperature coefficient of current carrier spin relaxation rate in the presence of adsorbates can be accounted for by their interaction with edge spin-split (magnetically ordered) states. The preservation of peripheral p-electronic states of the nanographites of free (dangling) s-orbitals of edge carbon atoms at saturation with chlorine was substantiated.
机译:提出了多层石墨烯纳米簇(纳米岩层),活性炭纤维结构块的结构和性质的研究结果及其在吸附分子的影响下的变化。发现在纳米岩层中的特定边缘P-电子-IC状态的存在和在石墨纳米颗粒与吸附分子的氧气,氯和水分子的相互作用时,在FERMI水平上的密度的可逆降低。通过从纳米纳米的小部分转移到吸附分子的边缘P-Electronic状态的旋转分裂模型的旋转分裂模型的说明。通过与边缘旋转分裂(磁性有序)状态的相互作用,可以考虑当前载体旋转速率的温度系数的迹象的变化。实质化了边缘碳原子的自由(悬空)S-轨道的纳米簇的外周P-电子状态的保存。

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