Localization and Charge State of Metal Ions in Carbon Nanostructures of Europium Bis-Phthalocyanine Pyrolysed Derivatives

IF 1.1 4区 物理与天体物理 Q4 PHYSICS, APPLIED Technical Physics Pub Date : 2024-09-27 DOI:10.1134/S1063784224070223
V. S. Kozlov, V. G. Semenov, A. A. Bykov, V. Yu. Bairamukov
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Abstract

In the experiments of Mössbauer spectroscopy, transmission electron microscopy (TEM) and atomic force microscopy (AFM) the morphology and structurization of the carbon phase, the charge state of europium and the dynamic properties of europium bis-phthalocyanine pyrolysed derivatives, including the Debye temperature, were revealed. It was found that the pyrolysis of europium bis-pthalocyanine resulted in the amorphous carbon matrix and nanoscaled graphene clusters both forming turbostratic carbon phase. The europium ions in the charge state Eu3+/Eu2+ were detected. The data indicated that localization of Eu ions took place between layers of graphenes similar to graphite intercalation compounds. It was shown that an isomeric shift, linewidths and the magnitude of the resonant absorption are essential characteristics of structural transformations at the pyrolysis of rare earth bis-phthalocyanines.

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铕双酞菁热解衍生物碳纳米结构中金属离子的定位和电荷状态
通过莫斯鲍尔光谱学、透射电子显微镜(TEM)和原子力显微镜(AFM)实验,揭示了碳相的形态和结构化、铕的电荷状态以及铕双酞菁热解衍生物的动态特性,包括德拜温度。研究发现,铕双酞菁热解后,无定形碳基体和纳米级石墨烯团簇都形成了湍流碳相。检测到电荷状态为 Eu3+/Eu2+ 的铕离子。数据表明,Eu 离子的定位发生在石墨烯层之间,类似于石墨插层化合物。研究表明,异构体偏移、线宽和共振吸收的大小是稀土双酞菁热解过程中结构转变的基本特征。
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来源期刊
Technical Physics
Technical Physics 物理-物理:应用
CiteScore
1.30
自引率
14.30%
发文量
139
审稿时长
3-6 weeks
期刊介绍: Technical Physics is a journal that contains practical information on all aspects of applied physics, especially instrumentation and measurement techniques. Particular emphasis is put on plasma physics and related fields such as studies of charged particles in electromagnetic fields, synchrotron radiation, electron and ion beams, gas lasers and discharges. Other journal topics are the properties of condensed matter, including semiconductors, superconductors, gases, liquids, and different materials.
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