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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Modulation, Characterization, and Engineering of Advanced Materials for Electrochemical Energy Storage Applications: MoO3/V2O5 Bilayer Model System
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Modulation, Characterization, and Engineering of Advanced Materials for Electrochemical Energy Storage Applications: MoO3/V2O5 Bilayer Model System

机译:电化学储能应用先进材料的调制,表征和工程:MOO3 / V2O5双层模型系统

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摘要

Core shell, multilayered and coated materials have great importance to electrochemical energy storage systems, sensors, actuators, photonics, and photoactive applications. A deeper understanding of the effect of combining different materials in complex structures on their physical and electrochemical properties is vital for better engineering of such compounds and wise modulation of their physical characteristics. Herein we proposed a model system of thin film MoO3/V2O5 bilayer systems. The crystallinity, texture, and morphology of each layer in the bilayer structures were determined by X-ray diffraction (XRD), Raman spectroscopy, high resolution scanning electron microscopy (HR-SEM), and atomic force microscopy (AFM). The electrochemical properties were studied via slow scan rate cyclic voltammetry (SSCV) in lithium ions containing solution. The study clearly shows that the physical and electrochemical properties of each layer in a bilayer configuration are not similar to the properties of the single material. Therefore, at least for bilayer materials, the whole structure properties are more complex than simply combining the properties of the individual materials.
机译:核心外壳,多层和涂层材料对电化学能量存储系统,传感器,执行器,光子和光电应用具有重要意义。更深入地理解将不同材料在其物理和电化学性质上组合的复杂结构中的效果对于更好的这种化合物的工程和理智调制它们的物理特性至关重要。在此,我们提出了一种薄膜MOO3 / V2O5双层系统的模型系统。通过X射线衍射(XRD),拉曼光谱,高分辨率扫描电子显微镜(HR-SEM)和原子力显微镜(AFM)测定双层结构中每层的结晶度,纹理和形态。通过含溶液的锂离子慢扫描速率环伏安法(SSCV)研究了电化学性质。该研究清楚地表明,双层配置中的每层的物理和电化学性质与单个材料的性质不同。因此,至少对于双层材料,整个结构性质比简单地组合各种材料的性质更复杂。

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