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Synthesis and properties of 2D-titanium carbide MXene sheets towards electrochemical energy storage applications

机译:电化学能量储存应用的2D-碳化钛M烷片的合成与性能

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The cult MAX phases and MXenes has been a point of an attractive new family of 2D materials for diverse applications. In the present work, titanium carbide MXene sheets have been prepared by etching aluminium from titanium aluminium carbide MAX phase. The sample was investigated by X-Ray diffraction, FESEM, TEM and RAMAN analysis. XRD analysis revealed that the synthesized MXenes were formed in hexagonal crystal system and FE-SEM analysis showed that titanium carbide sheets were exfoliated. Raman analysis showed that the lower modes, which correspond to the "A" phase, disappeared due to the removal of aluminium. The electrochemical performance of the synthesized MXenes towards supercapacitor applications was further investigated using various electrochemical techniques like cyclic Voltammetry (CV), charge-discharge and impedance analysis. Results showed that the new material showed an excellent performance in charge storage applications.
机译:邪教最大阶段和MxENes一直是有吸引力的2D家庭2D家庭,用于各种应用。 在本作工作中,通过从碳化钛的碳化铝最大相蚀刻铝制钛碳化钛胶片片。 通过X射线衍射,FESEM,TEM和拉曼分析研究样品。 XRD分析显示,合成的MXEN在六边形晶体系统中形成,Fe-SEM分析表明碳化钛板被剥离。 拉曼分析表明,对应于“A”相的较低模式由于去除铝而消失。 通过循环伏安法(CV),充放电和阻抗分析等各种电化学技术,进一步研究了合成的MXENS对超级电容应用的电化学性能。 结果表明,新材料在电荷存储应用中表现出优异的性能。

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