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首页> 外文期刊>Angewandte Chemie >Fluoride-Free Synthesis of Two-Dimensional Titanium Carbide (MXene) Using A Binary Aqueous System
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Fluoride-Free Synthesis of Two-Dimensional Titanium Carbide (MXene) Using A Binary Aqueous System

机译:使用二元含水系统无氟化物合成二维碳化钛(MXENE)

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摘要

Two-dimensional (2D) titanium carbide (Ti3C2) is emerging as an important member of the MXene family. However, fluoride-based synthetic procedures remain an impediment to the practical applications of this promising class of materials. Here we demonstrate an efficient fluoride-free etching method based on the anodic corrosion of titanium aluminium carbide (Ti3AlC2) in a binary aqueous electrolyte. The dissolution of aluminium followed by in situ intercalation of ammonium hydroxide results in the extraction of carbide flakes (Ti3C2Tx, T = O, OH) with sizes up to 18.6 mm and high yield (over 90%) of mono- and bilayers. All-solid-state supercapacitor based on exfoliated sheets exhibits high areal and volumetric capacitances of 220 mFcm(-2) and 439 Fcm(-3), respectively, at a scan rate of 10 mVs(-1), superior to those of LiF/HCl-etched MXenes. Our strategy paves a safe way to the scalable synthesis and application of MXene materials.
机译:二维(2D)碳化钛(TI3C2)是作为MXENE系列的重要成员。 然而,氟化物的合成程序仍然是这类有前途的材料的实际应用的障碍。 在这里,我们证明了基于二元含水电解质碳化钛(Ti3AlC2)的阳极腐蚀的有效的无氟化物蚀刻方法。 铝的溶解,然后原位嵌入氢氧化铵,导致碳化物片(Ti3C2Tx,T = O,OH)的萃取高达18.6mm和高产率(超过90%)的单级和双层。 基于剥离片材的全固态超级电容器分别具有220mFcm(-2)和439fcm(-3)的高面积和体积电容,以10mVs(-1)的扫描速度,优于LIF / HCl蚀刻的mxenes。 我们的战略铺平了可扩展的合成和蒙薄材料的可扩展合成和应用。

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