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Hydrolysis of 2D Transition-Metal Carbides (MXenes) in Colloidal Solutions

机译:胶体溶液中的2D过渡 - 金属碳化物(MXENES)的水解

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摘要

Although oxidation was deemed as the main factor responsible for the instability of MXenes in aqueous colloids, here we put forward and test a hypothesis about the central role of water as the primary factor. We show that water and related processes of MXene hydrolysis play the main role in the phenomena leading to complete transformations of 2D titanium carbide MXenes into titania in aqueous environments. To demonstrate the role of water, the stability of two MXenes, Ti3C2Tx and Ti2CTx, has been systematically studied in aqueous and nonaqueous colloids exposed to oxygen and inert gas atmospheres. The calculated time constant for degradation of Ti3C2Tx dispersed in anhydrous iso-propanol saturated with pure oxygen exceeds 5 years, in striking contrast to the same MXene dispersed in water, where more than a half of it would transform into titania even in an oxygen-less atmosphere over similar to 41 days. A thinner Ti2CTx MXene showed similar behavior, albeit with shorter time constants in both solvents, correspondingly. UV-vis and Raman spectroscopy were used to analyze the oxidation kinetics and composition of fresh and aged MXenes. An intense anatase peak was observed in MXenes stored in aqueous solutions under Ar atmosphere, while no signs of oxidation could be found in iso-propanol solutions of the MXenes stored under O-2 atmosphere over a similar period of time.
机译:虽然氧化被认为是负责含水胶体中mxenes不稳定的主要因素,但在这里我们提出并测试了关于水作为主要因素的中心作用的假设。我们表明蒙乙胺水解的水和相关过程在现象中发挥了主要作用,从而使2D碳化钛Mxenes在水性环境中完全转化为二氧化钛。为了证明水的作用,在暴露于氧气和惰性气体环境的水性和非水胶体中,已经在系统地研究了两个MxENes,Ti3C2Tx和Ti2CTX的稳定性。用纯氧气饱和的无水异丙醇分散的Ti3C2Tx的降解的计算时间常数超过5年,与分散在水中的相同蒙氏膜上的引人注目的对比,其中,即使在氧气中也将转化为二氧化钛与41天相似的气氛。较薄的Ti2ctx mxene显示出类似的行为,尽管在两个溶剂中的时间常数较短,但相应地具有较短的时间。 UV-VIS和拉曼光谱用于分析新鲜和老月的氧化动力学和组成。在储存在Ar气氛下的水溶液中的mxEN中观察到强烈的锐苯酶峰,而在类似的时间内,在储存在O-2气氛下的MxENES的异丙醇溶液中没有氧化迹象。

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