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Multi-layer Ti_3C_2T_x-nanoparticles (MXenes) as solid lubricants - Role of surface terminations and intercalated water

机译:多层Ti_3C_2T_x-纳米颗粒(MXenes)作为固体润滑剂-表面终止剂和插层水的作用

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摘要

MXenes, a new class of 2-dimensional materials, and in particular Ti3C2Tx-nanoparticles, have attracted considerable attention in energy storage and catalysis lately. Despite having a weakly-bounded multi-layered structure with self-lubricating ability, the usage of MXenes for tribological purposes is surprisingly underexplored. Here, we address for the first time the influence of surface terminations and intercalated water in Ti3C2Tx-nanoparticles on friction and wear when used as a solid lubricant. Ball-on-disk experiments at 4% relative humidity reveal excellent tribological properties of these Ti3C2Tx-nanoparticles with a remarkable friction reduction of about 300% coupled with the potential to greatly reduce adhesive, abrasive and tribo-chemical wear. Advanced, complementary materials' characterisation underlines the significant influence of surface terminations and intercalated water, defining them as key parameters to tailor the resulting frictional performance. Consequently, our results highlight Ti3C2Tx-nanoparticles as outstanding, next-generation solid lubricants in nano-and micro-scale systems.
机译:MXenes是一类新型的二维材料,尤其是Ti3C2Tx纳米颗粒,最近在能量存储和催化方面引起了相当大的关注。尽管具有具有自润滑能力的薄弱结合的多层结构,但是令人惊奇地未充分探索将MXene用于摩擦学目的。在这里,我们首次解决了Ti3C2Tx纳米颗粒中表面终止剂和嵌入水对固体润滑剂的摩擦和磨损的影响。在相对湿度为4%的磁盘上进行的球形实验表明,这些Ti3C2Tx纳米颗粒具有出色的摩擦学性能,摩擦降低了约300%,并且具有极大地减少粘合剂,磨料和摩擦化学磨损的潜力。先进的补充材料的特性突显了表面端接和插层水的重大影响,将它们定义为调整所得摩擦性能的关键参数。因此,我们的结果强调了Ti3C2Tx纳米颗粒是纳米级和微米级系统中出色的下一代固体润滑剂。

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