论文标题

铁电的可转换摩擦学

Switchable tribology of ferroelectrics

论文作者

Cho, Seongwoo, Gaponenko, Iaroslav, Cordero-Edwards, Kumara, Barceló-Mercader, Jordi, Arias, Irene, Lichtensteiger, Céline, Yeom, Jiwon, Musy, Loïc, Kim, Hyunji, Catalan, Gustau, Paruch, Patrycja, Hong, Seungbum

论文摘要

铁电的人为诱导的不对称摩擦学特性为可视化和控制铁电域提供了另一种途径。在这里,我们使用纳米级扫描探针观察到铁电的可切换摩擦和磨损行为,在该探针中,与UP域相比,其摩擦系数低于摩擦系数的下降域可以用作智能面具,因为它们显示出比UP域更慢的磨损率。通过在足够高的接触力下的向上和下域中的柔性耦合极化来实现这种不对称性。此外,我们确定这种对极化敏感的摩擦学不对称性是在具有不同化学成分和晶体对称性的铁电特性中普遍存在的。最后,使用基于域的动态智能面罩,使用这种可切换的摩擦学和多通图案,我们展示了三维纳米结构,利用了上下域的不对称磨损速率,此外,可以将其扩展到技术相关(MM-CM)的大小。这些发现表明,铁电体是用于多功能应用的纳米级可调的摩擦学材料。

Artificially induced asymmetric tribological properties of ferroelectrics offer an alternative route to visualize and control ferroelectric domains. Here, we observe the switchable friction and wear behavior of ferroelectrics using a nanoscale scanning probe where down domains having lower friction coefficient than up domains can be used as smart masks as they show slower wear rate than up domains. This asymmetry is enabled by flexoelectrically coupled polarization in the up and down domains under a sufficiently high contact force. Moreover, we determine that this polarization-sensitive tribological asymmetry is universal across ferroelectrics with different chemical composition and crystalline symmetry. Finally, using this switchable tribology and multi-pass patterning with a domain-based dynamic smart mask, we demonstrate three-dimensional nanostructuring exploiting the asymmetric wear rates of up and down domains, which can, furthermore, be scaled up to technologically relevant (mm-cm) size. These findings establish that ferroelectrics are electrically tunable tribological materials at the nanoscale for versatile applications.

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