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Exploitation of mixed-valency chemistry for designing a monolayer with double ferroelectricity and triferroic couplings

机译:利用混合价化学设计具有双铁电性和三铁性耦合的单层

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Mixed-valence compounds possess both intriguing chemical and physical properties such as the intervalence charge transfer band and thus have been excellent model systems for the investigation of fundamental electron- and charge-transfer phenomena. Herein, we show that valence stratification can be a source of symmetry breaking and generating ferroelectricity in two-dimensional (2D) materials. We present ab initio computation evidence of the monolayer Cu2Cl3 structure with Cu ions being stratified into two separated layers of Cu(i) and Cu(ii). Chemically, this unique monolayer not only entails lower formation energy than the bulk CuCl + CuCl2, but also enables the swapping of two valences through vertical ferroelectric switching, leading to a hitherto unreported chemical valencing phenomenon. Notably, the Jahn–Teller distortion of the Cu(ii) layer results in another source of symmetry breaking and thus in-plane ferroelectricity. Apart from the valence swapping and self-contained double ferroelectricity, the monolayer's ferroelasticity is also coupled with in-plane ferroelectricity, while the monolayer's ferromagnetism is coupled with vertical polarization owing to the distinct magnetization of each Cu(i) and Cu(ii) layer, thereby evoking the long-sought 2D triferroicity as well as triferroic couplings.
机译:混合价化合物具有有趣的化学和物理性质,例如间隔电荷转移带,因此是研究基本电子和电荷转移现象的优秀模型系统。在这里,我们表明价分层可以成为二维(2D)材料中对称性破坏和产生铁电性的来源。我们提出了单层Cu2Cl3结构的从头开始计算证据,其中Cu离子被分层为Cu(i)和Cu(ii)两个分离的层。在化学上,这种独特的单层不仅需要比本体CuCl + CuCl2更低的形成能,而且还可以通过垂直铁电开关实现两个价的交换,从而导致迄今为止未被报道的化学价现象。值得注意的是,Cu(ii)层的Jahn-Teller畸变导致了对称性破坏的另一个来源,从而导致了面内铁电性。除了价交换和自含式双铁电性外,单层的铁弹性还与面内铁电性耦合,而单层的铁磁性由于每个Cu(i)和Cu(ii)层的不同磁化而与垂直极化耦合,从而唤起了人们长期寻求的二维三铁性和三铁性耦合。

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