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Engineered interfaces of artificial perovskite oxide superlattices via nanosheet deposition process

机译:通过纳米片沉积工艺设计的人工钙钛矿氧化物超晶格界面

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摘要

Combining different materials into desired superlattice structures can produce new electronic states at the interface and the opportunity to create artificial materials with novel properties. Here we introduce a new, rather unexpected, and yet simple way to such a superlattice assembly of perovskite oxides: in the Dion-Jacobson phase, a model system of layered perovskites, high-quality bicolor perovskite superlattices (LaNb_2O _7)_(nL)(Ca_2Nb_3O_(10)) _(nC) are successfully fabricated by a layer-by-layer assembly using two different perovskite nanosheets (LaNb_2O_7 and Ca _2Nb_3O_(10)) as a building block. The artificially fabricated (LaNb_2O_7/Ca_2Nb_3O _(10)) superlattices are structurally unique, which is not feasible to create in the bulk form. By such an artificial structuring, we found that (LaNb_2O_7/Ca_2Nb_3O_(10)) superlattices possess a new form of interface coupling, which gives rise to ferroelectricity.
机译:将不同的材料组合成所需的超晶格结构可以在界面处产生新的电子态,并有机会创建具有新颖特性的人造材料。在这里,我们为钙钛矿氧化物的超晶格组装引入了一种新的,出乎意料且简单的方法:在Dion-Jacobson相中,层状钙钛矿的模型系统,高质量双色钙钛矿超晶格(LaNb_2O _7)_(nL) (Ca_2Nb_3O_(10))_(nC)是通过使用两个不同的钙钛矿纳米片(LaNb_2O_7和Ca _2Nb_3O_(10))作为构造块通过逐层组装成功制造的。人工制造的(LaNb_2O_7 / Ca_2Nb_3O _(10))超晶格在结构上是独特的,因此无法以大体积形式创建。通过这种人工构造,我们发现(LaNb_2O_7 / Ca_2Nb_3O_(10))超晶格具有一种新的界面耦合形式,从而产生了铁电。

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