掺铝 HfO2 薄膜中增强铁电性的界面应力工程

Chen S X, Chen M M, Liu Y, Cao D W, Chen G J
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摘要

铁电二氧化铪以其超薄厚度和与硅基互补金属氧化物半导体(CMOS)技术的良好兼容性而备受关注。然而,极性正交相(邻相)HfO2 的结晶竞争力较弱,这大大限制了所获得的铁电 HfO2 薄膜的铁电性。幸运的是,邻相 HfO2 的结晶可以通过界面应力工程进行热力学调控。本文报道了在取向(111)硅基底上生长改进型铁电掺铝 HfO2(HfO2:Al)薄膜的情况。结构分析表明,在(111)取向硅衬底上生长的非极性单斜HfO2:Al受到了很强的压应变,这促进了(111)取向邻相HfO2在生长的HfO2:Al薄膜中结晶。此外,(111)取向硅衬底的面内晶格与(111)取向邻相 HfO2 的面内晶格非常吻合,这进一步对邻相 HfO2 起到了热稳定作用。因此,获得了更好的铁电性,残余极化(2P r)达到 26.7 μC/cm2。这项研究成果为制备更好的铁电性 HfO2 薄膜提供了一种简单的方法。
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Interfacial stress engineering toward enhancement of ferroelectricity in Al doped HfO2 thin films
Ferroelectric HfO2 have attracted much attention owing to their superior ferroelectricity at an ultra-thin thickness and good compatibilities with Si-based complementary-metal-oxide-semiconductor (CMOS) technology. However, the crystallization of polar orthorhombic phase (o-phase) HfO2 is less competitive, which greatly limits the ferroelectricity of as-obtained ferroelectric HfO2 thin films. Fortunately, the crystallization of o-phase HfO2 can be thermodynamically modulated via interfacial stress engineering. In this paper, the growth of improved ferroelectric Al doped HfO2 (HfO2:Al) thin films on (111)-oriented Si substrate have been reported. Structural analysis has suggested that non-polar monoclinic HfO2:Al grown on (111)-oriented Si substrate suffered from a strong compressive strain, which promoted the crystallization of (111)-oriented o-phase HfO2 in the as-grown HfO2:Al thin films. In addition, the in-plane lattice of (111)-oriented Si substrate matches well with that of (111)-oriented o-phase HfO2, which further thermally stabilized the o-phase HfO2. Accordingly, an improved ferroelectricity with a remnant polarization (2P r) of 26.7 μC/cm2 has been obtained. The results shown in this work provide a simple way toward the preparation of improved ferroelectric HfO2 thin films.
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