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◆ ACS Applied Materials & Interfaces2026-02-02· Materials science

Ultrathin ZrO <sub>2</sub> Seed Layers for Low-Temperature Orthorhombic Ferroelectric Hf <sub> 1– <i>x</i> </sub> Zr <sub> <i>x</i> </sub> O <sub>2</sub>

Kyong Jae Kim, Eun Seo Jo, Madani Labed, Chowdam Venkata Prasad, Mohammad Tauquir A. S. Shaikh, Myeong Geun Yu, Kwang Min Jeong, You Seung Rim

原始摘要(英文原文)· Original abstract
Ferroelectric Hf 1– x Zr x O 2 has emerged as a promising material for next-generation nonvolatile memory and logic applications due to its complementary metal-oxide-semiconductor (CMOS) compatibility and scalability. However, stabilizing the ferroelectric orthorhombic-phase at back-end-of-line (BEOL)-compatible temperatures (<400 °C) remains a critical challenge, particularly in achieving both high remnant polarization and device reliability. In this work, we demonstrate that the incorporation of an ultrathin ZrO 2 seed layer enables low-temperature crystallization and robust ferroelectricity in Hf 1– x Zr x O 2 thin films. The ultrathin ZrO 2 seed layer facilitates the tetragonal-phase to orthorhombic-phase transformation during low-temperature post-metallization annealing, thereby promoting robust orthorhombic-phase formation under BEOL-compatible conditions. By optimizing ZrO 2 seed layer thickness, we achieved a significant enhancement in ferroelectric performance: a remnant polarization of 30.3 μC/cm 2 at 350 °C for films with a 5-cycle ZrO 2 seed layer, outperforming both seedless films (12.1 μC/cm 2 ) and those with a thicker 7-cycle ZrO 2 seed layer (13.0 μC/cm 2 ). Furthermore, the optimized structure exhibited a low leakage current and endurance exceeding 10 9 cycles. We confirm an increased o-phase fraction and suppressed interfacial layer formation, attributed to the (111)-textured ZrO 2 seed layer. These findings underscore the critical role of atomic-level seed layer engineering in enabling high-performance, BEOL-compatible ferroelectric Hf 1– x Zr x O 2 devices for future memory architectures.
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Ultrathin ZrO <sub>2</sub> Seed Layers for Low-Temperature Orthorhombic Ferroelectric Hf <sub> 1– <i>x</i> </sub> Zr <sub> <i>x</i> </sub> O <sub>2</sub> — 科研速览 Science Skim