Ju Kyoungjae, Oh Seongkook, Lee Jong Hyuk, Kim Hyong June, Kim Hyunmin, Jo Sung Eun, Lee Juhwan, Yang Byung Chan, Yoon Jisung, Shin Dong Won, Park Wanwoo, Son Ji-Won, Kim Young-Beom, Yang Sungeun, An Jihwan
Department of Mechanical Engineering, Pohang University of Science and Technology (POSTECH), Pohang, 37673, Republic of Korea.
Energy Material Research Center, Korea Institute of Science and Technology (KIST), Seoul, 02792, Republic of Korea.
Adv Sci (Weinh). 2025 Aug;12(29):e2502504. doi: 10.1002/advs.202502504. Epub 2025 May 29.
For high-performance thin-film solid oxide cells (TF-SOCs), a nanostructured anode functional layer (n-AFL) that can prolong the triple-phase boundary (TPB) is crucial, particularly for low-temperature operation. However, the implementation of n-AFL (usually >1 µm in thickness) has critical issues in scale-up and productivity. Here, the study successfully demonstrates a large-area, high-performance TF-SOFC with an n-AFL fabricated via mass-production-compatible reactive magnetron sputtering. The cell with optimized n-AFL by adjusting crucial reactive-sputtering process parameters, i.e., oxygen partial pressure and sputtering power, shows superior performance compared to that of the cell without n-AFL: the reduction both in ohmic and anodic polarization resistances by 63% and 34%, respectively, and the improvement in maximum power density by 89% (0.705 W cm vs 1.333 W cm) at 650 °C. When employed in large-scale cell (4 × 4 cm), the TF-SOFC with n-AFL showed 19.4 W at 650 °C.
对于高性能薄膜固体氧化物电池(TF-SOCs)而言,能够延长三相边界(TPB)的纳米结构阳极功能层(n-AFL)至关重要,特别是对于低温运行。然而,n-AFL(通常厚度>1 µm)的实施在扩大规模和生产率方面存在关键问题。在此,该研究成功展示了一种通过与大规模生产兼容的反应磁控溅射制备n-AFL的大面积、高性能TF-SOFC。通过调整关键的反应溅射工艺参数,即氧分压和溅射功率,优化了n-AFL的电池,与没有n-AFL的电池相比,表现出卓越的性能:在650°C时,欧姆极化电阻和阳极极化电阻分别降低了63%和34%,最大功率密度提高了89%(从0.705 W/cm²提高到1.333 W/cm²)。当应用于大规模电池(4×4 cm)时,带有n-AFL的TF-SOFC在650°C时功率为19.4 W。