全面回顾与未来展望:适用于各类固体氧化物电池的 3D 打印技术

Chanho Kim, Inyoung Jang
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摘要

随着解决全球变暖问题的紧迫性增加,对能够减少温室气体排放的清洁能源发电系统的需求也在不断增加。固体氧化物电池(SOC)已成为清洁能源转换的一项关键技术,它具有发电而不排放任何污染物(包括温室气体)的优点。随着能源消耗的增加,必须提高固体氧化物电池的电化学性能,以满足未来的能源需求。随着 3D 打印技术的出现,SOC 的制造发生了变革性的转变,实现了超出传统陶瓷工艺能力的精确结构控制。这项技术有助于创造复杂的几何形状,通过结构创新优化功能,并通过增强反应位点最大限度地提高电化学性能。我们的综述涵盖了 3D 打印技术的简要展望和对 SOC 制造的深远影响,强调了它在超越传统 SOC 结构限制方面的作用,并为金属支撑 SOC 和集成堆栈模块等先进应用铺平了道路。通过综述,我们可以清楚地看到,继续深入研究用于 SOC 的 3D 打印技术对于最大限度地发挥其作为未来可持续能源资源的作用至关重要。
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Comprehensive review and future perspectives: 3D printing technology for all types of solid oxide cells
As the urgency to address global warming increases, the demand for clean energy generation systems that can mitigate greenhouse gases is intensifying. Solid oxide cells (SOCs) have emerged as a key technology for clean energy conversion, offering the benefits of power generation without submission of any pollutants including greenhouse gases. As the consumption of energy rises, the electrochemical performance of SOCs must be enhanced to meet the future energy demand. With the advent of 3D printing technology, the fabrication of SOCs has undergone a transformative shift, enabling precise structural control beyond the capabilities of traditional ceramic processes. This technology facilitates the creation of complex geometries, optimizing functionality through structural innovation and maximizing the electrochemical performance by enhancing reaction sites. Our review covers the brief outlook and the profound impact of 3D printing technology on SOC fabrication, highlighting its role in surpassing the structural constraints of conventional SOCs and paving the way for advanced applications like metal supported SOCs and integrated stack modules. Through the review, it is evident that continued, in-depth research into 3D printing for SOCs is crucial for maximizing their role as a sustainable energy resource in the future.
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