热电材料和器件的印刷技术进展

Soft science Pub Date : 2023-08-02 DOI:10.20517/ss.2023.20
M. Hong, Shuai Sun, Wan-Yu Lyu, Meng Li, Weidi Liu, Xiaolei Shi, Zhi-gang Chen
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引用次数: 1

摘要

近年来,热电材料和器件因其将废热转化为可用电的潜力而引起了极大的关注,为可持续能源收集开辟了新的途径。随着热电材料和器件领域的研究不断发展,对高效和可扩展的制造方法的需求也在不断增加。在各种制造技术中,印刷方法已经成为生产热电材料和器件的有前途的方法,具有低成本、高吞吐量和设计灵活性等优点。在这里,我们概述了热电材料和器件的打印方法的最新进展。我们讨论了与各种印刷技术相关的关键原理,挑战和机遇,包括丝网印刷,喷墨印刷和3D打印,重点是它们在热电材料和器件中的应用。此外,我们强调在优化印刷参数,油墨配方和后处理方法方面取得的进展,以提高印刷材料和器件的热电性能。最后,展望了热电材料和器件打印方法领域的发展前景和潜在研究方向。本文旨在对热电材料和器件的最新打印技术进行全面概述,并为这一快速发展的领域的研究人员和从业人员提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advances in printing techniques for thermoelectric materials and devices
Thermoelectric materials and devices have garnered significant attention in recent years due to their potential for converting waste heat into usable electricity, opening new avenues for sustainable energy harvesting. As research in the field of thermoelectric materials and devices continues to grow, so does the need for efficient and scalable fabrication methods. Among various fabrication techniques, printing methods have emerged as promising approaches to producing thermoelectric materials and devices, offering advantages such as low cost, high throughput, and design flexibility. Here, we overview the recent advances in printing methods for the fabrication of thermoelectric materials and devices. We discuss the key principles, challenges, and opportunities associated with various printing techniques, including screen printing, inkjet printing, and 3D printing, with a focus on their applications in thermoelectric materials and devices. Furthermore, we highlight the progress made in optimizing the printing parameters, ink formulations, and post-processing methods to enhance the thermoelectric performance of printed materials and devices. Finally, we provide insights into the prospects and potential research directions in the field of printing methods for thermoelectric materials and devices. This review aims to provide a comprehensive overview of the state-of-the-art printing techniques for thermoelectric materials and devices and to serve as a reference for researchers and practitioners working in this rapidly growing field.
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