Dauzon Emilie, Sallenave Xavier, Plesse Cedric, Goubard Fabrice, Amassian Aram, Anthopoulos Thomas D
King Abdullah University of Science and Technology (KAUST), KAUST Solar Centre (KSC), Physical Science and Engineering Division, Thuwal, 23955-6900, Saudi Arabia.
LPPI, CY Cergy Paris Université, Cergy, 95000, France.
Adv Mater. 2021 Sep;33(36):e2101469. doi: 10.1002/adma.202101469. Epub 2021 Jul 23.
Emerging forms of soft, flexible, and stretchable electronics promise to revolutionize the electronics industries of the future offering radically new products that combine multiple functionalities, including power generation, with arbitrary form factor. For example, skin-like electronics promise to transform the human-machine-interface, but the softness of the skin is incompatible with traditional electronic components. To address this issue, new strategies toward soft and wearable electronic systems are currently being pursued, which also include stretchable photovoltaics as self-powering systems for use in autonomous and stretchable electronics of the future. Here recent developments in the field of stretchable photovoltaics are reviewed and their potential for various emerging applications are examined. Emphasis is placed on the different strategies to induce stretchability including extrinsic and intrinsic approaches. In the former case, engineering and patterning of the materials and devices are key elements while intrinsically stretchable systems rely on mechanically compliant materials such as elastomers and organic conjugated polymers. The result is a review article that provides a comprehensive summary of the progress to date in the field of stretchable solar cells from the nanoscale to macroscopic functional devices. The article is concluded by discussing the emerging trends and future developments.
柔软、灵活且可拉伸的新型电子器件有望彻底改变未来的电子产业,提供具有全新功能组合(包括发电功能)且外形任意的全新产品。例如,类皮肤电子器件有望变革人机界面,但皮肤的柔软性与传统电子元件不相容。为解决这一问题,目前正在探索针对柔软且可穿戴电子系统的新策略,其中还包括将可拉伸光伏作为自供电系统,用于未来的自主且可拉伸电子器件。本文综述了可拉伸光伏领域的最新进展,并探讨了其在各种新兴应用中的潜力。重点介绍了实现可拉伸性的不同策略,包括外在和内在方法。在前一种情况下,材料和器件的工程设计及图案化是关键要素,而内在可拉伸系统则依赖于如弹性体和有机共轭聚合物等机械柔顺材料。结果是一篇综述文章,全面总结了从纳米尺度到宏观功能器件的可拉伸太阳能电池领域迄今为止的进展。文章最后讨论了新兴趋势和未来发展。