可穿戴太阳能电池技术的进步:整合包覆晶石和染料敏化电池

Mukund Ayalasomayajula;Mohit Ravi Khurana;Vasanth Balakrishnan;Prince Shiva Chaudhary;Sourayan Basu Bal;Rishav Kumar Baranwal
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引用次数: 0

摘要

可穿戴技术的迅猛发展需要一种可持续的电源来满足其即将到来的增长。随着数十亿联网设备和二氧化碳排放量的增加,将太阳能集成到可穿戴设备中成为一个重要的解决方案。虽然传统太阳能电池取得了长足进步,但由于其灵活性有限,将其应用于可穿戴技术仍是一项挑战。硅基电池是目前效率最高的电池,但在实现灵活性和耐用性方面却面临着障碍。有机光伏 (OPV)、过氧化物电池、染料敏化电池和量子点电池等新兴太阳能电池类型在可穿戴设备上大有可为,但每种电池都存在集成复杂和材料选择复杂的问题。本文深入探讨了将太阳能电池集成到可穿戴技术中的复杂性,特别关注过氧化物和染料敏化太阳能电池,因为它们与当前的可穿戴技术兼容。本文探讨了它们的设计、运行机制和材料适应性,重点介绍了在创造适销对路的可穿戴太阳能技术方面取得的进步、面临的挑战以及在机械灵活性和工业可行性之间取得微妙平衡的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advancements in Wearable Solar Cell Technology: Integrating Perovskites and Dye-Sensitized Cells
The surge in wearable technology demands a sustainable power source to meet its impending growth. With billions of connected devices and escalating CO2 emissions, integrating solar energy into wearables emerges as a critical solution. While conventional solar cells have made strides, adapting them to wearable tech remains a challenge due to their limited flexibility. Silicon-based cells, the most efficient currently, face hurdles in achieving both flexibility and durability. Emerging solar cell types like organic photovoltaics (OPVs), perovskite-based, dye-sensitized, and quantum dot cells show promise for wearables, but each comes with integration complexities and material selection intricacies. This article delves into the intricacies of solar cell integration into wearable tech, specifically focusing on perovskites and dye-sensitized solar cells due to their compatibility with current wearable technology. Exploring their design, operational mechanisms, and material adaptations, this article highlights advancements, challenges, and the need for a delicate balance between mechanical flexibility and industrial feasibility in creating market-ready wearable solar technology.
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