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用于室内光收集的透明薄膜硅太阳能电池,转换效率达36%且无光降解现象。

Transparent Thin-Film Silicon Solar Cells for Indoor Light Harvesting with Conversion Efficiencies of 36% without Photodegradation.

作者信息

Kim Gayoung, Lim Jung Wook, Kim Jieun, Yun Sun Jin, Park Min A

机构信息

Emerging Materials Research Section, Electronics and Telecommunications Research Institute (ETRI), 218 Gajeong-ro, Yuseong-gu, Daejeon 305-700, Republic of Korea.

Department of Advanced Device Engineering, University of Science and Technology (UST), 217 Gajeong-ro, Yuseong-gu, Daejeon 305-350, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2020 Jun 17;12(24):27122-27130. doi: 10.1021/acsami.0c04517. Epub 2020 May 15.

Abstract

With the development of the Internet of Things (IoT), indoor photovoltaics are attracting considerable interest owing to their potential to benefit various IoT-related fields. Therefore, this study investigates the use of transparent hydrogenated amorphous silicon (a-Si:H) solar cells for a broad range of applications, including indoor light harvesting. High-gap triple layers were employed in the a-Si:H solar cells to obtain a high shunt resistance and high short-circuit current, , and open-circuit voltage, , under indoor illumination. Additionally, multiple color-adjusting layers were added without noticeable costs to the conversion efficiency. The maximum efficiency of 36.0% was obtained at a transmittance of 20.44% under white LED light (3000 lx and 0.92 mW cm). Furthermore, the fabricated transparent solar cells show excellent long-term performance, sustaining over 99% of original efficiency under continuous indoor light illumination for 200 h. These cells could accelerate the progress of energy harvesting in IoT applications and facilitate the construction of integrated photovoltaics.

摘要

随着物联网(IoT)的发展,室内光伏因其在多个物联网相关领域的潜在应用价值而备受关注。因此,本研究探讨了透明氢化非晶硅(a-Si:H)太阳能电池在包括室内光收集在内的广泛应用中的使用情况。在a-Si:H太阳能电池中采用了高带隙三层结构,以在室内光照下获得高并联电阻、高短路电流和开路电压。此外,添加了多个颜色调节层,且对转换效率没有明显成本影响。在白色LED光(3000 lx和0.92 mW/cm²)下,透过率为20.44%时,获得了36.0%的最大效率。此外,所制备的透明太阳能电池表现出优异的长期性能,在连续室内光照200小时的情况下,仍能保持超过99%的初始效率。这些电池可以加速物联网应用中能量收集的进展,并推动集成光伏的建设。

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