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

机译:透明薄膜硅太阳能电池,用于室内光,随着36%的转化效率而无需光降光

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摘要

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, J(SC), and opencircuit voltage, V-OC, 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(-2)). 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.
机译:随着事物互联网(物联网)的发展,由于潜力有利于各种与各种相关领域的潜力,室内光伏吸引了相当大的兴趣。因此,本研究研究了透明氢化非晶硅(A-Si:H)太阳能电池的应用,包括广泛的应用,包括室内光收获。在A-Si:H太阳能电池中采用高间隙三层,以获得高分流电阻和高短路电流,J(SC)和OpenCircuit电压,V-OC,室内照明。另外,添加多个颜色调节层,而不明显成本对转换效率。在白色LED灯下的透射率下获得36.0%的最大效率(3000Lx和0.92 mW(-2))。此外,制造的透明太阳能电池显示出优异的长期性能,在连续室内光照射下维持超过99%的原始效率。这些细胞可以加速IOT应用中的能量收集的进展,并促进集成光伏的构造。

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