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Realizing Perovskite Solar Cells on Roll Roll-to-Roll Compatible Processes

机译:在卷对卷兼容工艺中实现钙钛矿太阳能电池

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The promising growth of Organic-inorganic perovskite solar cells (PSCs) efficiency and durability has led to development and research towards commercialization through high throughput automated manufacturing of these photovoltaic (PV) devices. Rapid thermal annealing of the deposited metal oxide layers and the photoactive layer, along with the use of additives, can potentially diminish device fabrication time and enhance device performance through improved thin film characteristics. Applying millisecond pulses of energetic light can form high-quality morphology for the transparent conductive oxide electron transport layer as well as the perovskite absorber film. It was observed that the addition of an alkyl halide, such as diiodo methane (CH2I2), to the perovskite photoactive layer could considerably improve the power conversion efficiency (PCE) of the cells through stitching the grain boundaries that act as charge recombination centers. This manuscript spans the material characterization results of the CH2I2 assisted mixed cation perovskite films through Scanning electron microscope (SEM) as well as X-ray diffraction spectroscopy (XRD) techniques. It was observed that the synergy of millisecond pulsed annealing and CH2I2 additive could enhance the PSCs photovoltaic parameters, resulting in an in crease from 6.45 % for the pristine devices to 11.34 % efficiency for the mixed cation PSC with photonic pulsed annealing when processed in the ambient with humidity of about 60%. This manuscript highlights the significance of intense pulsed light on rapid annealing of electron transport thin films as well as the impact of released halide from the alky halide to boost the quality of absorber films, which can be a potential candidate for high throughput automated fabrication of PSC PSCs.
机译:有机-无机钙钛矿太阳能电池(PSC)效率和耐用性的有希望的增长已导致通过这些光伏(PV)装置的高通量自动化制造实现商业化的开发和研究。沉积的金属氧化物层和光敏层的快速热退火,以及使用添加剂的使用,可通过改善薄膜特性来潜在地缩短器件制造时间并提高器件性能。施加毫秒级的高能脉冲可以为透明导电氧化物电子传输层以及钙钛矿吸收膜形成高质量的形貌。观察到添加了卤代烷,例如二碘甲烷(CH 2 一世 2 钙钛矿型光敏层可以通过缝合充当电荷复合中心的晶界来显着提高电池的功率转换效率(PCE)。该手稿涵盖了CH的材料表征结果 2 一世 2 通过扫描电子显微镜(SEM)以及X射线衍射光谱(XRD)技术辅助混合阳离子钙钛矿薄膜。观察到毫秒脉冲退火和CH的协同作用 2 一世 2 添加剂可以提高PSC的光伏参数,从而使原始设备的6.45%效率提高到在湿度约60%的环境中进行光子脉冲退火的混合阳离子PSC的效率达到11.34%。该手稿强调了强脉冲光对电子传输薄膜的快速退火的重要性,以及从烷基卤化物中释放出的卤化物对提高吸收膜质量的影响,这可能是高通量PSC自动化制造的潜在候选者PSC。

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