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Plasmon Enhancement of Organic Photovoltaic Efficiency in Tandem Cells of Pentacene/C60

机译:五苯甲酸C60串联细胞中有机光伏效率的等离子体增强

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The effects of thin silver films embedded in a tandem pentacene/Cgo photovoltaic cell are investigated. A 2 nm Ag film improves the device's power efficiency under white light illumination from 0.32% to 1.11% by almost doubling its open circuit voltage and enhancing its short circuit current density. The doubled open circuit voltage is due to the formation of two separated photovoltaic pentacene/C60 cells in series where discontinuous silver, clusters provide carrier recombination centers. The increased photocurrent density is partly ascribed to improved charge separation and transport associated with the silver layer. In addition, wavelength dependent measurements suggest that plasmon-enhanced light absorption by pentacene due to surface plasmon resonance of silver nanoparticles contributes as much as a factor of 4 to the power efficiency near the plasmon resonance around 450 nm.
机译:研究了嵌入在串联五鲸酮/ Cgo光伏电池中的薄银膜的影响。通过几乎加倍其开路电压并增强其短路电流密度,2nm Ag膜在白色光照下的功率效率降低0.32%至1.11%,提高了0.32%至1.11%。加倍的开路电压是由于在不连续银的串联中形成两个分离的光伏五苯/ C60细胞,簇提供载体重组中心。显着的光电流密度部分地归因于改善与银层相关的电荷分离和传输。另外,波长依赖性测量表明,由于银纳米颗粒的表面等离子体共振引起的五烯酮的等离子体增强光吸收有助于450nm左右的等离子体共振附近的功率效率。

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