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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Plasmon-enhanced optical absorption and photocurrent in organic bulk heterojunction photovoltaic devices using self-assembled layer of silver nanoparticles
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Plasmon-enhanced optical absorption and photocurrent in organic bulk heterojunction photovoltaic devices using self-assembled layer of silver nanoparticles

机译:使用银纳米粒子自组装层的有机体异质结光伏器件中的等离子体增强光吸收和光电流

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摘要

Improved optical absorption and photocurrent for polythiophene–fullerene bulk heterojunction photovoltaic devices is demonstrated using a unique self-assembled monolayer of Ag nanoparticles formed from a colloidal solution. With the presence of suitable nanoparticle organic capping groups that inhibit its propensity to agglomerate, the particle-to-particle spacing can be tailored. Transmission electron microscopy reveals the self-assembled Ag nanospheres are highly uniform with an average diameter of ~4 nm and controllable particle-to-particle spacing. The localized surface plasmon resonance peak is ~465nm with a narrow full width at half maximum (95 nm). In the spectral range of 350–650 nm, where the organic bulk heterojunction photoactive film absorbs, an enhanced optical absorption is observed due to the increased electric field in the photoactive layer by excited localized surface plasmons within the Ag nanospheres. Under the short-circuit condition, the induced photocurrent efficiency (IPCE) measurement demonstrates that the maximum IPCE increased to ~51.6% at 500 nm for the experimental devices with the self-assembled layer of Ag nanoparticles, while the IPCE of the reference devices without the plasmon-active Ag nanoparticles is ~45.7% at 480 nm. For the experimental devices under air mass 1.5 global filtered illuminations with incident intensity of 100mW/cm2, the increased short-circuit current density is observed due to the enhancement of the photogeneration of excitons near the plasmon resonance of the Ag nanoparticles.
机译:使用由胶体溶液形成的独特的银纳米颗粒自组装单层膜,证明了聚噻吩-富勒烯本体异质结光伏器件的光吸收和光电流得到了改善。由于存在抑制其团聚倾向的合适的纳米颗粒有机封端基团,可以调整颗粒间的间距。透射电子显微镜显示,自组装的银纳米球是高度均匀的,平均直径约为4 nm,颗粒间的间距可控。局部表面等离子体激元共振峰为〜465nm,半峰全宽(95nm)狭窄。在350-650 nm的光谱范围内,有机本体异质结光敏膜吸收,由于银纳米球内受激发的局部表面等离子体激元在光敏层中增加了电场,因此观察到了增强的光吸收。在短路条件下,感应光电流效率(IPCE)测量表明,具有Ag纳米颗粒自组装层的实验装置在500 nm处的最大IPCE增加到〜51.6%,而没有参比装置的参考装置的IPCE等离子体活性Ag纳米粒子在480 nm处约为〜45.7%。对于在空气质量1.5的全局过滤照明下入射强度为100mW / cm2的实验装置,由于激子附近Ag纳米粒子的等离振子的光生作用增强,观察到短路电流密度增加。

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