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Tailoring of hybrid silicon nanocrystal-based bulk heterojunction photovoltaic properties upon nanocrystal laser processing in liquid medium

机译:基于混合硅纳米晶的体异质结光伏性能在液体介质中纳米晶激光加工的定制

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摘要

We report on the role of selected silicon nanocrystal (Si-nc) synthesis techniques on the photoelectric properties of Si-ncs and cc jugated poly(hexylthiophene) (P3HT)-based blends. Nanosecond laser processing - both ablation and fragmentation - in liquids a electrochemical etching are employed to fabricate surfactant-free Si-ncs. We demonstrate that the transport properties of the ble can be tuned by the processing conditions. The blends containing Si-ncs produced by laser ablation clearly show superior photovolt properties due to the enhanced bulk heterojunction surface area and improved charge transport. Finally, we argue that the nanoseco laser processing in liquid medium could be a flexible and efficient tool to tailor the photoelectric properties of the Si-ncs/P3I nanocomposites.
机译:我们报道了选择的硅纳米晶(Si-nc)合成技术对Si-ncs和ccjugated poly(hexylthiophene)(P3HT)基共混物光电性能的影响.纳秒激光加工 - 烧蚀和碎裂 - 在液体中采用电化学蚀刻来制造不含表面活性剂的Si-ncs。我们证明了ble的传输特性可以通过加工条件进行调整。通过激光烧蚀产生的含有Si-ncs的混合物由于增强的体异质结表面积和改进的电荷传输而显示出优异的光伏性能。最后,我们认为液体介质中的纳秒激光加工可以成为定制Si-ncs/P3I纳米复合材料光电性能的灵活高效工具。

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