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Efficiently-cooled plasmonic amorphous silicon solar cells integrated with a nano-coated heat-pipe plate

机译:与纳米涂层热管板集成的高效冷却的等离子非晶硅太阳能电池

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摘要

Solar photovoltaics (PV) are emerging as a major alternative energy source. The cost of PV electricity depends on the efficiency of conversion of light to electricity. Despite of steady growth in the efficiency for several decades, little has been achieved to reduce the impact of real-world operating temperatures on this efficiency. Here we demonstrate a highly efficient cooling solution to the recently emerging high performance plasmonic solar cell technology by integrating an advanced nano-coated heat-pipe plate. This thermal cooling technology, efficient for both summer and winter time, demonstrates the heat transportation capability up to ten times higher than those of the metal plate and the conventional wickless heat-pipe plates. The reduction in temperature rise of the plasmonic solar cells operating under one sun condition can be as high as 46%, leading to an approximate 56% recovery in efficiency, which dramatically increases the energy yield of the plasmonic solar cells. This newly-developed, thermally-managed plasmonic solar cell device significantly extends the application scope of PV for highly efficient solar energy conversion.
机译:太阳能光伏(PV)正在成为一种主要的替代能源。光伏发电的成本取决于将光转换为电能的效率。尽管效率几十年来一直稳定增长,但在减少实际工作温度对该效率的影响方面却取得了很小的成就。在这里,我们通过集成先进的纳米涂层热管板,展示了一种针对最新出现的高性能等离子太阳能电池技术的高效冷却解决方案。这种对夏季和冬季都有效的热冷却技术,其传热能力比金属板和传统的无芯热管板高出十倍。在一种阳光条件下工作的等离激元太阳能电池的温升降低可高达46%,从而使效率恢复到大约56%,从而显着提高了等离激元太阳能电池的能量产量。这种新开发的,热管理的等离子太阳能电池设备极大地扩展了PV用于高效太阳能转换的应用范围。

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