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Nanotechnology and the potential for a renewable solar future

机译:纳米技术与可再生太阳能未来的潜力

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摘要

Energy is a basic requirement for people in the modern world. Sadly, it is only going to become more expensive in the future as the world population increases and oil becomes harder to find. A renewable energy future is essential to mitigate both the rising cost ofoil and the damage wrought by carbon dioxide to the Earth and its climate. Solar energy is a highly promising technology capable of supplying a large amount of our total energy needs with very few downsides. Solar cells use nanoscale architecture either as the morphology for the active component or by using nanoscale thin film architecture (or both). At present the majority of commercial solar cells are based on silicon technology. They are rigid panels that use complex and expensive processing methods to manufacture. Adopting new manufacturing methods based on nanoscale self-assembly could launch solar cells into one of the dominant energy-producing technologies over the next few years. In this article 1 discuss the possibility of mass-produced solar cells based on organic polymer solar cell materials and their potential to made at a fraction of the existing manufacturing costs and in much higher volume.
机译:能源是现代世界人们的基本要求。可悲的是,随着世界人口的增加和石油的寻找越来越困难,它将来只会变得更加昂贵。可再生能源的未来对于减轻石油成本上涨和二氧化碳对地球及其气候造成的损害至关重要。太阳能是一种很有前途的技术,能够以很少的缺点满足我们大量的总能源需求。太阳能电池使用纳米级架构作为活性成分的形态或通过使用纳米级薄膜架构(或两者)。目前,大多数商用太阳能电池都基于硅技术。它们是刚性面板,其使用复杂且昂贵的加工方法来制造。在未来几年中,采用基于纳米级自组装的新制造方法可能会将太阳能电池投入到主导的能源生产技术中。在这篇文章1中,讨论了基于有机聚合物太阳能电池材料进行批量生产的太阳能电池的可能性,以及以现有制造成本的一小部分和更高的体积制造太阳能电池的潜力。

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