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Nano-materials Enabled Thermoelectricity from Window Glasses

机译:纳米材料可通过窗玻璃实现热电

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With a projection of nearly doubling up the world population by 2050, we need wide variety of renewable and clean energy sources to meet the increased energy demand. Solar energy is considered as the leading promising alternate energy source with the pertinent challenge of off sunshine period and uneven worldwide distribution of usable sun light. Although thermoelectricity is considered as a reasonable renewable energy from wasted heat, its mass scale usage is yet to be developed. Here we show, large scale integration of nano-manufactured pellets of thermoelectric nano-materials, embedded into window glasses to generate thermoelectricity using the temperature difference between hot outside and cool inside. For the first time, this work offers an opportunity to potentially generate 304 watts of usable power from 9 m2 window at a 20°C temperature gradient. If a natural temperature gradient exists, this can serve as a sustainable energy source for green building technology.. ? 2012 Macmillan Publishers Limited. All rights reserved
机译:预计到2050年世界人口将增加近一倍,我们需要各种各样的可再生和清洁能源来满足不断增长的能源需求。太阳能被认为是领先的有前途的替代能源,其面临的挑战是日照期间和全球可用太阳光分布不均。尽管热电被认为是来自废热的合理可再生能源,但其大规模使用尚待开发。在这里,我们展示了纳米制造的热电纳米材料颗粒的大规模集成,这些颗粒嵌入窗玻璃中,利用外部热和内部冷之间的温差产生热电。这项工作首次为在20°C温度梯度下从9平方米的窗户潜在地产生304瓦可用功率提供了机会。如果存在自然的温度梯度,则可以用作绿色建筑技术的可持续能源。 2012 Macmillan Publishers Limited。版权所有

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