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ZnO Nanostructures for Alternate Energy Generation

机译:用于替代能量产生的ZnO纳米结构

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Extensive use of fossil fuel in industries and automobiles has severely polluted the environment, adversely affecting the ecosystem. The fossil fuel reserves are also dwindling, creating a serious concern in the area of energy generation. With rapid advances in nanotechnology, researchers are putting in their efforts to exploit unique properties of nanomaterials to come up with environmentally friendly energy solutions. The abundantly freely available solar energy is undoubtedly the least utilized form of natural energy. Efficient tapping of solar energy can resolve the energy crisis that our world is currently going through. Solar cells developed using nanomaterials, though still at the infancy stage, will be able to harness solar energy quite efficiently and most importantly, will be able to do it very cheaply. Piezoenergy resulting from physical deformation of near-elastic crystals shows promise as energy source for self-powering of low energy consuming devices. This article discusses the possibility of using nanostructures of a very promising material, zinc oxide (ZnO), for energy generation. ZnO is a wide bandgap semiconductor (3.37 eV) and the absence of a central symmetry in its crystal endows it with piezoelectric property. This material has been successfully used for energy generation and tapping schemes like solar cells, hydrogen generators and piezogenerators, among others.
机译:广泛使用化石燃料在行业和汽车中严重污染了环境,对生态系统产生了不利影响。化石燃料储备也被削弱,在能源领域创造了严重关切。随着纳米技术的快速进步,研究人员正在努力利用纳米材料的独特性质来提出环保能源解决方案。丰富的可自由的太阳能无疑是最不利用的自然能量形式。高效攻丝太阳能可以解决我们世界目前正在经历的能源危机。使用纳米材料开发的太阳能电池,但仍然在婴儿期阶段,将能够非常有效地利用太阳能,最重要的是,能够非常便宜地做到这一点。近弹性晶体的物理变形引起的压电表现为低能耗设备的自动的能源作为能源。本文讨论了使用非常有希望的材料氧化锌(ZnO)的纳米结构进行能量产生的可能性。 ZnO是一个宽的带隙半导体(3.37eV),并且其晶体中没有中央对称性赋予它的压电性能。该材料已成功地用于太阳能电池,氢气发生器和压电子等等能量产生和攻丝方案。

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