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Applications of nano and smart materials in renewable energy production and storage devices

机译:纳米和智能材料在可再生能源生产和存储设备中的应用

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This paper presents development of renewable energy production and storage devices employing nanomaterials and smart materials. The use of carbon nanotubes (CNTs) and graphene nanosheets (GNS) to improve the performance and durability of wind turbine and wave rotor blades will be explained. While GNS are primary used for the performance enhancement of the resin system called Nanoresin, CNT Nanoforests and Nanofilms are used to improve the performance of fiber systems in high-performance Nanocomposites. In addition, the use of CNTs and piezo-nanofibers will be explained as the health monitoring and smart systems within the composites. A self-healing mechanism will also be explained within the composites using these materials. Next the use of CNTs as gas diffusion layers and CNTs combined with in-situ generated platinum nanoparticles as catalyst layers will be explained to improve the performance, efficiency, and durability of proton exchange membrane fuel cells while reducing their costs, weight, and size. In addition, the use of CNTs and GNSs to improve the efficiency and performance of polymer solar cells will be explained. Finally, the use of CNTs and GNSs to enhance the performance, efficiency, and durability of batteries and supercapacitors while reducing their costs, weight, and size will be discussed.
机译:本文介绍了采用纳米材料和智能材料的可再生能源生产和存储设备的发展。将说明使用碳纳米管(CNT)和石墨烯纳米片(GNS)来改善风力涡轮机和波浪转子叶片的性能和耐用性。虽然GNS主要用于增强称为纳米树脂的树脂系统的性能,但CNT纳米林和纳米膜用于改善高性能纳米复合材料中纤维系统的性能。此外,碳纳米管和压电纳米纤维的使用将被解释为复合材料中的健康监测和智能系统。使用这些材料的复合材料也将说明一种自我修复机制。接下来,将解释使用CNT作为气体扩散层和将CNT与原位产生的铂纳米颗粒组合作为催化剂层以改善质子交换膜燃料电池的性能,效率和耐久性,同时降低其成本,重量和尺寸。另外,将解释使用CNT和GNS来改善聚合物太阳能电池的效率和性能。最后,将讨论使用CNT和GNS增强电池和超级电容器的性能,效率和耐用性,同时降低其成本,重量和尺寸。

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