基于IPMC的柔性平台:替代能源解决方案的福音

M. Mondal, A. Datta, T. K. Bhattacharyya
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引用次数: 3

摘要

随着环境的恶化和自然资源的减少,能源需求的改善促使了替代储能的发展。实际上,灵活、便携和轻便的储能设备在无障碍交通中非常受欢迎。在此背景下,本章分析了离子聚合物金属复合材料(IPMC)膜上上述问题的可能解决方案。此外,本章还介绍了由Nafion的MCP引起的多孔电解质聚合物膜,增强了电收获属性。制作了一种新型的可移动的IPMC膜海洋动能转换平台,并将其应用于能量转换。蚀刻和表面打磨扩大了IPMC的表面积,提高了作为电解槽的产气速率。制备了功能化渗透纳米复合膜,并对其DMFC性能和甲醇渗透性进行了分析。全氟磺酸聚合物电解质膜在能源、氯碱电解质、OER和聚合物电解质燃料电池等领域的广泛应用引起了人们的广泛关注。直接甲醇燃料电池是PEFC的一个很好的替代品,可以在低工作温度下管理液体燃料和更高的能量密度。然而,聚合物电解质膜和直接甲醇燃料电池是循环电力和可转移电力应用的潜在竞争者;实质性的技术、科学和经济困难必须在商业化之前加以阐明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IPMC Based Flexible Platform: A Boon to the Alternative Energy Solution
The ameliorating urge for energy in consonance with the descending environment and attenuation of natural resources leads to the development of alternate energy storage. Realistically, flexible, portable, and lightweight energy storage devices have immense popularity for accessible transportation. In this context, this chapter analyses a possible solution to the problems described aforesaid on IPMC (Ionic Polymer Metal Composite) membranes. Also, this chapter includes porosity induced electrolyte polymer membrane by MCP of Nafion enhances electrical harvesting attribution. The novel and transportable ocean kinetic energy converting platform by IPMC membrane was fabricated and applied for energy conversion. The etching and surface sanding advances the surface area of IPMC to escalate the gas generation rate as an electrolyser. The functionalised infiltrated Nafion nanocomposite membranes are fabricated and analysed for DMFC performance and methanol permeability. Perfluorosulfonic acid polymer electrolyte membranes gained more attention in the former epoch for vast applications in energy, chloro-alkali electrolytes, OER, and polymer electrolyte fuel cells. The direct methanol fuel cell is an excellent alternative to PEFC for managing liquid fuel and higher energy density at low operational temperatures. Nevertheless, polymer electrolyte membranes and direct methanol fuel cells are potential contenders for circulated power and transferable power applications; the substantial technical, scientific, and economic difficulties must be elucidated beforehand commercialisation.
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