Applications of Polymers in Energy Conversion and Storage Fields: A Review

Zhanfeng Li
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Abstract

The rapid development of photovoltaics, which directly convert solar energy to electricity, has been achieved by both academia and industry and regarded as one of the most clean and renewable energy resources for the next generations. Although inorganic solar cells presently provide higher efficiencies, the high cost and energy-consuming production process limit their wide application. Therefore, extensive studies have investigated new inexpensive organic photovoltaic systems. Recently, polymers have been studied widely in this promising area owing to their versatile and adjustable physical and chemical properties, among which organic solar cells (OSCs) and perovskite solar cells (PSCs) have attracted considerable attention due to their advantages of low cost, lightweight, and flexibility. Especially in the photocatalysis area, polymers can be used to modify photo-corrosive semiconductors to improve the efficiency and stability of solar hydrogen production. Therefore, based on the important roles that polymers play in high-efficiency solar cells and solar hydrogen generation, we herein provide a mini review on the major applications of polymers in energy conversion and storage fields.
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聚合物在能量转换和存储领域的应用综述
将太阳能直接转化为电能的光伏发电得到了学术界和工业界的迅速发展,并被认为是下一代最清洁的可再生能源之一。虽然无机太阳能电池目前具有较高的效率,但其高成本和高能耗的生产过程限制了其广泛应用。因此,人们对新型廉价有机光伏系统进行了广泛的研究。近年来,聚合物由于其多用途和可调节的物理和化学性质在这一前景广阔的领域得到了广泛的研究,其中有机太阳能电池(OSCs)和钙钛矿太阳能电池(PSCs)以其低成本、轻量化和柔韧性的优势受到了广泛的关注。特别是在光催化领域,聚合物可以用来修饰光腐蚀半导体,以提高太阳能制氢的效率和稳定性。因此,基于聚合物在高效太阳能电池和太阳能制氢中的重要作用,本文对聚合物在能量转换和储存领域的主要应用进行了简要综述。
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