钙钛矿基光伏制氢的潜在用途:通往可持续能源解决方案的途径

Kehinde Temitope Alao , Syed Ihtsham ul Haq Gilani , Taiwo Onaopemipo Alao , Abiola Usman Adebanjo , Oluwaseun Ruth Alara
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引用次数: 0

摘要

本文综述了钙钛矿光伏(PV)电池用于清洁氢生产的潜力,这是全球向可持续能源转变的重要组成部分。通过对Scopus和Web of Science数据库的文献进行系统回顾,本研究提供了钙钛矿pv用于制氢的最新进展,并确定了持续存在的挑战。尽管占据市场主导地位,但传统的硅光伏电池有钙钛矿光伏电池可能克服的局限性。虽然硅光伏电池的效率在23.3%到26.7%之间,但实验室规模的串联钙钛矿光伏设备的效率已经超过了这一点,效率超过了29.8%,并且未来有更大的改进潜力。这种效率的飞跃使它们成为电解制氢的有希望的候选者。然而,钙钛矿pv的可扩展性、稳定性和环境影响需要在材料科学中进一步研究。该综述强调了在材料性能和系统集成方面取得进展的迫切需要,以及促进钙钛矿pv采用的支持性政策。最后,本文提出了一个利用钙钛矿光伏技术优化制氢的战略框架,为可持续氢解决方案的讨论做出了重大贡献。
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Potential uses of perovskite-based photovoltaics for hydrogen production: A pathway to sustainable energy solutions
This review examines the potential of perovskite photovoltaic (PV) cells for clean hydrogen production, a vital component of the global shift toward sustainable energy. Utilizing a systematic review of literature from the Scopus and Web of Science databases, this study provides recent advancements and identifies persistent challenges in the application of perovskite PVs for hydrogen generation. Despite their market dominance, traditional silicon PV cells have limitations that perovskite PVs may overcome. While silicon PV cells achieve efficiencies between 23.3% and 26.7%, lababoratory-scale tandem perovskite PV devices have surpassed this, with efficiencies exceeding 29.8% and a greater potential for future improvement. This efficiency leap positions them as promising candidates for hydrogen production via electrolysis. However, the scalability, stability, and environmental impacts of perovskite PVs necessitate further research in materials science. The review highlights the critical need for advancements in material properties and system integration, as well as supportive policies to foster the adoption of perovskite PVs. Ultimately, the review proposes a strategic framework for optimizing hydrogen production with perovskite-based PV technology, making a significant contribution to the discourse on sustainable hydrogen solutions.
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