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迈向钙钛矿太阳能电池商业化:基于界面工程的视角和研究路线图。

Toward Perovskite Solar Cell Commercialization: A Perspective and Research Roadmap Based on Interfacial Engineering.

机构信息

Department of Materials Science and Engineering, University of Washington, Seattle, WA, 98195, USA.

Institute of Photovoltaics, Nanchang University, 999 Xuefu Avenue, Nanchang, 330031, China.

出版信息

Adv Mater. 2018 Aug;30(32):e1800455. doi: 10.1002/adma.201800455. Epub 2018 Jun 8.

Abstract

High-efficiency and low-cost perovskite solar cells (PVKSCs) are an ideal candidate for addressing the scalability challenge of solar-based renewable energy. The dynamically evolving research field of PVKSCs has made immense progress in solving inherent challenges and capitalizing on their unique structure-property-processing-performance traits. This review offers a unique outlook on the paths toward commercialization of PVKSCs from the interfacial engineering perspective, relevant to both specialists and nonspecialists in the field through a brief introduction of the background of the field, current state-of-the-art evolution, and future research prospects. The multifaceted role of interfaces in facilitating PVKSC development is explained. Beneficial impacts of diverse charge-transporting materials and interfacial modifications are summarized. In addition, the role of interfaces in improving efficiency and stability for all emerging areas of PVKSC design are also evaluated. The authors' integral contributions in this area are highlighted on all fronts. Finally, future research opportunities for interfacial material development and applications along with scalability-durability-sustainability considerations pivotal for facilitating laboratory to industry translation are presented.

摘要

高效且低成本的钙钛矿太阳能电池(PVKSCs)是解决基于太阳能的可再生能源可扩展性挑战的理想选择。PVKSCs 这一动态发展的研究领域在解决固有挑战和利用其独特的结构-性质-加工-性能特征方面取得了巨大进展。本综述从界面工程的角度对 PVKSCs 的商业化途径进行了独特的展望,通过简要介绍该领域的背景、当前的最新进展和未来的研究前景,使该领域的专家和非专家都能从中受益。文中解释了界面在促进 PVKSC 发展方面的多方面作用,总结了各种电荷传输材料和界面修饰的有益影响。此外,还评估了界面在提高所有新兴 PVKSC 设计领域的效率和稳定性方面的作用。在各个方面都突出了作者在这一领域的整体贡献。最后,提出了界面材料开发和应用的未来研究机会,以及促进从实验室到工业转化的可扩展性-耐久性-可持续性考虑因素。

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