Carbon‐based perovskite solar cells: From single‐junction to modules

Углеродные перовскитные солнечные элементы: от односпайных элементов к модулям
Rui He, Xiaozhou Huang, Mason Oliver Lam Chee, Feng Hao, Pei Dong
2019-09-01

PSC stabilitycarbon-based perovskite solar cellslarge-scale manufacturingmonolithic PSC modulesperovskite solar cell modules
Abstract Perovskite solar cells (PSCs) have attracted more and more attention in the scientific community due to their high performance and simple fabrication process. In the past few years, emerging technologies have made manufacturing large‐scale PSC modules possible. However, stability and fabrication issues still limit the modularization and commercialization of PSCs. Carbon materials have been widely used in PSCs to overcome these challenges due to their excellent optical, electrical, and mechanical properties. In addition, the hydrophobic properties of certain carbon materials are highly effective at protecting the perovskite film from moisture and improving the stability of PSCs. All these superior properties have made carbon one of the most promising materials to fabricate future high‐performance PSC modules with long service lifetimes. In this review, recent developments of carbon‐based materials in different layers of single‐junction PSCs will first be discussed, with an emphasis on functionalities related to PSCs’ stability and modularization. Then, current improvements and future discussions in the manufacturing of monolithic PSC modules will be reviewed in detail.
1
Carbon materials can address these challenges through favorable optical, electrical, and mechanical properties in multiple device layers.
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Carbon-based materials are promising for high-performance, durable perovskite modules, including monolithic module architectures.
3
Perovskite solar cells offer high performance and simple fabrication, while large-scale module manufacturing is becoming feasible through emerging technologies.
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Stability and fabrication challenges remain major barriers to the modularization and commercialization of perovskite solar cells.
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The hydrophobicity of certain carbon materials protects perovskite films from moisture, improving solar-cell stability and potentially extending service lifetimes.

Carbon-based perovskite solar cells and monolithic perovskite solar-cell modules

The roles and functionalities of carbon-based materials in improving PSC stability, enabling modularization, and supporting large-scale module fabrication

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2019-09-01
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Rui He
Xiaozhou Huang
Mason Oliver Lam Chee
Feng Hao
Pei Dong
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