← 返回
光伏发电技术 GaN器件 ★ 5.0

集成钙钛矿-有机太阳能电池的演进:从早期挑战到前沿材料创新

The evolution of integrated perovskite-organic solar cells: from early challenges to cutting-edge material innovations

作者 Zia Ur Rehman1Francesco Lamberti2Zhubing He1
期刊 半导体学报
出版日期 2025年1月
卷/期 第 46 卷 第 5 期
技术分类 光伏发电技术
技术标签 GaN器件
相关度评分 ★★★★★ 5.0 / 5.0
关键词 Zia Ur Rehman Francesco Lamberti Zhubing He 半导体学报(英文版) Journal of Semiconductors
语言:

中文摘要

集成钙钛矿-有机太阳能电池(IPOSCs)结合了钙钛矿与有机太阳能电池的优势,具有宽光谱高效吸光能力和简化的器件结构。然而,有机体异质结(BHJ)层中载流子迁移率有限及钙钛矿/BHJ界面能级失配等问题仍待解决。近年来,非富勒烯受体、界面工程及新型材料的发展显著提升了电荷传输效率与整体光电转换效率。本文综述IPOSCs的关键进展,聚焦窄带隙近红外吸收材料、能级排列优化及光电流密度提升策略,展望材料筛选与器件结构设计的未来方向。

English Abstract

Integrated perovskite-organic solar cells(IPOSCs)offer a promising hybrid approach that combines the advantages of perovskite and organic solar cells,enabling efficient photon absorption across a broad spectrum with a simplified architec-ture.However,challenges such as limited charge mobility in organic bulk heterojunction(BHJ)layers,and energy-level mis-match at the perovskite/BHJ interface still sustain.Recent advancements in non-fullerene acceptors(NFAs),interfacial engineer-ing,and emerging materials have improved charge transfer/transport,and overall power conversion efficiency(PCE)of IPOSCs.This review explores key developments in IPOSCs,focusing on low-bandgap materials for near-infrared absorption,energy align-ment optimization,and strategies to enhance photocurrent density and device performance.Future innovations in material selection and device architecture will be crucial for further improving the efficiency of IPOSCs,bringing them closer to practi-cal application in next-generation photovoltaic technologies.
S

SunView 深度解读

该钙钛矿-有机集成太阳能电池技术对阳光电源光伏产品线具有前瞻性参考价值。其宽光谱吸收特性与高光电转换效率可为SG系列逆变器的MPPT算法优化提供新场景适配需求,特别是针对近红外光谱利用的功率追踪策略。窄带隙材料的能级排列优化思路可借鉴至功率器件设计中,尤其是GaN器件的异质结界面工程,改善载流子迁移率与能量损耗。此外,简化器件结构的设计理念与阳光电源模块化集成方案(如PowerTitan储能系统)的降本增效目标一致,为未来光储一体化系统的材料选型与拓扑优化提供创新思路,推动1500V高压系统的效率提升。