Efficiency Exceeding 20% in Perovskite Solar Cells with Side‐Chain Liquid Crystalline Polymer–Doped Perovskite Absorbers

材料科学 钙钛矿(结构) 兴奋剂 聚合物 掺杂剂 粒度 晶界 化学工程 光电子学 能量转换效率 复合材料 微观结构 工程类
作者
Veera Murugan Arivunithi,Saripally Sudhaker Reddy,Vijaya Gopalan Sree,Ho‐Yeol Park,Juuyn Park,Yong‐Cheol Kang,Eun‐Sol Shin,Yong‐Young Noh,Myungkwan Song,Sung‐Ho Jin
出处
期刊:Advanced Energy Materials [Wiley]
卷期号:8 (30) 被引量:54
标识
DOI:10.1002/aenm.201801637
摘要

Abstract Attaining high quality perovskite films with enhanced morphology, high efficiency, and better stability is a great research challenge. Here, a side‐chain liquid crystalline polymer (SCLCP) is incorporated as a dopant into the perovskite film to achieve perovskite solar cells (PSCs) with high efficiency and long‐term stability. SCLCP doping increases the grain size in the crystalline perovskite film by controlled solvent evaporation and reduced grain boundaries, which slow the material degradation and reduce the charge recombination. Using this approach, the PSC power conversion efficiency (PCE) is significantly boosted from 18.0% (nondoped) to 20.63% for the SCLCP‐doped perovskite film with much improved air stability. Furthermore, the trap state density in the SCLCP‐doped films is decreased because the SCLCP effectively passivates the perovskite grain surface. Notably, the SCLCP appears to act as a bridge between grains for effective charge transfer from perovskite toward the electrode, which would partially explain the enhanced efficiency and stability.
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