An eco-friendly passivation strategy of resveratrol for highly efficient and antioxidative perovskite solar cells

Fuente: arXiv
Guardado en:
Detalles Bibliográficos
Autores principales: Wu, Xianhu, Bi, Jieyu, Cui, Guanglei, Liu, Nian, Xia, Gaojie, Li, Ping, Zhao, Chunyi, Zuo, Zewen, Gu, Min
Formato: Preprint
Publicado: 2024
Materias:
Acceso en línea:
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
_version_ 1866916232258650112
author Wu, Xianhu
Bi, Jieyu
Cui, Guanglei
Liu, Nian
Xia, Gaojie
Li, Ping
Zhao, Chunyi
Zuo, Zewen
Gu, Min
author_facet Wu, Xianhu
Bi, Jieyu
Cui, Guanglei
Liu, Nian
Xia, Gaojie
Li, Ping
Zhao, Chunyi
Zuo, Zewen
Gu, Min
contents The stability of perovskite solar cells is closely related to the defects in perovskite crystals, and there are a large number of crystal defects in the perovskite thin films prepared by the solution method, which is not conducive to the commercial production of PSCs. In this study, resveratrol(RES), a green natural antioxidant abundant in knotweed and grape leaves, was introduced into perovskite films to passivate the defect. RES achieves defect passivation by interacting with uncoordinated Pb2+ in perovskite films. The results show that the quality of the perovskite film is significantly improved, and the energy level structure of the device is optimized, and the power conversion efficiency of the device is increased from 21.62% to 23.44%. In addition, RES can hinder the degradation of perovskite structures by O2- and CO2- free radicals, and the device retained 88% of its initial PCE after over 1000 hours in pure oxygen environment. The device retains 91% of the initial PCE after more than 1000 hours at 25°C and 50+5% relative humidity. This work provides a strategy for the use of natural and environmentally friendly additives to improve the efficiency and stability of devices, and provides an idea for the development of efficient, stable and environmentally friendly PSCs.
format Preprint
id arxiv_https___arxiv_org_abs_2405_01058
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle An eco-friendly passivation strategy of resveratrol for highly efficient and antioxidative perovskite solar cells
Wu, Xianhu
Bi, Jieyu
Cui, Guanglei
Liu, Nian
Xia, Gaojie
Li, Ping
Zhao, Chunyi
Zuo, Zewen
Gu, Min
Materials Science
Applied Physics
The stability of perovskite solar cells is closely related to the defects in perovskite crystals, and there are a large number of crystal defects in the perovskite thin films prepared by the solution method, which is not conducive to the commercial production of PSCs. In this study, resveratrol(RES), a green natural antioxidant abundant in knotweed and grape leaves, was introduced into perovskite films to passivate the defect. RES achieves defect passivation by interacting with uncoordinated Pb2+ in perovskite films. The results show that the quality of the perovskite film is significantly improved, and the energy level structure of the device is optimized, and the power conversion efficiency of the device is increased from 21.62% to 23.44%. In addition, RES can hinder the degradation of perovskite structures by O2- and CO2- free radicals, and the device retained 88% of its initial PCE after over 1000 hours in pure oxygen environment. The device retains 91% of the initial PCE after more than 1000 hours at 25°C and 50+5% relative humidity. This work provides a strategy for the use of natural and environmentally friendly additives to improve the efficiency and stability of devices, and provides an idea for the development of efficient, stable and environmentally friendly PSCs.
title An eco-friendly passivation strategy of resveratrol for highly efficient and antioxidative perovskite solar cells
topic Materials Science
Applied Physics
url https://arxiv.org/abs/2405.01058