TY - JOUR
T1 - Benzylammonium-Mediated Formamidinium Lead Iodide Perovskite Phase Stabilization for Photovoltaics
AU - Alanazi, Anwar Q.
AU - Almalki, Masaud H.
AU - Mishra, Aditya
AU - Kubicki, Dominik J.
AU - Wang, Zaiwei
AU - Merten, Lena
AU - Eickemeyer, Felix T.
AU - Zhang, Hong
AU - Ren, Dan
AU - Alyamani, Ahmed Y.
AU - Albrithen, Hamad
AU - Albadri, Abdulrahman
AU - Alotaibi, Mohammad Hayal
AU - Hinderhofer, Alexander
AU - Zakeeruddin, Shaik M.
AU - Schreiber, Frank
AU - Hagfeldt, Anders
AU - Emsley, Lyndon
AU - Milić, Jovana V.
AU - Graetzel, Michael
N1 - Publisher Copyright:
© 2021 Wiley-VCH GmbH
PY - 2021/7/23
Y1 - 2021/7/23
N2 - There is an ongoing surge of interest in the use of formamidinium (FA) lead iodide perovskites in photovoltaics due to their exceptional optoelectronic properties. However, thermodynamic instability of the desired cubic perovskite (α-FAPbI3) phase at ambient conditions leads to the formation of a yellow non-perovskite (δ-FAPbI3) phase that compromises its utility. A stable α-FAPbI3 perovskite phase is achieved by employing benzylammonium iodide (BzI) and the microscopic structure is elucidated by using solid-state NMR spectroscopy and X-ray scattering measurements. Perovskite solar cells based on the FAPbI3(BzI)0.25 composition achieve power conversion efficiencies exceeding 20%, which is accompanied by enhanced shelf-life and operational stability, maintaining 80% of the performance after one year at ambient conditions.
AB - There is an ongoing surge of interest in the use of formamidinium (FA) lead iodide perovskites in photovoltaics due to their exceptional optoelectronic properties. However, thermodynamic instability of the desired cubic perovskite (α-FAPbI3) phase at ambient conditions leads to the formation of a yellow non-perovskite (δ-FAPbI3) phase that compromises its utility. A stable α-FAPbI3 perovskite phase is achieved by employing benzylammonium iodide (BzI) and the microscopic structure is elucidated by using solid-state NMR spectroscopy and X-ray scattering measurements. Perovskite solar cells based on the FAPbI3(BzI)0.25 composition achieve power conversion efficiencies exceeding 20%, which is accompanied by enhanced shelf-life and operational stability, maintaining 80% of the performance after one year at ambient conditions.
KW - benzylammonium
KW - formamidinium lead iodide
KW - low-dimensional perovskites
KW - solid-state NMR
UR - https://www.scopus.com/pages/publications/85106329783
U2 - 10.1002/adfm.202101163
DO - 10.1002/adfm.202101163
M3 - 文章
AN - SCOPUS:85106329783
SN - 1616-301X
VL - 31
JO - Advanced Functional Materials
JF - Advanced Functional Materials
IS - 30
M1 - 2101163
ER -