Nucleation and Crystallization in 2D Ruddlesden‐Popper Perovskites using Formamidinium‐based Organic Semiconductor Spacers for Efficient Solar Cells

Author:

Wang Rui1,Dong Xiyue1,Ling Qin2,Hu Ziyang2,Gao Yuping1,Chen Yu3,Liu Yongsheng1ORCID

Affiliation:

1. The Centre of Nanoscale Science and Technology and Key Laboratory of Functional Polymer Materials, Institute of Polymer Chemistry, College of Chemistry and Renewable Energy Conversion and Storage Center (RECAST) Nankai University Tianjin 300071 China

2. Department of Microelectronic Science and Engineering Ningbo University Ningbo 315211 China

3. The Institute of High Energy Physics Chinese Academy of Sciences Beijing 100049 China

Abstract

AbstractThe conjugated organic semiconductor spacers have drawn wide attention in two‐dimensional (2D) perovskites and formamidinium (FA) has been widely used as A‐site cation in high‐performance 3D perovskite solar cells (PSCs). However, the FA‐based semiconductor spacers have rarely been investigated in 2D Ruddlesden‐Popper (RP) perovskites. Here, we developed two FA‐based spacers containing thieno[3,2‐b]thiophene (TT) and 2,2′‐bithiophene (BT) units, namely TTFA and BTFA, respectively, for 2D RP PSCs. The nucleation and crystallization kinetics of TTFA‐Pb and BTFA‐Pb from sol‐gel to film were investigated using in situ optical microscopy and in situ grazing incidence wide‐angle X‐ray scattering (GIWAXS) measurements. It is found that the TTFA spacer could reduce the energy barrier of nucleation and induces crystal vertical orientation of 2D perovskite by forming larger clusters in precursor solution, resulting in much improved film quality. Benefiting from the enlarged crystal grains, reduced exciton binding energy, and decreased electron‐phonon coupling coefficient, the photovoltaic device based on (TTFA)2MAn−1PbnI3n+1 (n=5) achieved a champion efficiency of 19.41 %, which is a record for 2D RP PSCs with FA‐based spacers. Our work provides deep understanding of the nucleation and crystallization process of 2D RP perovskite films and highlights the great potential of FA‐based semiconductor spacers in highly efficient 2D PSCs.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Natural Science Foundation of Hebei Province

Publisher

Wiley

Subject

General Medicine

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