Artificial p–n‐like Junction Based on Pure 2D Organic–Inorganic Halide Perovskite Structure Having Naphthalene Diimide Acceptor Moieties

Author:

Feng Zhao12,Liu Xuelong1,Imaoka Kentaro1,Ishii Tomohiro1,Tumen‐Ulzii Ganbaatar13ORCID,Tang Xun1ORCID,Harrington George F.3ORCID,Heinrich Benoît4ORCID,Ribierre Jean‐Charles1ORCID,Chamoreau Lise‐Marie5,Sosa Vargas Lydia5ORCID,Kreher David56ORCID,Goushi Kenichi13ORCID,Matsushima Toshinori3ORCID,Zhou Guijiang2ORCID,Mathevet Fabrice15ORCID,Adachi Chihaya13ORCID

Affiliation:

1. Center for Organic Photonics and Electronics Research (OPERA) and Department of Applied Chemistry Kyushu University 744 Motooka Nishi‐ku Fukuoka 819‐0395 Japan

2. School of Chemistry MOE Key Laboratory for Nonequilibrium Synthesis and Modulation of Condensed Matter Xi'an Key Laboratory of Sustainable Energy Material Chemistry Xi'an Jiaotong University Xi'an 710049 P. R. China

3. International Institute for Carbon Neutral Energy Research (WPI‐I2CNER) Kyushu University 744 Motooka Nishi‐ku Fukuoka 819‐0395 Japan

4. Institut de Physique et Chimie des Matériaux de Strasbourg (IPCMS) ‐ UMR 7504 CNRS Université de Strasbourg 23 Rue du Loess F‐67034 Strasbourg Cedex 2 France

5. Institut Parisien de Chimie Moléculaire (IPCM) ‐ UMR 8232 CNRS Sorbonne Université F‐75005 Paris France

6. Institut Lavoisier de Versailles ‐ UMR 8180 CNRS Université Paris‐Saclay Université de Versailles Saint‐Quentin‐en‐Yvelines Versailles F‐78035 Cedex France

Abstract

Abstract2D organic–inorganic perovskites are an emerging class of materials with great potential for optoelectronics since a wide variety of large functional chromophores can be regularly incorporated. Among this new type of materials, hybrid perovskite systems incorporating strong electron acceptor molecules are considered as a promising approach to designing a new type of functional 2D perovskites for optoelectronics. In this work, a rare example of organic–inorganic 2D perovskite incorporating strong acceptors such as naphthalene diimide (NDI) building blocks between inorganic sheets is presented. This hybrid architecture forms highly air‐stable thin films with a structure consisting of inorganic perovskite monolayers of metal‐halide octahedra separated by bilayers of NDI‐based organic cations. The presence of strong electron‐accepting moieties in this multifunctional donor–acceptor hybrid heterostructure leads to a rare type II heterojunction in which the excitons can be efficiently dissociated via the electron‐transfer process and in which holes and electrons can be easily confined in the inorganic and organic sublayers, respectively. Such an ultimate p–n heterojunction shows improved photoconduction properties with a photocurrent multiplied by ≈40 under white‐light illumination in comparison to a similar 2D perovskite structure containing optically and electrically inert alkyl chains as organic components.

Funder

New Energy and Industrial Technology Development Organization

Iwatani Naoji Foundation

Asahi Glass Foundation

China Scholarship Council

Publisher

Wiley

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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