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Correction: Crystal growth of two-dimensional organic–inorganic hybrid perovskites and their application in photovoltaics

Yuling Zhang , Ruyue Wang and Zhan’ao Tan *
Beijing Advanced Innovation Center for Soft Matter Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, China. E-mail: tanzhanao@mail.buct.edu.cn

Received 30th May 2023 , Accepted 30th May 2023

First published on 12th June 2023


Abstract

Correction for ‘Crystal growth of two-dimensional organic–inorganic hybrid perovskites and their application in photovoltaics’ by Yuling Zhang et al., J. Mater. Chem. A, 2023, https://doi.org/10.1039/D3TA01496G.


The authors regret errors which appeared in Fig. 4 and 5a of the published article, where the structures of two given compounds were incorrectly shown. The corrected version of Fig. 4 and 5a are shown below:
image file: d3ta90117c-f4.tif
Fig. 1 Chemical structure of the commonly used A-site organic cations for fabricating R–P (blue color), D–J (red color), and ACI (pink color) perovskite films. GuA,27,49 EA,50 PA,45 BA,18,21,26,51–56 HA,14 OA,57,58 OAm,57 TMA,59 ThFA,60 ThEA,7,61,62 BThEA,63 VBA,64,65 PEA,66 4FPEA,47,67,68 4MPEA,48 F5-PEA,69,70 NMA,71 AnMA,72 PREA,73 CorMA,74 EDA,23,24 PDA,75,76 BDA,76,77 AVA,78,79 EDOEA,80 4AMP,19 3AMPY,81m-DMPA,37 ThDMA,46 TTDMA,82 and C60-BPAM.83

image file: d3ta90117c-f5.tif
Fig. 2 (a) The further developing direction of organic cations for the 2D perovskite: adjustment of the conjugation degree and the introduction of multifunctional heteroatoms. (b) Illustration of the out-of-plane tilt and in-plane tilt of the [PbX6]4− framework. The θ, γ represent the tilt degree of the octahedron. Reproduced with permission.8 Copyright 2022 Springer.

The Royal Society of Chemistry apologises for these errors and any consequent inconvenience to authors and readers.


This journal is © The Royal Society of Chemistry 2023
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