Phenol‐Functionalized Perylene Bisimides as Amine‐Free Electron Transporting Interlayers for Stable Nonfullerene Organic Solar Cells DOI
Xinbo Wen, Yu Zhang,

Guojing Xie

et al.

Advanced Functional Materials, Journal Year: 2022, Volume and Issue: 32(17)

Published: Jan. 17, 2022

Abstract A new type of cathode interlayer composed 2,6‐di‐ tert ‐butyl‐phenol‐functionalized perylene bisimide (PBI‐2P) is successfully applied as an electron transporting layer for fused‐ring nonfullerene organic solar cells (OSCs). The stable contact between these novel layers and the representative acceptor Y6 greatly enhances device stability compared to conventional amine‐group containing interlayers. Moreover, easily formed biradical species in interlayers yields rather good thickness tolerance PBI‐2P photovoltaic devices. OSCs based on show a power conversion efficiency up 17.20% amino‐group functionalized findings demonstrate promising design principle engineering pigment chromophores equipped with ‐butylphenoxy groups that are prone form respective ultrastable butylphenoxy radicals OSCs.

Language: Английский

Recent advances in n-type and ambipolar organic semiconductors and their multi-functional applications DOI
Yihan Zhang,

Yongshuai Wang,

Can Gao

et al.

Chemical Society Reviews, Journal Year: 2023, Volume and Issue: 52(4), P. 1331 - 1381

Published: Jan. 1, 2023

A comprehensive summary and deep insights into the synthesis, characterization multi-functional device applications of n-type ambipolar organic semiconductors are provided in this study.

Language: Английский

Citations

160

Research Progress of Intramolecular π‐Stacked Small Molecules for Device Applications DOI
Shengyi Yang, Yang‐Kun Qu, Liang‐Sheng Liao

et al.

Advanced Materials, Journal Year: 2021, Volume and Issue: 34(22)

Published: Oct. 1, 2021

Abstract Organic semiconductors can be designed and constructed in π‐stacked structures instead of the conventional π‐conjugated structures. Through‐space interaction (TSI) occurs optoelectronic materials. Thus, unlike electronic coupling along conjugated chain, functional groups stack closely to facilitate spatial electron communication. Using motifs, chemists materials scientists find new ways for constructing with aggregation‐induced emission (AIE), thermally activated delayed fluorescence (TADF), circularly polarized luminescence (CPL), room‐temperature phosphorescence (RTP), as well enhanced molecular conductance. devices based on molecules have exhibited very promising performance, some them exceeding analogues. Recently, reports various organic grown rapidly, prompting this review. Representative scaffolds newly developed systems could stimulate more attention through‐space charge transfer well‐known through‐bond transfer. Finally, opportunities challenges utilizing improving particular are discussed. The previous achievements upcoming prospects may provide insights into theory, materials, field semiconductors.

Language: Английский

Citations

149

Oligomeric Acceptor: A “Two‐in‐One” Strategy to Bridge Small Molecules and Polymers for Stable Solar Devices DOI

Hengtao Wang,

Congcong Cao, Hui Chen

et al.

Angewandte Chemie International Edition, Journal Year: 2022, Volume and Issue: 61(23)

Published: March 21, 2022

Oligomeric acceptors are expected to combine the advantages of both highly developed small molecular and polymeric acceptors. However, organic solar cells (OSCs) based on oligomers lag far behind due their slow development low diversity. Here, three oligomeric were produced through oligomerization molecules. The dimer dBTICγ-EH achieved best power conversion efficiencies (PCEs) 14.48 % in bulk heterojunction devices possessed a T80 (80 initial PCE) lifetime 1020 h under illumination, which better than that More excitingly, it showed PCEs 16.06 quasi-planar (Q-PHJ) is highest value OSCs using date. These results suggest molecules promising strategy achieve with optimized performance between high efficiency durable stability, offer materials bright future commercial applications.

Language: Английский

Citations

131

Molecular Carbon Imides DOI
Wei Jiang, Zhaohui Wang

Journal of the American Chemical Society, Journal Year: 2022, Volume and Issue: 144(33), P. 14976 - 14991

Published: July 29, 2022

The creation and development of new forms nanocarbons have fundamentally transformed the scientific landscape in past three decades. As members nanocarbon family with accurate size, shape, edge structure, molecular carbon imides (MCIs) shown unexpected unique properties. Particularly, imide functionalization strategy has endowed these rylene-based carbons fascinating characteristics involving flexible syntheses, tailor-made structures, diverse properties, excellent processability, good stability. This Perspective elaborates design evolution to functional landscapes, illustrative examples are given, including a promising library multi-size multi-dimensional MCIs rigidly conjugated π-architectures, ranging from 1D nanoribbon 2D nanographene cross-dimensional MCIs. Although researchers achieved substantial progress using as components for exploration charge transport, photoelectric conversion, chiral luminescence performances, they far unleashing their full potential. Developing highly efficient regioselective coupling/ring-closure reactions formation multiple C–C bonds annulation electron-deficient aromatic units is crucial. Prediction by theory help machine learning artificial intelligence research along reliable nanotechnology characterization will give an impetus blossom related fields. Future investigations also advance toward─or even focus on─the emerging potential functions, especially fields electronics spin electronics, which expected open avenues.

Language: Английский

Citations

106

“Spine Surgery” of Perylene Diimides with Covalent B–N Bonds toward Electron-Deficient BN-Embedded Polycyclic Aromatic Hydrocarbons DOI
Kexiang Zhao, Ze‐Fan Yao,

Ziyuan Wang

et al.

Journal of the American Chemical Society, Journal Year: 2022, Volume and Issue: 144(7), P. 3091 - 3098

Published: Feb. 9, 2022

BN-embedded polycyclic aromatic hydrocarbons (PAHs) with unique optoelectronic properties are underdeveloped relative to their carbonaceous counterparts due the lack of suitable and facile synthetic methods. Moreover, dearth electron-deficient PAHs further hinders application in organic electronics. Here we present first synthesis novel perylene diimide derivatives (B2N2-PDIs) featuring n-type B-N covalent bonds. The structures these compounds fully confirmed through detailed characterizations NMR, MS, X-ray crystallography. Further investigation shows that introduction BN units significantly modifies photophysical electronic B2N2-PDIs is understood aid theoretical calculations. Compared parent diimides (PDIs), exhibit deeper highest occupied molecular orbital energy levels, new absorption peaks high-energy region, hypsochromic shift emission maxima, decrement photoluminescent quantum yields. Single-crystal field-effect transistors based on showcase an electron mobility up 0.35 cm2 V-1 s-1, demonstrating potential materials.

Language: Английский

Citations

86

Oligomerized Fused‐Ring Electron Acceptors for Efficient and Stable Organic Solar Cells DOI
Xiaobin Gu, Xin Zhang, Hui Huang

et al.

Angewandte Chemie International Edition, Journal Year: 2023, Volume and Issue: 62(46)

Published: July 12, 2023

Abstract Organic solar cells (OSCs) have attracted wide research attention in the past decades. Very recently, oligomerized fused‐ring electron acceptors (OFREAs) emerged as a promising alternative to small‐molecular/polymeric acceptor‐based OSCs due their unique advantages such well‐defined structures, batch reproducibility, good film formation, low diffusion coefficient, and excellent stability. So far, rapid advances been made development of OFREAs consisting directly/rigidly/flexibly linked oligomers fused ones. In this Minireview, we systematically summarized recent progress OFREAs, including structural diversity, synthesis approach, molecular conformation packing, long‐term Finally, conclude with future perspectives on challenges be addressed potential directions. We believe that Minireview will encourage novel for OSC applications.

Language: Английский

Citations

81

Multilayer stacks of polycyclic aromatic hydrocarbons DOI

Magnus Mahl,

M. A. Niyas, Kazutaka Shoyama

et al.

Nature Chemistry, Journal Year: 2022, Volume and Issue: 14(4), P. 457 - 462

Published: Feb. 7, 2022

Language: Английский

Citations

78

Trimerized small-molecule acceptors enable high-performance organic solar cells with high open-circuit voltage and prolonged life-time DOI Creative Commons
Jin‐Woo Lee,

Cheng Sun,

Tan Ngoc‐Lan Phan

et al.

Energy & Environmental Science, Journal Year: 2023, Volume and Issue: 16(8), P. 3339 - 3349

Published: Jan. 1, 2023

We report a new trimer acceptor (TYT) composed of three Y-based molecules connected by electron-donating spacers. The TYT enables high-performance and stable organic solar cell (OSC) with t 80% lifetime >8000 h under 1 sun illumination.

Language: Английский

Citations

77

Recent progress and prospects of dimer and multimer acceptors for efficient and stable polymer solar cells DOI Creative Commons
Jin‐Woo Lee, Jin Su Park,

Hyesu Jeon

et al.

Chemical Society Reviews, Journal Year: 2024, Volume and Issue: 53(9), P. 4674 - 4706

Published: Jan. 1, 2024

This review summarizes the recent progress, key design principles and prospects of dimer multimer acceptors for developing polymer solar cells (PSCs) with high efficiency long-term stability.

Language: Английский

Citations

45

Diazabicyclic Electroactive Ionenes for Efficient and Stable Organic Solar Cells DOI

Zuhao You,

Yanan Song,

Wenxu Liu

et al.

Angewandte Chemie International Edition, Journal Year: 2023, Volume and Issue: 62(23)

Published: March 30, 2023

Electroactive ionenes combining caged-shaped diazabicyclic cations and aromatic diimides were developed as interlayers in organic solar cells (OSCs). These reduce the work-function of air-stable metal electrodes (e.g., Ag, Cu Au) by generating strong interfacial dipoles, their optoelectronic morphological characters can be modulated diimides, leading to high conductivity good compatibility with active layers. The optimal ionene exhibits superior charge-transport, desirable crystallinity, weak visible-absorption, boosting efficiency benchmark PM6 : Y6-based OSCs up 17.44 %. corresponding normal devices show excellent stability at maximum power point test under one sun illumination for 1000 h. Replacing Y6 L8-BO promotes 18.43 %, highest binary OSCs. Notably, efficiencies >16 % are maintained interlayer thickness increasing 105 nm, best result interlayer-thickness over 100 nm.

Language: Английский

Citations

44