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Cross-Scale Synthesis of Organic High-k Semiconductors Based on Spiro-Gridized Nanopolymers

High dielectric constants in organic semiconductors have been identified as a central challenge for the improvement in not only piezoelectric, pyroelectric, and ferroelectric effects but also photoelectric conversion efficiency in OPVs, carrier mobility in OFETs, and charge density in charge-trappin...

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Autores principales: Lin, Dongqing, Zhang, Wenhua, Yin, Hang, Hu, Haixia, Li, Yang, Zhang, He, Wang, Le, Xie, Xinmiao, Hu, Hongkai, Yan, Yongxia, Ling, Haifeng, Liu, Jin'an, Qian, Yue, Tang, Lei, Wang, Yongxia, Dong, Chaoyang, Xie, Linghai, Zhang, Hao, Wang, Shasha, Wei, Ying, Guo, Xuefeng, Lu, Dan, Huang, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAAS 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8777471/
https://www.ncbi.nlm.nih.gov/pubmed/35098138
http://dx.doi.org/10.34133/2022/9820585
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author Lin, Dongqing
Zhang, Wenhua
Yin, Hang
Hu, Haixia
Li, Yang
Zhang, He
Wang, Le
Xie, Xinmiao
Hu, Hongkai
Yan, Yongxia
Ling, Haifeng
Liu, Jin'an
Qian, Yue
Tang, Lei
Wang, Yongxia
Dong, Chaoyang
Xie, Linghai
Zhang, Hao
Wang, Shasha
Wei, Ying
Guo, Xuefeng
Lu, Dan
Huang, Wei
author_facet Lin, Dongqing
Zhang, Wenhua
Yin, Hang
Hu, Haixia
Li, Yang
Zhang, He
Wang, Le
Xie, Xinmiao
Hu, Hongkai
Yan, Yongxia
Ling, Haifeng
Liu, Jin'an
Qian, Yue
Tang, Lei
Wang, Yongxia
Dong, Chaoyang
Xie, Linghai
Zhang, Hao
Wang, Shasha
Wei, Ying
Guo, Xuefeng
Lu, Dan
Huang, Wei
author_sort Lin, Dongqing
collection PubMed
description High dielectric constants in organic semiconductors have been identified as a central challenge for the improvement in not only piezoelectric, pyroelectric, and ferroelectric effects but also photoelectric conversion efficiency in OPVs, carrier mobility in OFETs, and charge density in charge-trapping memories. Herein, we report an ultralong persistence length (l(p) ≈ 41 nm) effect of spiro-fused organic nanopolymers on dielectric properties, together with excitonic and charge carrier behaviors. The state-of-the-art nanopolymers, namely, nanopolyspirogrids (NPSGs), are synthesized via the simple cross-scale Friedel-Crafts polygridization of A(2)B(2)-type nanomonomers. The high dielectric constant (k = 8.43) of NPSG is firstly achieved by locking spiro-polygridization effect that results in the enhancement of dipole polarization. When doping into a polystyrene-based dielectric layer, such a high-k feature of NPSG increases the field-effect carrier mobility from 0.20 to 0.90 cm(2) V(−1) s(−1) in pentacene OFET devices. Meanwhile, amorphous NPSG film exhibits an ultralow energy disorder (<50 meV) for an excellent zero-field hole mobility of 3.94 × 10(−3) cm(2) V(−1) s(−1), surpassing most of the amorphous π-conjugated polymers. Organic nanopolymers with high dielectric constants open a new way to break through the bottleneck of efficiency and multifunctionality in the blueprint of the fourth-generation semiconductors.
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spelling pubmed-87774712022-01-28 Cross-Scale Synthesis of Organic High-k Semiconductors Based on Spiro-Gridized Nanopolymers Lin, Dongqing Zhang, Wenhua Yin, Hang Hu, Haixia Li, Yang Zhang, He Wang, Le Xie, Xinmiao Hu, Hongkai Yan, Yongxia Ling, Haifeng Liu, Jin'an Qian, Yue Tang, Lei Wang, Yongxia Dong, Chaoyang Xie, Linghai Zhang, Hao Wang, Shasha Wei, Ying Guo, Xuefeng Lu, Dan Huang, Wei Research (Wash D C) Research Article High dielectric constants in organic semiconductors have been identified as a central challenge for the improvement in not only piezoelectric, pyroelectric, and ferroelectric effects but also photoelectric conversion efficiency in OPVs, carrier mobility in OFETs, and charge density in charge-trapping memories. Herein, we report an ultralong persistence length (l(p) ≈ 41 nm) effect of spiro-fused organic nanopolymers on dielectric properties, together with excitonic and charge carrier behaviors. The state-of-the-art nanopolymers, namely, nanopolyspirogrids (NPSGs), are synthesized via the simple cross-scale Friedel-Crafts polygridization of A(2)B(2)-type nanomonomers. The high dielectric constant (k = 8.43) of NPSG is firstly achieved by locking spiro-polygridization effect that results in the enhancement of dipole polarization. When doping into a polystyrene-based dielectric layer, such a high-k feature of NPSG increases the field-effect carrier mobility from 0.20 to 0.90 cm(2) V(−1) s(−1) in pentacene OFET devices. Meanwhile, amorphous NPSG film exhibits an ultralow energy disorder (<50 meV) for an excellent zero-field hole mobility of 3.94 × 10(−3) cm(2) V(−1) s(−1), surpassing most of the amorphous π-conjugated polymers. Organic nanopolymers with high dielectric constants open a new way to break through the bottleneck of efficiency and multifunctionality in the blueprint of the fourth-generation semiconductors. AAAS 2022-01-12 /pmc/articles/PMC8777471/ /pubmed/35098138 http://dx.doi.org/10.34133/2022/9820585 Text en Copyright © 2022 Dongqing Lin et al. https://creativecommons.org/licenses/by/4.0/Exclusive Licensee Science and Technology Review Publishing House. Distributed under a Creative Commons Attribution License (CC BY 4.0).
spellingShingle Research Article
Lin, Dongqing
Zhang, Wenhua
Yin, Hang
Hu, Haixia
Li, Yang
Zhang, He
Wang, Le
Xie, Xinmiao
Hu, Hongkai
Yan, Yongxia
Ling, Haifeng
Liu, Jin'an
Qian, Yue
Tang, Lei
Wang, Yongxia
Dong, Chaoyang
Xie, Linghai
Zhang, Hao
Wang, Shasha
Wei, Ying
Guo, Xuefeng
Lu, Dan
Huang, Wei
Cross-Scale Synthesis of Organic High-k Semiconductors Based on Spiro-Gridized Nanopolymers
title Cross-Scale Synthesis of Organic High-k Semiconductors Based on Spiro-Gridized Nanopolymers
title_full Cross-Scale Synthesis of Organic High-k Semiconductors Based on Spiro-Gridized Nanopolymers
title_fullStr Cross-Scale Synthesis of Organic High-k Semiconductors Based on Spiro-Gridized Nanopolymers
title_full_unstemmed Cross-Scale Synthesis of Organic High-k Semiconductors Based on Spiro-Gridized Nanopolymers
title_short Cross-Scale Synthesis of Organic High-k Semiconductors Based on Spiro-Gridized Nanopolymers
title_sort cross-scale synthesis of organic high-k semiconductors based on spiro-gridized nanopolymers
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8777471/
https://www.ncbi.nlm.nih.gov/pubmed/35098138
http://dx.doi.org/10.34133/2022/9820585
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