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Incorporation of hydrogen‐bonding units into polymeric semiconductors toward boosting charge mobility, intrinsic stretchability, and self‐healing ability
by
Zhang, Deqing
, Li, Cheng
, Zhang, Xisha
, Zhang, Guanxin
, Gao, Chenying
, Yu, Xiaobo
in
conjugated polymers
/ Copyright
/ Engineering
/ Field effect transistors
/ flexible and stretchable electronics
/ Flexible components
/ Healing
/ Hydrogen bonding
/ Hydrogen bonds
/ Molecular structure
/ Molecular weight
/ Morphology
/ NMR
/ Nuclear magnetic resonance
/ Organic light emitting diodes
/ Polymers
/ Porous materials
/ self‐healable and wearable electronics
/ Semiconductors
/ Stretchability
/ Thin films
/ Transistors
2021
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Incorporation of hydrogen‐bonding units into polymeric semiconductors toward boosting charge mobility, intrinsic stretchability, and self‐healing ability
by
Zhang, Deqing
, Li, Cheng
, Zhang, Xisha
, Zhang, Guanxin
, Gao, Chenying
, Yu, Xiaobo
in
conjugated polymers
/ Copyright
/ Engineering
/ Field effect transistors
/ flexible and stretchable electronics
/ Flexible components
/ Healing
/ Hydrogen bonding
/ Hydrogen bonds
/ Molecular structure
/ Molecular weight
/ Morphology
/ NMR
/ Nuclear magnetic resonance
/ Organic light emitting diodes
/ Polymers
/ Porous materials
/ self‐healable and wearable electronics
/ Semiconductors
/ Stretchability
/ Thin films
/ Transistors
2021
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Incorporation of hydrogen‐bonding units into polymeric semiconductors toward boosting charge mobility, intrinsic stretchability, and self‐healing ability
by
Zhang, Deqing
, Li, Cheng
, Zhang, Xisha
, Zhang, Guanxin
, Gao, Chenying
, Yu, Xiaobo
in
conjugated polymers
/ Copyright
/ Engineering
/ Field effect transistors
/ flexible and stretchable electronics
/ Flexible components
/ Healing
/ Hydrogen bonding
/ Hydrogen bonds
/ Molecular structure
/ Molecular weight
/ Morphology
/ NMR
/ Nuclear magnetic resonance
/ Organic light emitting diodes
/ Polymers
/ Porous materials
/ self‐healable and wearable electronics
/ Semiconductors
/ Stretchability
/ Thin films
/ Transistors
2021
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Incorporation of hydrogen‐bonding units into polymeric semiconductors toward boosting charge mobility, intrinsic stretchability, and self‐healing ability
Journal Article
Incorporation of hydrogen‐bonding units into polymeric semiconductors toward boosting charge mobility, intrinsic stretchability, and self‐healing ability
2021
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Overview
The soft nature has endowed conjugated polymers with promising applications in a wide range of field‐effect transistor (FET) based flexible electronics. With unremitting efforts on revealing the molecular structure–property relationships, numerous novel conjugated polymers with high mobility and excellent mechanical property have been developed in the past decades. Incorporating hydrogen‐bonding (H‐bonding) units into semiconducting polymers is one of the most successful strategies for designing high‐performance semiconducting materials. In this review, we aim to highlight the roles of H‐bonding units in the performances of polymeric FETs from three aspects. These include (i) charge mobility enhancement for semiconducting polymers after incorporation of H‐bonding units into the side chains, (ii) the effects of H‐bonding units on the stretchability of conjugated polymers, and (iii) the improvement of self‐healing properties of conjugated polymers containing dynamic hydrogen bonds due to the H‐bonding units in the side chains or conjugated backbones. In this review, the effects of H‐bonding units on the interchain packing order, semiconducting performance, stretchability and self‐healing property of conjugated polymers have been summarized and discussed.
Publisher
John Wiley & Sons, Inc,Wiley
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