Chiral induced synthesis of helical polypyrrole (PPy) nano-structures: a lightweight and high-performance material against electromagnetic pollution
Helical conducting polymer nano-structures have attracted increasing attention because of their superior optical and electrical activities, lightweight, and flexibility as well as controllable morphologies at several levels of a hierarchy. Nevertheless, hardly any research has focused on helical con...
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Published in | Journal of materials chemistry. C, Materials for optical and electronic devices Vol. 5; no. 8; pp. 2175 - 2181 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
Published |
2017
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Subjects | |
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Abstract | Helical conducting polymer nano-structures have attracted increasing attention because of their superior optical and electrical activities, lightweight, and flexibility as well as controllable morphologies at several levels of a hierarchy. Nevertheless, hardly any research has focused on helical conducting polymer nano-structure based electromagnetic protecting materials. Herein, we synthesized single-handed helical polypyrrole (PPy) nano-structures by a chiral inducing route and demonstrated their amazing electromagnetic protecting abilities. A gradually constructed conducting network and helical chirality may be the main reasons for the tunable and impressive electromagnetic protecting performance of the as-prepared helical PPy nano-structures. This research opens up an opportunity for the application of single-handed helical conducting polymer nano-structures as a lightweight and tunable high-performance electromagnetic protecting material, especially in the fields of special aircraft, aerospace and fast-growing next-generation flexible electronics. |
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AbstractList | Helical conducting polymer nano-structures have attracted increasing attention because of their superior optical and electrical activities, lightweight, and flexibility as well as controllable morphologies at several levels of a hierarchy. Nevertheless, hardly any research has focused on helical conducting polymer nano-structure based electromagnetic protecting materials. Herein, we synthesized single-handed helical polypyrrole (PPy) nano-structures by a chiral inducing route and demonstrated their amazing electromagnetic protecting abilities. A gradually constructed conducting network and helical chirality may be the main reasons for the tunable and impressive electromagnetic protecting performance of the as-prepared helical PPy nano-structures. This research opens up an opportunity for the application of single-handed helical conducting polymer nano-structures as a lightweight and tunable high-performance electromagnetic protecting material, especially in the fields of special aircraft, aerospace and fast-growing next-generation flexible electronics. |
Author | Wang, Mingyang Wu, Fan Zhang, Kun Xie, Aming Sun, Mengxiao Jiang, Wanchun |
Author_xml | – sequence: 1 givenname: Aming surname: Xie fullname: Xie, Aming organization: School of Mechanical Engineering, Nanjing University of Science & Technology, Nanjing 210094, P. R. China, State Key Laboratory for Disaster Prevention & Mitigation of Explosion & Impact – sequence: 2 givenname: Fan orcidid: 0000-0002-0468-2868 surname: Wu fullname: Wu, Fan organization: School of Mechanical Engineering, Nanjing University of Science & Technology, Nanjing 210094, P. R. China, State Key Laboratory for Disaster Prevention & Mitigation of Explosion & Impact – sequence: 3 givenname: Wanchun surname: Jiang fullname: Jiang, Wanchun organization: State Key Laboratory for Disaster Prevention & Mitigation of Explosion & Impact, PLA University of Science and Technology, Nanjing 210007, P. R. China – sequence: 4 givenname: Kun surname: Zhang fullname: Zhang, Kun organization: School of Mechanical Engineering, Nanjing University of Science & Technology, Nanjing 210094, P. R. China – sequence: 5 givenname: Mengxiao surname: Sun fullname: Sun, Mengxiao organization: State Key Laboratory for Disaster Prevention & Mitigation of Explosion & Impact, PLA University of Science and Technology, Nanjing 210007, P. R. China – sequence: 6 givenname: Mingyang surname: Wang fullname: Wang, Mingyang organization: School of Mechanical Engineering, Nanjing University of Science & Technology, Nanjing 210094, P. R. China, State Key Laboratory for Disaster Prevention & Mitigation of Explosion & Impact |
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Cites_doi | 10.1039/c3tc00757j 10.1039/c0cc00891e 10.1021/ja046359v 10.1039/C5TA01577D 10.1063/1.1589603 10.1063/1.4936549 10.1021/acsami.5b12789 10.1016/j.jallcom.2014.01.032 10.1109/PROC.1974.9382 10.1021/cr030072j 10.1007/BF02633785 10.1039/C4NR01738B 10.1016/j.compscitech.2015.05.010 10.1002/adma.201204196 10.1002/adma.200700846 10.1016/j.carbon.2014.02.054 10.1109/TMTT.1971.1127446 10.1002/app.42498 10.1021/ja105966c 10.1021/nn304630h 10.1039/C4TA04286G 10.1021/ja054789v 10.1002/adma.201400108 10.1016/j.carbon.2014.05.014 10.1021/acsami.5b05595 10.1002/anie.201410930 10.1002/adma.201302448 10.1021/acsami.5b03177 10.1002/adma.201405788 10.1063/1.4921180 10.1021/nl0602589 10.1021/am502412q 10.1021/acsami.6b00388 10.1021/cm103441u 10.1002/anie.201209858 10.1039/b908001p 10.1002/adfm.201503782 10.1002/anie.201301199 10.1039/c3nr00634d 10.1109/TIM.1970.4313932 10.1021/ja409796b 10.1002/adfm.200701456 10.1021/nl051375r |
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References | Wen (C6TC05057C-(cit2)/*[position()=1]) 2014; 26 Cao (C6TC05057C-(cit19)/*[position()=1]) 2013; 52 Li (C6TC05057C-(cit4)/*[position()=1]) 2006; 6 Wang (C6TC05057C-(cit15)/*[position()=1]) 2013; 1 Xie (C6TC05057C-(cit27)/*[position()=1]) 2015; 117 Zhang (C6TC05057C-(cit37)/*[position()=1]) 2005; 127 Yan (C6TC05057C-(cit22)/*[position()=1]) 2007; 19 Kong (C6TC05057C-(cit9)/*[position()=1]) 2014; 73 Cao (C6TC05057C-(cit41)/*[position()=1]) 2012; 4 Xie (C6TC05057C-(cit6)/*[position()=1]) 2015; 106 Xu (C6TC05057C-(cit25)/*[position()=1]) 2014; 593 Chen (C6TC05057C-(cit17)/*[position()=1]) 2013; 25 Zou (C6TC05057C-(cit21)/*[position()=1]) 2014; 136 Motojima (C6TC05057C-(cit44)/*[position()=1]) 2003; 94 Jian (C6TC05057C-(cit13)/*[position()=1]) 2016; 8 Yang (C6TC05057C-(cit18)/*[position()=1]) 2013; 25 Sun (C6TC05057C-(cit11)/*[position()=1]) 2011; 23 Nicolson (C6TC05057C-(cit33)/*[position()=1]) 1970; 19 Kumar (C6TC05057C-(cit20)/*[position()=1]) 2015; 54 Takehara (C6TC05057C-(cit31)/*[position()=1]) 1972; 49 Li (C6TC05057C-(cit24)/*[position()=1]) 2015; 132 Wang (C6TC05057C-(cit26)/*[position()=1]) 2012; 6 Fan (C6TC05057C-(cit28)/*[position()=1]) 2008; 18 Zhang (C6TC05057C-(cit36)/*[position()=1]) 2004; 126 Zhang (C6TC05057C-(cit1)/*[position()=1]) 2015; 27 Kane-Maguire (C6TC05057C-(cit23)/*[position()=1]) 2010; 39 Song (C6TC05057C-(cit10)/*[position()=1]) 2014; 77 Lu (C6TC05057C-(cit12)/*[position()=1]) 2015; 7 Saini (C6TC05057C-(cit16)/*[position()=1]) 2013; 5 Chen (C6TC05057C-(cit5)/*[position()=1]) 2016; 26 Lv (C6TC05057C-(cit43)/*[position()=1]) 2015; 7 Xie (C6TC05057C-(cit35)/*[position()=1]) 2015; 118 Liu (C6TC05057C-(cit29)/*[position()=1]) 2013; 52 Hsiao (C6TC05057C-(cit40)/*[position()=1]) 2014; 6 Wu (C6TC05057C-(cit7)/*[position()=1]) 2015; 3 Liu (C6TC05057C-(cit38)/*[position()=1]) 2010; 132 Jiang (C6TC05057C-(cit32)/*[position()=1]) 2010; 46 Naito (C6TC05057C-(cit39)/*[position()=1]) 1971; 19 Yang (C6TC05057C-(cit3)/*[position()=1]) 2005; 5 Shimizu (C6TC05057C-(cit30)/*[position()=1]) 2005; 105 Chen (C6TC05057C-(cit8)/*[position()=1]) 2014; 6 Weir (C6TC05057C-(cit34)/*[position()=1]) 1974; 62 Qu (C6TC05057C-(cit14)/*[position()=1]) 2016; 8 Zhang (C6TC05057C-(cit42)/*[position()=1]) 2014; 2 |
References_xml | – volume: 1 start-page: 2851 year: 2013 ident: C6TC05057C-(cit15)/*[position()=1] publication-title: J. Mater. Chem. C doi: 10.1039/c3tc00757j – volume: 46 start-page: 7178 year: 2010 ident: C6TC05057C-(cit32)/*[position()=1] publication-title: Chem. Commun. doi: 10.1039/c0cc00891e – volume: 126 start-page: 12714 year: 2004 ident: C6TC05057C-(cit36)/*[position()=1] publication-title: J. Am. Chem. Soc. doi: 10.1021/ja046359v – volume: 3 start-page: 14358 year: 2015 ident: C6TC05057C-(cit7)/*[position()=1] publication-title: J. Mater. Chem. A doi: 10.1039/C5TA01577D – volume: 94 start-page: 2325 year: 2003 ident: C6TC05057C-(cit44)/*[position()=1] publication-title: J. Appl. Phys. doi: 10.1063/1.1589603 – volume: 118 start-page: 204105 year: 2015 ident: C6TC05057C-(cit35)/*[position()=1] publication-title: J. Appl. Phys. doi: 10.1063/1.4936549 – volume: 8 start-page: 3730 year: 2016 ident: C6TC05057C-(cit14)/*[position()=1] publication-title: ACS Appl. Mater. Interfaces doi: 10.1021/acsami.5b12789 – volume: 593 start-page: 24 year: 2014 ident: C6TC05057C-(cit25)/*[position()=1] publication-title: J. Alloys Compd. doi: 10.1016/j.jallcom.2014.01.032 – volume: 62 start-page: 33 year: 1974 ident: C6TC05057C-(cit34)/*[position()=1] publication-title: Proc. IEEE doi: 10.1109/PROC.1974.9382 – volume: 105 start-page: 1401 year: 2005 ident: C6TC05057C-(cit30)/*[position()=1] publication-title: Chem. Rev. doi: 10.1021/cr030072j – volume: 49 start-page: 157 year: 1972 ident: C6TC05057C-(cit31)/*[position()=1] publication-title: J. Am. Oil Chem. Soc. doi: 10.1007/BF02633785 – volume: 6 start-page: 8140 year: 2014 ident: C6TC05057C-(cit8)/*[position()=1] publication-title: Nanoscale doi: 10.1039/C4NR01738B – volume: 117 start-page: 32 year: 2015 ident: C6TC05057C-(cit27)/*[position()=1] publication-title: Compos. Sci. Technol. doi: 10.1016/j.compscitech.2015.05.010 – volume: 25 start-page: 1296 year: 2013 ident: C6TC05057C-(cit17)/*[position()=1] publication-title: Adv. Mater. doi: 10.1002/adma.201204196 – volume: 19 start-page: 3353 year: 2007 ident: C6TC05057C-(cit22)/*[position()=1] publication-title: Adv. Mater. doi: 10.1002/adma.200700846 – volume: 73 start-page: 185 year: 2014 ident: C6TC05057C-(cit9)/*[position()=1] publication-title: Carbon doi: 10.1016/j.carbon.2014.02.054 – volume: 19 start-page: 65 year: 1971 ident: C6TC05057C-(cit39)/*[position()=1] publication-title: IEEE Trans. Microwave Theory Tech. doi: 10.1109/TMTT.1971.1127446 – volume: 132 start-page: 42498 year: 2015 ident: C6TC05057C-(cit24)/*[position()=1] publication-title: J. Appl. Polym. Sci. doi: 10.1002/app.42498 – volume: 132 start-page: 13158 year: 2010 ident: C6TC05057C-(cit38)/*[position()=1] publication-title: J. Am. Chem. Soc. doi: 10.1021/ja105966c – volume: 6 start-page: 11009 year: 2012 ident: C6TC05057C-(cit26)/*[position()=1] publication-title: ACS Nano doi: 10.1021/nn304630h – volume: 2 start-page: 18033 year: 2014 ident: C6TC05057C-(cit42)/*[position()=1] publication-title: J. Mater. Chem. A doi: 10.1039/C4TA04286G – volume: 127 start-page: 14156 year: 2005 ident: C6TC05057C-(cit37)/*[position()=1] publication-title: J. Am. Chem. Soc. doi: 10.1021/ja054789v – volume: 26 start-page: 3484 year: 2014 ident: C6TC05057C-(cit2)/*[position()=1] publication-title: Adv. Mater. doi: 10.1002/adma.201400108 – volume: 77 start-page: 130 year: 2014 ident: C6TC05057C-(cit10)/*[position()=1] publication-title: Carbon doi: 10.1016/j.carbon.2014.05.014 – volume: 7 start-page: 19408 year: 2015 ident: C6TC05057C-(cit12)/*[position()=1] publication-title: ACS Appl. Mater. Interfaces doi: 10.1021/acsami.5b05595 – volume: 54 start-page: 1 year: 2015 ident: C6TC05057C-(cit20)/*[position()=1] publication-title: Angew. Chem., Int. Ed. doi: 10.1002/anie.201410930 – volume: 25 start-page: 6039 year: 2013 ident: C6TC05057C-(cit18)/*[position()=1] publication-title: Adv. Mater. doi: 10.1002/adma.201302448 – volume: 7 start-page: 13604 year: 2015 ident: C6TC05057C-(cit43)/*[position()=1] publication-title: ACS Appl. Mater. Interfaces doi: 10.1021/acsami.5b03177 – volume: 27 start-page: 2049 year: 2015 ident: C6TC05057C-(cit1)/*[position()=1] publication-title: Adv. Mater. doi: 10.1002/adma.201405788 – volume: 106 start-page: 222902 year: 2015 ident: C6TC05057C-(cit6)/*[position()=1] publication-title: Appl. Phys. Lett. doi: 10.1063/1.4921180 – volume: 6 start-page: 1141 year: 2006 ident: C6TC05057C-(cit4)/*[position()=1] publication-title: Nano Lett. doi: 10.1021/nl0602589 – volume: 6 start-page: 10667 year: 2014 ident: C6TC05057C-(cit40)/*[position()=1] publication-title: ACS Appl. Mater. Interfaces doi: 10.1021/am502412q – volume: 8 start-page: 6101 year: 2016 ident: C6TC05057C-(cit13)/*[position()=1] publication-title: ACS Appl. Mater. Interfaces doi: 10.1021/acsami.6b00388 – volume: 4 start-page: 6948 year: 2012 ident: C6TC05057C-(cit41)/*[position()=1] publication-title: ACS Appl. Mater. Interfaces – volume: 23 start-page: 1587 year: 2011 ident: C6TC05057C-(cit11)/*[position()=1] publication-title: Chem. Mater. doi: 10.1021/cm103441u – volume: 52 start-page: 1 year: 2013 ident: C6TC05057C-(cit19)/*[position()=1] publication-title: Angew. Chem., Int. Ed. doi: 10.1002/anie.201209858 – volume: 39 start-page: 2545 year: 2010 ident: C6TC05057C-(cit23)/*[position()=1] publication-title: Chem. Soc. Rev. doi: 10.1039/b908001p – volume: 26 start-page: 447 year: 2016 ident: C6TC05057C-(cit5)/*[position()=1] publication-title: Adv. Funct. Mater. doi: 10.1002/adfm.201503782 – volume: 52 start-page: 6858 year: 2013 ident: C6TC05057C-(cit29)/*[position()=1] publication-title: Angew. Chem., Int. Ed. doi: 10.1002/anie.201301199 – volume: 5 start-page: 4330 year: 2013 ident: C6TC05057C-(cit16)/*[position()=1] publication-title: Nanoscale doi: 10.1039/c3nr00634d – volume: 19 start-page: 377 year: 1970 ident: C6TC05057C-(cit33)/*[position()=1] publication-title: IEEE Trans. Instrum. Meas. doi: 10.1109/TIM.1970.4313932 – volume: 136 start-page: 578 year: 2014 ident: C6TC05057C-(cit21)/*[position()=1] publication-title: J. Am. Chem. Soc. doi: 10.1021/ja409796b – volume: 18 start-page: 2699 year: 2008 ident: C6TC05057C-(cit28)/*[position()=1] publication-title: Adv. Funct. Mater. doi: 10.1002/adfm.200701456 – volume: 5 start-page: 2131 year: 2005 ident: C6TC05057C-(cit3)/*[position()=1] publication-title: Nano Lett. doi: 10.1021/nl051375r |
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Snippet | Helical conducting polymer nano-structures have attracted increasing attention because of their superior optical and electrical activities, lightweight, and... |
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SubjectTerms | Aircraft Conducting polymers Lightweight Nanostructure Networks Polypyrroles Synthesis Weight reduction |
Title | Chiral induced synthesis of helical polypyrrole (PPy) nano-structures: a lightweight and high-performance material against electromagnetic pollution |
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