Charge transport of novel blue dibenzothiophene phenylenediamine copolymer
We report the charge transport characteristics of dibenzothiophene phenylenediamine copolymer (DBT-PD). Fig. 1 shows DBT-PD (Mw = 77,000) which is a 50:50 molar ratio random copolymer consisting of DBT and a hole-transporting phenylenediamine group with tertiarybutyl substituents. The quoted ratio i...
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my.uniten.dspace-305982024-04-18T10:29:58Z Charge transport of novel blue dibenzothiophene phenylenediamine copolymer Kar Y.B. Abdullah S.F. Chou Y.T. Kok H.C. 26649255900 14319069500 37012410100 36994481200 Copolymers Nanotechnology Optoelectronic devices Transport properties Aryl amines Charge transport Dibenzothiophenes Hole injection Hole transporting Ionisation potential Molar ratio Phenylenediamines Random copolymer Side reactions Copolymerization We report the charge transport characteristics of dibenzothiophene phenylenediamine copolymer (DBT-PD). Fig. 1 shows DBT-PD (Mw = 77,000) which is a 50:50 molar ratio random copolymer consisting of DBT and a hole-transporting phenylenediamine group with tertiarybutyl substituents. The quoted ratio is of the starting monomers introduced into the reaction and may change slightly after polymerization due to differences in reactivity, possible side reactions and so on. Arylamine moieties of the type used here are extensively utilised in LED and photodetector materials due to their very good hole transport properties, low ionisation potentials (facilitating hole injection) and overall stability to oxidation [1]. They have been widely used in xerographic applications for many years. �2010 IEEE. Final 2023-12-29T07:50:03Z 2023-12-29T07:50:03Z 2010 Conference Paper 10.1109/ESCINANO.2010.5701066 2-s2.0-79951800760 https://www.scopus.com/inward/record.uri?eid=2-s2.0-79951800760&doi=10.1109%2fESCINANO.2010.5701066&partnerID=40&md5=def5f95d6e6afafab8eabb8f24098988 https://irepository.uniten.edu.my/handle/123456789/30598 5701066 Scopus |
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Copolymers Nanotechnology Optoelectronic devices Transport properties Aryl amines Charge transport Dibenzothiophenes Hole injection Hole transporting Ionisation potential Molar ratio Phenylenediamines Random copolymer Side reactions Copolymerization |
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Copolymers Nanotechnology Optoelectronic devices Transport properties Aryl amines Charge transport Dibenzothiophenes Hole injection Hole transporting Ionisation potential Molar ratio Phenylenediamines Random copolymer Side reactions Copolymerization Kar Y.B. Abdullah S.F. Chou Y.T. Kok H.C. Charge transport of novel blue dibenzothiophene phenylenediamine copolymer |
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We report the charge transport characteristics of dibenzothiophene phenylenediamine copolymer (DBT-PD). Fig. 1 shows DBT-PD (Mw = 77,000) which is a 50:50 molar ratio random copolymer consisting of DBT and a hole-transporting phenylenediamine group with tertiarybutyl substituents. The quoted ratio is of the starting monomers introduced into the reaction and may change slightly after polymerization due to differences in reactivity, possible side reactions and so on. Arylamine moieties of the type used here are extensively utilised in LED and photodetector materials due to their very good hole transport properties, low ionisation potentials (facilitating hole injection) and overall stability to oxidation [1]. They have been widely used in xerographic applications for many years. �2010 IEEE. |
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26649255900 |
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26649255900 Kar Y.B. Abdullah S.F. Chou Y.T. Kok H.C. |
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Conference Paper |
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Kar Y.B. Abdullah S.F. Chou Y.T. Kok H.C. |
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Kar Y.B. |
title |
Charge transport of novel blue dibenzothiophene phenylenediamine copolymer |
title_short |
Charge transport of novel blue dibenzothiophene phenylenediamine copolymer |
title_full |
Charge transport of novel blue dibenzothiophene phenylenediamine copolymer |
title_fullStr |
Charge transport of novel blue dibenzothiophene phenylenediamine copolymer |
title_full_unstemmed |
Charge transport of novel blue dibenzothiophene phenylenediamine copolymer |
title_sort |
charge transport of novel blue dibenzothiophene phenylenediamine copolymer |
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2023 |
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1806425644476661760 |