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[21]Benzodithiophenedione and diketopyrrolopyrrole based conjugated copolymers for organic thin-film transistors by structure modulation, Dyes and Pigments, 2016, 126, 20-28.
[22]A new thieno-isoindigo derivative-based D–A polymer with very low bandgap for high-performance ambipolar organic thin-film transistors, Polymer Chemistry, 2015, 6, 3970-3978.
[23]A phthalimide-and diketopyrrolopyrrole-based A1–π–A2 conjugated polymer for high-performance organic thin-film transistors, Polymer Chemistry, 2015, 6, 418-425.
[24]Bis (2-oxoindolin-3-ylidene)-benzodifuran-dione-based D–A polymers for high-performance n-channel transistors, Polymer Chemistry, 2015, 13, 2531-2540.
[25]Benzodithiophene and benzotrithiophene-based conjugated polymers for organic thin-film transistors application: Impact of conjugated-and acyl-side chain, Organic Electronics, 2014, 15, 2608-2615.
[26]A bis (2-oxoindolin-3-ylidene)-benzodifuran-dione containing copolymer for high-mobility ambipolar transistors, Chemical Communications, 2014, 50, 3180-3183.
[27]Benzotrithiophene and benzodithiophene-based polymers for efficient polymer solar cells with high open-circuit voltage, Polymer Chemistry, 2013, 4, 3390-3397.
[28]Synthesis and characterization of thieno [3, 4-c] pyrrole-4, 6-dione and pyrrolo [3, 4-c] pyrrole-1, 4-dione-based random polymers for photovoltaic applications, Polymer, 2012, 53, 4407-4412.
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