<p>We report here, the microwave-assisted synthesis of the copolymer viz poly(aniline-co-indole) (PAI) nanocomposite, and subsequent incorporation of nitrogen-doped carbon dots on the polymer. The resulting polymer nanocomposite exhibited a large specific capacitance of 670.23&#xa0;F&#xa0;g<sup>−1</sup> at a current density of 0.50&#xa0;A&#xa0;g<sup>−1</sup> in conjunction with excellent cycling stability of 94% capacitance retention after 1000&#xa0;cycles at 0.5&#xa0;A&#xa0;g&#xa0;<sup>−1</sup>. In vitro cytotoxicity evaluations for the copolymer and the nanocomposite demonstrated remarkable biocompatibility. The excellent electrochemical performance combined with good biocompatibility makes it a potential alternative to traditional supercapacitors.</p> Graphical abstract <p></p>

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Microwave-assisted synthesis of poly (aniline-co-indole)/N-doped carbon dots nanocomposite as electrode materials for supercapacitor applications

  • Dona Mary Sam,
  • K. S. Darshini,
  • T. Mary Vergheese,
  • N. L. Mary

摘要

We report here, the microwave-assisted synthesis of the copolymer viz poly(aniline-co-indole) (PAI) nanocomposite, and subsequent incorporation of nitrogen-doped carbon dots on the polymer. The resulting polymer nanocomposite exhibited a large specific capacitance of 670.23 F g−1 at a current density of 0.50 A g−1 in conjunction with excellent cycling stability of 94% capacitance retention after 1000 cycles at 0.5 A g −1. In vitro cytotoxicity evaluations for the copolymer and the nanocomposite demonstrated remarkable biocompatibility. The excellent electrochemical performance combined with good biocompatibility makes it a potential alternative to traditional supercapacitors.

Graphical abstract