| Literature DB >> 28363579 |
Makara Lay1, M Àngels Pèlach2, Neus Pellicer2, Joaquim A Tarrés2, Kim Ngun Bun3, Fabiola Vilaseca4.
Abstract
In the current work, flexible, lightweight, and strong conductive nanopapers based on cellulose nanofibers (CNFs) with poly(3,4-ethylenedioxythiophene):polystyrene sulfonate (PEDOT:PSS) and/or polypyrrole (PPy) were prepared by following a mixing and in situ chemical polymerization method. A successful homogeneous coating of PEDOT:PSS on cellulose nanofibers occurred by means hydrogen-bonding interactions between the hydroxyl functionalized CNF and the electronically charged PEDOT:PSS, as shown by FTIR spectra. The electrical conductivity and the specific capacitance of CNF-PEDOT:PSS nanopapers were 2.58Scm-1 and 6.21Fg-1, respectively. Further coating of PPy produced a substantial improvement on the electrical conductivity (10.55Scm-1) and the specific capacitance (315.5Fg-1) of the resulting CNF-PEDOT:PSS-PPy nanopaper. A synergistic phenomenon between both conductive polymers supported the high electrical conductivity and specific capacitance of the ternary formulation. Moreover, CNF-PEDOT:PSS-PPy nanopaper showed higher mechanical properties and it was more flexible than the nanopaper containing only polypyrrole conducting polymer (CNF-PPy). It is concluded that the good mechanical, electrical and electrochemical properties of the ternary formulation can apply for smart nanopaper in flexible electronics and energy storage devices.Entities:
Keywords: Cellulose nanofibers; Electrical conductivity; Flexible electronics; PEDOT:PSS; Polypyrrole; Specific capacitance
Year: 2017 PMID: 28363579 DOI: 10.1016/j.carbpol.2017.02.043
Source DB: PubMed Journal: Carbohydr Polym ISSN: 0144-8617 Impact factor: 9.381