Herein, a novel conducting polymer complex PEDOT:CF SO PSS [denoted as S-PEDOT:CF SO PSS , where PEDOT is poly(3,4-ethylenedioxythiophene) and PSS is poly(styrene sulfonate)], is fabricated with the assistance of zinc di[bis(trifluoromenthylsulfonyl) imide][Zn(TFSI) ] (CFE). The introduction of CF SO group is expected to bring better stability of PEDOT:CF SO than PEDOT:PSS due to its strong Coulomb force. Electrochemical measurement shows that a high specific capacitance of 194 F cm was achieved from the novel complex S-PEDOT:CF SO PSS , the highest value reported so far. An all-solid-state supercapacitor assembly with a structure of S-PEDOT:CF SO PSS /H SO :polyvinyl alcohol (PVA)/S-PEDOT:CF SO PSS shows a record specific capacitance of 70.9 F cm and a maximum energy density of 6.02 mWh cm at a power density of 397 mW cm . This supercapacitor device demonstrates excellent electrochemical stability with a capacitance retention rate of 98 % after 10 000 cycles and extreme air stability of 96 % capacitance retention rate after 10 000 cycles, even if the device is exposed to air over 2880 h, much better than that of PEDOT:PSS based supercapacitors. Excellent capacitance can be achieved from PEDOT:CF SO PSS electrode under electrolyte-free conditions. This work provides a novel method for high performance stable supercapacitors and may pave the way for the commercialization of PEDOT based supercapacitors.
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http://dx.doi.org/10.1002/cssc.202202208 | DOI Listing |
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