Matches in SemOpenAlex for { <https://semopenalex.org/work/W3115441463> ?p ?o ?g. }
- W3115441463 endingPage "69" @default.
- W3115441463 startingPage "62" @default.
- W3115441463 abstract "Electrochemically active redox mediators have been widely investigated in energy conversion/storage system to improve overall catalytic activities and energy storing ability by inducing favorable surface redox reactions. However, the enhancement of electrochemical activity from the utilization of redox mediators (RMs) is only confirmed through theoretical computation and laboratory-scale experiment. The use of RMs for practical, wearable, and flexible applications has been scarcely researched. Herein, for the first time, a wearable fiber-based flexible energy storage system (f-FESS) with hydroquinone (HQ) composites as a catalytically active RM is introduced to demonstrate its energy-storing roles. The as-prepared f-FESS-HQ shows the superior electrochemical performance, such as the improved energy storage ability (211.16 F L−1 and 29.3 mWh L−1) and long-term cyclability with a capacitance retention of 95.1% over 5000 cycles. Furthermore, the f-FESS-HQ can well maintain its original electrochemical properties under harsh mechanical stress (bending, knotting, and weaving conditions) as well as humid conditions in water and detergent solutions. Thus, the strategical use of electrochemically active RMs can provide the advanced solution for future wearable energy storage system." @default.
- W3115441463 created "2021-01-05" @default.
- W3115441463 creator A5020219075 @default.
- W3115441463 creator A5029796268 @default.
- W3115441463 creator A5044638432 @default.
- W3115441463 creator A5053492197 @default.
- W3115441463 creator A5055241203 @default.
- W3115441463 creator A5065907583 @default.
- W3115441463 creator A5071614860 @default.
- W3115441463 creator A5080748158 @default.
- W3115441463 creator A5090527788 @default.
- W3115441463 date "2021-04-01" @default.
- W3115441463 modified "2023-10-13" @default.
- W3115441463 title "Electrochemically active hydroquinone-based redox mediator for flexible energy storage system with improved charge storing ability" @default.
- W3115441463 cites W1968709123 @default.
- W3115441463 cites W1972909711 @default.
- W3115441463 cites W1981658657 @default.
- W3115441463 cites W1997859166 @default.
- W3115441463 cites W2003014885 @default.
- W3115441463 cites W2003506253 @default.
- W3115441463 cites W2015821228 @default.
- W3115441463 cites W2028960225 @default.
- W3115441463 cites W2033809286 @default.
- W3115441463 cites W2040302245 @default.
- W3115441463 cites W2053815301 @default.
- W3115441463 cites W2067385598 @default.
- W3115441463 cites W2071595381 @default.
- W3115441463 cites W2076286351 @default.
- W3115441463 cites W2089904426 @default.
- W3115441463 cites W2094689891 @default.
- W3115441463 cites W2097414483 @default.
- W3115441463 cites W2106222858 @default.
- W3115441463 cites W2115421428 @default.
- W3115441463 cites W2130412143 @default.
- W3115441463 cites W2150266630 @default.
- W3115441463 cites W2150852680 @default.
- W3115441463 cites W2157808906 @default.
- W3115441463 cites W2168412473 @default.
- W3115441463 cites W2338753339 @default.
- W3115441463 cites W2514643291 @default.
- W3115441463 cites W2552339004 @default.
- W3115441463 cites W2592487683 @default.
- W3115441463 cites W2624856320 @default.
- W3115441463 cites W2767369305 @default.
- W3115441463 cites W2772676787 @default.
- W3115441463 cites W2802813137 @default.
- W3115441463 cites W2803592808 @default.
- W3115441463 cites W2808189499 @default.
- W3115441463 cites W2889789069 @default.
- W3115441463 cites W2890060755 @default.
- W3115441463 cites W2901656018 @default.
- W3115441463 cites W2908685459 @default.
- W3115441463 cites W2937175219 @default.
- W3115441463 cites W2980937046 @default.
- W3115441463 cites W2999359816 @default.
- W3115441463 cites W3000636728 @default.
- W3115441463 cites W3003366901 @default.
- W3115441463 cites W3007339287 @default.
- W3115441463 cites W3041381476 @default.
- W3115441463 cites W3046334138 @default.
- W3115441463 cites W3046983746 @default.
- W3115441463 cites W3048198361 @default.
- W3115441463 cites W4295067868 @default.
- W3115441463 doi "https://doi.org/10.1016/j.jcis.2020.12.074" @default.
- W3115441463 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/33388587" @default.
- W3115441463 hasPublicationYear "2021" @default.
- W3115441463 type Work @default.
- W3115441463 sameAs 3115441463 @default.
- W3115441463 citedByCount "10" @default.
- W3115441463 countsByYear W31154414632021 @default.
- W3115441463 countsByYear W31154414632022 @default.
- W3115441463 countsByYear W31154414632023 @default.
- W3115441463 crossrefType "journal-article" @default.
- W3115441463 hasAuthorship W3115441463A5020219075 @default.
- W3115441463 hasAuthorship W3115441463A5029796268 @default.
- W3115441463 hasAuthorship W3115441463A5044638432 @default.
- W3115441463 hasAuthorship W3115441463A5053492197 @default.
- W3115441463 hasAuthorship W3115441463A5055241203 @default.
- W3115441463 hasAuthorship W3115441463A5065907583 @default.
- W3115441463 hasAuthorship W3115441463A5071614860 @default.
- W3115441463 hasAuthorship W3115441463A5080748158 @default.
- W3115441463 hasAuthorship W3115441463A5090527788 @default.
- W3115441463 hasConcept C121332964 @default.
- W3115441463 hasConcept C127413603 @default.
- W3115441463 hasConcept C147789679 @default.
- W3115441463 hasConcept C149635348 @default.
- W3115441463 hasConcept C150594956 @default.
- W3115441463 hasConcept C163258240 @default.
- W3115441463 hasConcept C171250308 @default.
- W3115441463 hasConcept C17525397 @default.
- W3115441463 hasConcept C178790620 @default.
- W3115441463 hasConcept C185592680 @default.
- W3115441463 hasConcept C191897082 @default.
- W3115441463 hasConcept C192562407 @default.
- W3115441463 hasConcept C2777550763 @default.
- W3115441463 hasConcept C30066665 @default.
- W3115441463 hasConcept C41008148 @default.
- W3115441463 hasConcept C42360764 @default.