Efficient Flexible All-Solid Supercapacitors with Direct Sputter-Grown Needle-Like Mn/MnO<i><sub>x</sub></i>@Graphite-Foil Electrodes and PPC-Embedded Ionic Electrolytes

Recent critical issues regarding next-generation energy storage systems concern the cost-effective production of lightweight, safe and flexible supercapacitors yielding high performances, such as high energy and power densities as well as a long cycle life. Thus, current research efforts are concent...

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Main Authors: Apurba Ray, Delale Korkut, Bilge Saruhan
Format: Article
Language:English
Published: MDPI AG 2020-09-01
Series:Nanomaterials
Subjects:
Online Access:https://www.mdpi.com/2079-4991/10/9/1768
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author Apurba Ray
Delale Korkut
Bilge Saruhan
author_facet Apurba Ray
Delale Korkut
Bilge Saruhan
author_sort Apurba Ray
collection DOAJ
description Recent critical issues regarding next-generation energy storage systems concern the cost-effective production of lightweight, safe and flexible supercapacitors yielding high performances, such as high energy and power densities as well as a long cycle life. Thus, current research efforts are concentrated on the development of high-performance advance electrode materials with high capacitance and excellent stability and solid electrolytes that confer flexibility and safety features. In this work, emphasis is placed on the binder-free, needle-like nanostructured Mn/MnO<i><sub>x</sub></i> layers grown onto graphite-foil deposited by reactive sputtering technique and to the polymer gel embedded ionic electrolytes, which are to be employed as new flexible pseudocapacitive supercapacitor components. Microstructural, morphological and compositional analysis of the layers has been investigated by X-ray diffractometer (XRD), Field Emission Scanning Electron Microscope (FE–SEM) and X-ray photoelectron spectroscopy (XPS). A flexible lightweight symmetric pouch-cell solid-state supercapacitor device is fabricated by sandwiching a PPC-embedded ionic liquid ethyl-methylimidazolium bis (trifluoromethylsulfonyl) imide (EMIM)(TFSI) polymer gel electrolyte (PGE) between two Mn/MnO<i><sub>x</sub></i>@Graphite-foil electrodes and tested to exhibit promising supercapacitive behaviour with a wide stable electrochemical potential window (up to 2.2 V) and long-cycle stability. This pouch-cell supercapacitor device offers a maximum areal capacitance of 11.71 mF/cm<sup>2</sup>@ 0.03 mA/cm<sup>2</sup> with maximum areal energy density (E<sub>a</sub>) of 7.87 mWh/cm<sup>2</sup> and areal power density (P<sub>a</sub>) of 1099.64 mW/cm<sup>2</sup>, as well as low resistance, flexibility and good cycling stability. This supercapacitor device is also environmentally safe and could be operated under a relatively wide potential window without significant degradation of capacitance performance compared to other reported values. Overall, these rationally designed flexible symmetric all-solid-state supercapacitors signify a new promising and emerging candidate for component integrated storage of renewable energy harvested current.
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spelling doaj.art-039a22e5238d46e1916b39101dc2d4d12023-11-20T12:51:40ZengMDPI AGNanomaterials2079-49912020-09-01109176810.3390/nano10091768Efficient Flexible All-Solid Supercapacitors with Direct Sputter-Grown Needle-Like Mn/MnO<i><sub>x</sub></i>@Graphite-Foil Electrodes and PPC-Embedded Ionic ElectrolytesApurba Ray0Delale Korkut1Bilge Saruhan2Department of High-Temperature and Functional Coatings, Institute of Materials Research, German Aerospace Center (DLR), 51147 Cologne, GermanyDepartment of High-Temperature and Functional Coatings, Institute of Materials Research, German Aerospace Center (DLR), 51147 Cologne, GermanyDepartment of High-Temperature and Functional Coatings, Institute of Materials Research, German Aerospace Center (DLR), 51147 Cologne, GermanyRecent critical issues regarding next-generation energy storage systems concern the cost-effective production of lightweight, safe and flexible supercapacitors yielding high performances, such as high energy and power densities as well as a long cycle life. Thus, current research efforts are concentrated on the development of high-performance advance electrode materials with high capacitance and excellent stability and solid electrolytes that confer flexibility and safety features. In this work, emphasis is placed on the binder-free, needle-like nanostructured Mn/MnO<i><sub>x</sub></i> layers grown onto graphite-foil deposited by reactive sputtering technique and to the polymer gel embedded ionic electrolytes, which are to be employed as new flexible pseudocapacitive supercapacitor components. Microstructural, morphological and compositional analysis of the layers has been investigated by X-ray diffractometer (XRD), Field Emission Scanning Electron Microscope (FE–SEM) and X-ray photoelectron spectroscopy (XPS). A flexible lightweight symmetric pouch-cell solid-state supercapacitor device is fabricated by sandwiching a PPC-embedded ionic liquid ethyl-methylimidazolium bis (trifluoromethylsulfonyl) imide (EMIM)(TFSI) polymer gel electrolyte (PGE) between two Mn/MnO<i><sub>x</sub></i>@Graphite-foil electrodes and tested to exhibit promising supercapacitive behaviour with a wide stable electrochemical potential window (up to 2.2 V) and long-cycle stability. This pouch-cell supercapacitor device offers a maximum areal capacitance of 11.71 mF/cm<sup>2</sup>@ 0.03 mA/cm<sup>2</sup> with maximum areal energy density (E<sub>a</sub>) of 7.87 mWh/cm<sup>2</sup> and areal power density (P<sub>a</sub>) of 1099.64 mW/cm<sup>2</sup>, as well as low resistance, flexibility and good cycling stability. This supercapacitor device is also environmentally safe and could be operated under a relatively wide potential window without significant degradation of capacitance performance compared to other reported values. Overall, these rationally designed flexible symmetric all-solid-state supercapacitors signify a new promising and emerging candidate for component integrated storage of renewable energy harvested current.https://www.mdpi.com/2079-4991/10/9/1768direct-growthflexibleionic liquidMn/MnO<i><sub>x</sub></i>sputter coatingpolymer gel electrolyte
spellingShingle Apurba Ray
Delale Korkut
Bilge Saruhan
Efficient Flexible All-Solid Supercapacitors with Direct Sputter-Grown Needle-Like Mn/MnO<i><sub>x</sub></i>@Graphite-Foil Electrodes and PPC-Embedded Ionic Electrolytes
Nanomaterials
direct-growth
flexible
ionic liquid
Mn/MnO<i><sub>x</sub></i>
sputter coating
polymer gel electrolyte
title Efficient Flexible All-Solid Supercapacitors with Direct Sputter-Grown Needle-Like Mn/MnO<i><sub>x</sub></i>@Graphite-Foil Electrodes and PPC-Embedded Ionic Electrolytes
title_full Efficient Flexible All-Solid Supercapacitors with Direct Sputter-Grown Needle-Like Mn/MnO<i><sub>x</sub></i>@Graphite-Foil Electrodes and PPC-Embedded Ionic Electrolytes
title_fullStr Efficient Flexible All-Solid Supercapacitors with Direct Sputter-Grown Needle-Like Mn/MnO<i><sub>x</sub></i>@Graphite-Foil Electrodes and PPC-Embedded Ionic Electrolytes
title_full_unstemmed Efficient Flexible All-Solid Supercapacitors with Direct Sputter-Grown Needle-Like Mn/MnO<i><sub>x</sub></i>@Graphite-Foil Electrodes and PPC-Embedded Ionic Electrolytes
title_short Efficient Flexible All-Solid Supercapacitors with Direct Sputter-Grown Needle-Like Mn/MnO<i><sub>x</sub></i>@Graphite-Foil Electrodes and PPC-Embedded Ionic Electrolytes
title_sort efficient flexible all solid supercapacitors with direct sputter grown needle like mn mno i sub x sub i graphite foil electrodes and ppc embedded ionic electrolytes
topic direct-growth
flexible
ionic liquid
Mn/MnO<i><sub>x</sub></i>
sputter coating
polymer gel electrolyte
url https://www.mdpi.com/2079-4991/10/9/1768
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AT delalekorkut efficientflexibleallsolidsupercapacitorswithdirectsputtergrownneedlelikemnmnoisubxsubigraphitefoilelectrodesandppcembeddedionicelectrolytes
AT bilgesaruhan efficientflexibleallsolidsupercapacitorswithdirectsputtergrownneedlelikemnmnoisubxsubigraphitefoilelectrodesandppcembeddedionicelectrolytes