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Microwave-assisted fabrication of high-performance supercapacitors based on electrodes composed of cobalt oxide decorated with reduced graphene oxide and carbon dots
•Microwave-assisted cobalt oxide (Co3O4) based nanocomposite electrodes doped with carbon dots and reduced graphene oxide.•The carbon dot containing electrodes enables the highest specific capacitance of 936 Fg−1 at 0.5 Ag−1 current density.•The cyclic stability of the electrodes is reasonably high,...
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Published in: | Journal of energy storage 2022-05, Vol.49, p.104103, Article 104103 |
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container_title | Journal of energy storage |
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creator | Yetiman, Sevda Peçenek, Hilal Dokan, Fatma Kılıç Onses, M. Serdar Yılmaz, Erkan Sahmetlioglu, Ertugrul |
description | •Microwave-assisted cobalt oxide (Co3O4) based nanocomposite electrodes doped with carbon dots and reduced graphene oxide.•The carbon dot containing electrodes enables the highest specific capacitance of 936 Fg−1 at 0.5 Ag−1 current density.•The cyclic stability of the electrodes is reasonably high, and the electrodes retain 93%, 87%, and 88% of their initial capacitance after 10,000 cycles for Co3O4, Co3O4@RGO, and Co3O4@RGO@CDs.•The optimized Co3O4@RGO@CDs electrodes were used to fabricate a symmetric supercapacitor that exhibits high specific capacitance (126 Fg−1 0.25 Ag−1) and long cycle life (%81 retention after 10,000 cycles).•The fabricated supercapacitor has energy density of 17.5 Wh kg−1 and power density of 2522 W kg−1.
This study presents microwave-assisted preparation of cobalt oxide (Co3O4) based nanocomposite electrodes doped with carbon dots and reduced graphene oxide. The calcination of the precursors at 400 °C for 2 h results in nanocomposites. A three-electrode cell in 2M KOH solution is used for the electrochemical measurements. The carbon dot containing electrodes enables the highest specific capacitance of 936 Fg−1 at 0.5 Ag−1 current density. Specific capacitances of pure Co3O4, and Co3O4@RGO electrodes are 448 Fg−1 and 482 Fg−1 at 0.5 Ag−1, with good rate capability even at 10 Ag−1, respectively. The cyclic stability of the electrodes is reasonably high and the electrodes retain 93%, 87%, and 88% of their initial capacitance after 10,000 cycles for Co3O4, Co3O4@RGO, and Co3O4@RGO@CDs, respectively. The optimized Co3O4@RGO@CDs electrodes were used to fabricate a symmetric supercapacitor that exhibits high specific capacitance (126 Fg−1 0.25 Ag−1) and long cycle life (%81 retention after 10,000 cycles). The fabricated supercapacitor has energy density of 17.5 Wh kg−1 and power density of 2522 W kg−1. The outstanding results demonstrate the promise of carbon dots doped transition metal oxides-based nanoparticles as promising electrodes for supercapacitor applications.
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doi_str_mv | 10.1016/j.est.2022.104103 |
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This study presents microwave-assisted preparation of cobalt oxide (Co3O4) based nanocomposite electrodes doped with carbon dots and reduced graphene oxide. The calcination of the precursors at 400 °C for 2 h results in nanocomposites. A three-electrode cell in 2M KOH solution is used for the electrochemical measurements. The carbon dot containing electrodes enables the highest specific capacitance of 936 Fg−1 at 0.5 Ag−1 current density. Specific capacitances of pure Co3O4, and Co3O4@RGO electrodes are 448 Fg−1 and 482 Fg−1 at 0.5 Ag−1, with good rate capability even at 10 Ag−1, respectively. The cyclic stability of the electrodes is reasonably high and the electrodes retain 93%, 87%, and 88% of their initial capacitance after 10,000 cycles for Co3O4, Co3O4@RGO, and Co3O4@RGO@CDs, respectively. The optimized Co3O4@RGO@CDs electrodes were used to fabricate a symmetric supercapacitor that exhibits high specific capacitance (126 Fg−1 0.25 Ag−1) and long cycle life (%81 retention after 10,000 cycles). The fabricated supercapacitor has energy density of 17.5 Wh kg−1 and power density of 2522 W kg−1. The outstanding results demonstrate the promise of carbon dots doped transition metal oxides-based nanoparticles as promising electrodes for supercapacitor applications.
[Display omitted]</description><identifier>ISSN: 2352-152X</identifier><identifier>EISSN: 2352-1538</identifier><identifier>DOI: 10.1016/j.est.2022.104103</identifier><language>eng</language><publisher>Elsevier Ltd</publisher><subject>Carbon dots ; Electrochemical studies ; Metal oxide ; Microwave irradiation</subject><ispartof>Journal of energy storage, 2022-05, Vol.49, p.104103, Article 104103</ispartof><rights>2022 Elsevier Ltd</rights><lds50>peer_reviewed</lds50><oa>free_for_read</oa><woscitedreferencessubscribed>false</woscitedreferencessubscribed><citedby>FETCH-LOGICAL-c340t-995d491670eaf99632aceb4ac545af0964aa00ce0b82d5e5b1b3179b76a5af813</citedby><cites>FETCH-LOGICAL-c340t-995d491670eaf99632aceb4ac545af0964aa00ce0b82d5e5b1b3179b76a5af813</cites></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>314,780,784,27924,27925</link.rule.ids></links><search><creatorcontrib>Yetiman, Sevda</creatorcontrib><creatorcontrib>Peçenek, Hilal</creatorcontrib><creatorcontrib>Dokan, Fatma Kılıç</creatorcontrib><creatorcontrib>Onses, M. Serdar</creatorcontrib><creatorcontrib>Yılmaz, Erkan</creatorcontrib><creatorcontrib>Sahmetlioglu, Ertugrul</creatorcontrib><title>Microwave-assisted fabrication of high-performance supercapacitors based on electrodes composed of cobalt oxide decorated with reduced graphene oxide and carbon dots</title><title>Journal of energy storage</title><description>•Microwave-assisted cobalt oxide (Co3O4) based nanocomposite electrodes doped with carbon dots and reduced graphene oxide.•The carbon dot containing electrodes enables the highest specific capacitance of 936 Fg−1 at 0.5 Ag−1 current density.•The cyclic stability of the electrodes is reasonably high, and the electrodes retain 93%, 87%, and 88% of their initial capacitance after 10,000 cycles for Co3O4, Co3O4@RGO, and Co3O4@RGO@CDs.•The optimized Co3O4@RGO@CDs electrodes were used to fabricate a symmetric supercapacitor that exhibits high specific capacitance (126 Fg−1 0.25 Ag−1) and long cycle life (%81 retention after 10,000 cycles).•The fabricated supercapacitor has energy density of 17.5 Wh kg−1 and power density of 2522 W kg−1.
This study presents microwave-assisted preparation of cobalt oxide (Co3O4) based nanocomposite electrodes doped with carbon dots and reduced graphene oxide. The calcination of the precursors at 400 °C for 2 h results in nanocomposites. A three-electrode cell in 2M KOH solution is used for the electrochemical measurements. The carbon dot containing electrodes enables the highest specific capacitance of 936 Fg−1 at 0.5 Ag−1 current density. Specific capacitances of pure Co3O4, and Co3O4@RGO electrodes are 448 Fg−1 and 482 Fg−1 at 0.5 Ag−1, with good rate capability even at 10 Ag−1, respectively. The cyclic stability of the electrodes is reasonably high and the electrodes retain 93%, 87%, and 88% of their initial capacitance after 10,000 cycles for Co3O4, Co3O4@RGO, and Co3O4@RGO@CDs, respectively. The optimized Co3O4@RGO@CDs electrodes were used to fabricate a symmetric supercapacitor that exhibits high specific capacitance (126 Fg−1 0.25 Ag−1) and long cycle life (%81 retention after 10,000 cycles). The fabricated supercapacitor has energy density of 17.5 Wh kg−1 and power density of 2522 W kg−1. The outstanding results demonstrate the promise of carbon dots doped transition metal oxides-based nanoparticles as promising electrodes for supercapacitor applications.
[Display omitted]</description><subject>Carbon dots</subject><subject>Electrochemical studies</subject><subject>Metal oxide</subject><subject>Microwave irradiation</subject><issn>2352-152X</issn><issn>2352-1538</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2022</creationdate><recordtype>article</recordtype><recordid>eNp9kM9OAyEQhzdGE5vaB_DGC2wFdtl248k0_ktqvGjijQwwdGnasgHa6gP5nlLbePTE_GC-GfIVxTWjY0ZZc7McY0xjTjnPuWa0OisGvBK8ZKKanv_V_OOyGMW4pDRDgrG2GRTfL04Hv4cdlhCjiwkNsaCC05Cc3xBvSecWXdljsD6sYaORxG1OGnrQLvkQiYKYqdyMK9QpeIORaL_u_e-1zbWCVSL-0xkkBrUPcFizd6kjAc1W57AI0He4wVMXbAzREFQeanyKV8WFhVXE0ekcFu8P92-zp3L--vg8u5uXuqppKttWmLplzYQi2LZtKg4aVQ1a1AIsbZsagFKNVE25ESgUUxWbtGrSQH6fsmpYsOPc7CTGgFb2wa0hfElG5UG1XMqsWh5Uy6PqzNweGcwf2zkMMmqH2ZNxIeuQxrt_6B_7HIuS</recordid><startdate>202205</startdate><enddate>202205</enddate><creator>Yetiman, Sevda</creator><creator>Peçenek, Hilal</creator><creator>Dokan, Fatma Kılıç</creator><creator>Onses, M. Serdar</creator><creator>Yılmaz, Erkan</creator><creator>Sahmetlioglu, Ertugrul</creator><general>Elsevier Ltd</general><scope>AAYXX</scope><scope>CITATION</scope></search><sort><creationdate>202205</creationdate><title>Microwave-assisted fabrication of high-performance supercapacitors based on electrodes composed of cobalt oxide decorated with reduced graphene oxide and carbon dots</title><author>Yetiman, Sevda ; Peçenek, Hilal ; Dokan, Fatma Kılıç ; Onses, M. Serdar ; Yılmaz, Erkan ; Sahmetlioglu, Ertugrul</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c340t-995d491670eaf99632aceb4ac545af0964aa00ce0b82d5e5b1b3179b76a5af813</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2022</creationdate><topic>Carbon dots</topic><topic>Electrochemical studies</topic><topic>Metal oxide</topic><topic>Microwave irradiation</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Yetiman, Sevda</creatorcontrib><creatorcontrib>Peçenek, Hilal</creatorcontrib><creatorcontrib>Dokan, Fatma Kılıç</creatorcontrib><creatorcontrib>Onses, M. Serdar</creatorcontrib><creatorcontrib>Yılmaz, Erkan</creatorcontrib><creatorcontrib>Sahmetlioglu, Ertugrul</creatorcontrib><collection>CrossRef</collection><jtitle>Journal of energy storage</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Yetiman, Sevda</au><au>Peçenek, Hilal</au><au>Dokan, Fatma Kılıç</au><au>Onses, M. Serdar</au><au>Yılmaz, Erkan</au><au>Sahmetlioglu, Ertugrul</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Microwave-assisted fabrication of high-performance supercapacitors based on electrodes composed of cobalt oxide decorated with reduced graphene oxide and carbon dots</atitle><jtitle>Journal of energy storage</jtitle><date>2022-05</date><risdate>2022</risdate><volume>49</volume><spage>104103</spage><pages>104103-</pages><artnum>104103</artnum><issn>2352-152X</issn><eissn>2352-1538</eissn><abstract>•Microwave-assisted cobalt oxide (Co3O4) based nanocomposite electrodes doped with carbon dots and reduced graphene oxide.•The carbon dot containing electrodes enables the highest specific capacitance of 936 Fg−1 at 0.5 Ag−1 current density.•The cyclic stability of the electrodes is reasonably high, and the electrodes retain 93%, 87%, and 88% of their initial capacitance after 10,000 cycles for Co3O4, Co3O4@RGO, and Co3O4@RGO@CDs.•The optimized Co3O4@RGO@CDs electrodes were used to fabricate a symmetric supercapacitor that exhibits high specific capacitance (126 Fg−1 0.25 Ag−1) and long cycle life (%81 retention after 10,000 cycles).•The fabricated supercapacitor has energy density of 17.5 Wh kg−1 and power density of 2522 W kg−1.
This study presents microwave-assisted preparation of cobalt oxide (Co3O4) based nanocomposite electrodes doped with carbon dots and reduced graphene oxide. The calcination of the precursors at 400 °C for 2 h results in nanocomposites. A three-electrode cell in 2M KOH solution is used for the electrochemical measurements. The carbon dot containing electrodes enables the highest specific capacitance of 936 Fg−1 at 0.5 Ag−1 current density. Specific capacitances of pure Co3O4, and Co3O4@RGO electrodes are 448 Fg−1 and 482 Fg−1 at 0.5 Ag−1, with good rate capability even at 10 Ag−1, respectively. The cyclic stability of the electrodes is reasonably high and the electrodes retain 93%, 87%, and 88% of their initial capacitance after 10,000 cycles for Co3O4, Co3O4@RGO, and Co3O4@RGO@CDs, respectively. The optimized Co3O4@RGO@CDs electrodes were used to fabricate a symmetric supercapacitor that exhibits high specific capacitance (126 Fg−1 0.25 Ag−1) and long cycle life (%81 retention after 10,000 cycles). The fabricated supercapacitor has energy density of 17.5 Wh kg−1 and power density of 2522 W kg−1. The outstanding results demonstrate the promise of carbon dots doped transition metal oxides-based nanoparticles as promising electrodes for supercapacitor applications.
[Display omitted]</abstract><pub>Elsevier Ltd</pub><doi>10.1016/j.est.2022.104103</doi><oa>free_for_read</oa></addata></record> |
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subjects | Carbon dots Electrochemical studies Metal oxide Microwave irradiation |
title | Microwave-assisted fabrication of high-performance supercapacitors based on electrodes composed of cobalt oxide decorated with reduced graphene oxide and carbon dots |
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