Self-templating synthesis of porous carbon with phytate salts for supercapacitor application. (January 2023)
- Record Type:
- Journal Article
- Title:
- Self-templating synthesis of porous carbon with phytate salts for supercapacitor application. (January 2023)
- Main Title:
- Self-templating synthesis of porous carbon with phytate salts for supercapacitor application
- Authors:
- Wang, Xin
Wang, Xinyi
Zhou, Xiaofeng
Yang, Xinping
Wu, Xiaozhong
Zhou, Pengfei
Zhou, Jin
Zhuo, Shuping - Abstract:
- Abstract: Zinc phytate was synthesized as a self-sacrificing template to prepare porous carbon for supercapacitor with the starting materials of phytate acid and zinc acetate. The obtained carbon material possesses a hierarchically porous structure with pore size distributed at 1 and 10 nm, contributing to a specific surface area of 1125 m 2 g −1 according to the nitrogen sorption analysis. Moreover, the porous structure can be effectively adjusted by introducing KOH during the preparation procedure of phytate salt, resulting in a significant increase of micropore content. The absence of KOH signal in the X-ray diffraction pattern of carbon precursor and uniform K, Zn distribution in carbon precursor indicate the formation dual-metal phytates and contributing to the micropore for the prepared porous carbon by in-situ K activation instead of KOH activation. With developed microporosity, the specific capacitance can be promoted up to 294 from 195 F g −1 in KOH electrolyte and 247 from 187 F g −1 in H2 SO4 electrolyte. Our findings provide a guide to prepare porous carbon with tunable porosity through a facile self-templating method. Highlights: Phytate salt is synthesized and used as self-template to prepare porous carbon. The porosity is tuned by adding KOH during the preparation of phytate salts. The micropores are generated by in-situ K activation instead of KOH. The micropore surface area increases up to 936 from 307 m 2 g −1 . The specific capacitance reaches up to 294Abstract: Zinc phytate was synthesized as a self-sacrificing template to prepare porous carbon for supercapacitor with the starting materials of phytate acid and zinc acetate. The obtained carbon material possesses a hierarchically porous structure with pore size distributed at 1 and 10 nm, contributing to a specific surface area of 1125 m 2 g −1 according to the nitrogen sorption analysis. Moreover, the porous structure can be effectively adjusted by introducing KOH during the preparation procedure of phytate salt, resulting in a significant increase of micropore content. The absence of KOH signal in the X-ray diffraction pattern of carbon precursor and uniform K, Zn distribution in carbon precursor indicate the formation dual-metal phytates and contributing to the micropore for the prepared porous carbon by in-situ K activation instead of KOH activation. With developed microporosity, the specific capacitance can be promoted up to 294 from 195 F g −1 in KOH electrolyte and 247 from 187 F g −1 in H2 SO4 electrolyte. Our findings provide a guide to prepare porous carbon with tunable porosity through a facile self-templating method. Highlights: Phytate salt is synthesized and used as self-template to prepare porous carbon. The porosity is tuned by adding KOH during the preparation of phytate salts. The micropores are generated by in-situ K activation instead of KOH. The micropore surface area increases up to 936 from 307 m 2 g −1 . The specific capacitance reaches up to 294 from 195 F g −1 in KOH electrolyte. … (more)
- Is Part Of:
- Journal of energy storage. Volume 57(2023)
- Journal:
- Journal of energy storage
- Issue:
- Volume 57(2023)
- Issue Display:
- Volume 57, Issue 2023 (2023)
- Year:
- 2023
- Volume:
- 57
- Issue:
- 2023
- Issue Sort Value:
- 2023-0057-2023-0000
- Page Start:
- Page End:
- Publication Date:
- 2023-01
- Subjects:
- Self-templating method -- Phytate salt -- In-situ activation -- Supercapacitor -- Porous carbon
Energy storage -- Periodicals
Energy storage -- Research -- Periodicals
621.3126 - Journal URLs:
- http://www.sciencedirect.com/science/journal/2352152X ↗
http://www.sciencedirect.com/ ↗ - DOI:
- 10.1016/j.est.2022.106221 ↗
- Languages:
- English
- ISSNs:
- 2352-152X
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - BLDSS-3PM
British Library HMNTS - ELD Digital store - Ingest File:
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