An Electrocatalyst for a Hydrogen Evolution Reaction in an Alkaline Medium: Three‐Dimensional Graphene Supported CeO2 Hollow Microspheres. Issue 35 (26th August 2018)
- Record Type:
- Journal Article
- Title:
- An Electrocatalyst for a Hydrogen Evolution Reaction in an Alkaline Medium: Three‐Dimensional Graphene Supported CeO2 Hollow Microspheres. Issue 35 (26th August 2018)
- Main Title:
- An Electrocatalyst for a Hydrogen Evolution Reaction in an Alkaline Medium: Three‐Dimensional Graphene Supported CeO2 Hollow Microspheres
- Authors:
- Liu, Miaomiao
Ji, Zhenyuan
Shen, Xiaoping
Zhou, Hu
Zhu, Jun
Xie, Xulan
Song, Chunsen
Miao, Xuli
Kong, Lirong
Zhu, Guoxing - Abstract:
- Abstract : Transition metal oxides (TMO) are promising candidates for low‐cost and high‐efficiency catalysts for the hydrogen evolution reaction (HER). However, the low conductivity and severe agglomeration of catalyst particles hinder their practical application. Herein, we report an effective HER electrocatalyst of 3D‐rGO‐CeO2 with three‐dimensional reduced graphene oxide (3D‐rGO) decorated with CeO2 hollow microspheres through a hydrothermal self‐assembly approach. It is shown that the CeO2 hollow microspheres with an average size of ca. 680 nm are uniformly encapsulated within the porous structure of 3D‐rGO. Compared with bare CeO2 hollow microspheres, the 3D‐rGO‐CeO2 composite exhibits remarkably enhanced electrocatalytic activity for HER with a relatively low onset overpotential of 192 mV, a smaller overpotential of 0.34 V at the current density of 10 mA cm –2, and a modest Tafel slope of 112.8 mV decade –1 in a 1m KOH solution. The enhanced performance of 3D‐rGO‐CeO2 can be ascribed to the introduction of 3D rGO in the composite, which provides a highly conductive network for rapid charge‐carrier transmission, and rich porous structures for the easy access of the electrolyte to the catalyst during the HER process. Abstract : The 3D‐rGO‐CeO2 composite based on three‐dimensional rGO and CeO2 hollow microspheres was successfully synthesized by a hydrothermal self‐assembly approach, which showed an enhanced electrocatalytic performance for a hydrogen evolution reaction inAbstract : Transition metal oxides (TMO) are promising candidates for low‐cost and high‐efficiency catalysts for the hydrogen evolution reaction (HER). However, the low conductivity and severe agglomeration of catalyst particles hinder their practical application. Herein, we report an effective HER electrocatalyst of 3D‐rGO‐CeO2 with three‐dimensional reduced graphene oxide (3D‐rGO) decorated with CeO2 hollow microspheres through a hydrothermal self‐assembly approach. It is shown that the CeO2 hollow microspheres with an average size of ca. 680 nm are uniformly encapsulated within the porous structure of 3D‐rGO. Compared with bare CeO2 hollow microspheres, the 3D‐rGO‐CeO2 composite exhibits remarkably enhanced electrocatalytic activity for HER with a relatively low onset overpotential of 192 mV, a smaller overpotential of 0.34 V at the current density of 10 mA cm –2, and a modest Tafel slope of 112.8 mV decade –1 in a 1m KOH solution. The enhanced performance of 3D‐rGO‐CeO2 can be ascribed to the introduction of 3D rGO in the composite, which provides a highly conductive network for rapid charge‐carrier transmission, and rich porous structures for the easy access of the electrolyte to the catalyst during the HER process. Abstract : The 3D‐rGO‐CeO2 composite based on three‐dimensional rGO and CeO2 hollow microspheres was successfully synthesized by a hydrothermal self‐assembly approach, which showed an enhanced electrocatalytic performance for a hydrogen evolution reaction in an alkaline medium. … (more)
- Is Part Of:
- European journal of inorganic chemistry. Issue 35(2018)
- Journal:
- European journal of inorganic chemistry
- Issue:
- Issue 35(2018)
- Issue Display:
- Volume 35, Issue 35 (2018)
- Year:
- 2018
- Volume:
- 35
- Issue:
- 35
- Issue Sort Value:
- 2018-0035-0035-0000
- Page Start:
- 3952
- Page End:
- 3959
- Publication Date:
- 2018-08-26
- Subjects:
- Graphene -- CeO2 hollow microspheres -- Composites -- Electrocatalysts -- Hydrogen evolution reaction -- Cerium -- Cyclic voltammetry
Chemistry, Inorganic -- Periodicals
Organometallic chemistry -- Periodicals
Bioinorganic chemistry -- Periodicals
Solid state chemistry -- Periodicals
546 - Journal URLs:
- http://onlinelibrary.wiley.com/ ↗
- DOI:
- 10.1002/ejic.201800757 ↗
- Languages:
- English
- ISSNs:
- 1434-1948
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 3829.730450
British Library DSC - BLDSS-3PM
British Library STI - ELD Digital store - Ingest File:
- 7738.xml