Tuning electronic structure and composition of FeNi nanoalloys for enhanced oxygen evolution electrocatalysis via a general synthesis strategy
Developing low-cost and efficient oxygen evolution electrocatalysts is key to decarbonization. A facile, surfactant-free, and gram-level biomass-assisted fast heating and cooling synthesis method is reported for synthesizing a series of carbon-encapsulated dense and uniform FeNi nanoalloys with a si...
Main Authors: | Wang, Yong, Nong, Wei, Gong, Na, Salim, Teddy, Luo, Mingchuan, Tan, Teck Leong, Hippalgaonkar, Kedar, Liu, Zheng, Huang, Yizhong |
---|---|
Andre forfattere: | School of Materials Science and Engineering |
Format: | Journal Article |
Sprog: | English |
Udgivet: |
2022
|
Fag: | |
Online adgang: | https://hdl.handle.net/10356/163405 |
Lignende værker
-
Zingiber officinale-Mediated biosynthesis of bimetallic Gold/Silver (BAu/Ag) nanoalloys; an insight into antiviral and anticancer activities
af: Khalid S. Alshallash, et al.
Udgivet: (2024-08-01) -
Investigation of the use of cobalt and nickel based nanoalloys as cement mortar additives
af: Emre Karaduman, et al.
Udgivet: (2024-01-01) -
Tuning the Electronic Property of Reconstructed Atomic Ni‐CuO Cluster Supported on N/O‐C for Electrocatalytic Oxygen Evolution
af: Xinran Li, et al.
Udgivet: (2024-06-01) -
PdRu bimetallic nanoalloys with improved photothermal effect for amplified ROS-mediated tumor therapy
af: Yujia Liang, et al.
Udgivet: (2025-01-01) -
Composition and structure engineering of FeNi-based alloys for efficient electrocatalysis
af: Wang, Yong
Udgivet: (2023)