TY - JOUR
T1 - A mini-review of noble-metal-free electrocatalysts for overall water splitting in non-alkaline electrolytes
AU - Yu, Jie
AU - Dai, Yawen
AU - He, Qijiao
AU - Zhao, Dongqi
AU - Shao, Zongping
AU - Ni, Meng
N1 - Publisher Copyright:
© 2021 The Authors
PY - 2021/5
Y1 - 2021/5
N2 - Development of noble-metal-free materials with remarkable electrocatalytic water-splitting performance in acidic or neutral media has sparked considerable attention in recent years. Herein, we review the latest research on design and fabrication of precious-metal-free catalytic materials for overall water electrolysis in non-alkaline environment, especially highlighting several optimizing approaches to enhance the catalytic behavior and to realize effective bifunctional electrocatalysts. All these involved noble-metal-free electrocatalysts are classified into transition-metal oxides (TMOs), transition-metal nitrides (TMNs), transition-metal carbides (TMCs), transition-metal phosphides (TMPs), transition-metal chalcogenides, metal complexes, and metal-free carbons, as shown in the main part. Besides, the paper also offers an introduction of the fundamental electrochemistry of water splitting before entering the subject, as well as a prospective discussion on mechanism understanding, novel catalysts fabrication, and standardized performance measurements/evaluation in the last section.
AB - Development of noble-metal-free materials with remarkable electrocatalytic water-splitting performance in acidic or neutral media has sparked considerable attention in recent years. Herein, we review the latest research on design and fabrication of precious-metal-free catalytic materials for overall water electrolysis in non-alkaline environment, especially highlighting several optimizing approaches to enhance the catalytic behavior and to realize effective bifunctional electrocatalysts. All these involved noble-metal-free electrocatalysts are classified into transition-metal oxides (TMOs), transition-metal nitrides (TMNs), transition-metal carbides (TMCs), transition-metal phosphides (TMPs), transition-metal chalcogenides, metal complexes, and metal-free carbons, as shown in the main part. Besides, the paper also offers an introduction of the fundamental electrochemistry of water splitting before entering the subject, as well as a prospective discussion on mechanism understanding, novel catalysts fabrication, and standardized performance measurements/evaluation in the last section.
KW - Bifunctional catalytic electrode
KW - Hydrogen evolution reaction
KW - Noble-metal-free electrocatalyst
KW - Non-alkaline electrolyte
KW - Overall water splitting
KW - Oxygen evolution reaction
UR - http://www.scopus.com/inward/record.url?scp=85141941028&partnerID=8YFLogxK
U2 - 10.1016/j.matre.2021.100024
DO - 10.1016/j.matre.2021.100024
M3 - 文章
AN - SCOPUS:85141941028
SN - 2666-9358
VL - 1
JO - Materials Reports: Energy
JF - Materials Reports: Energy
IS - 2
M1 - 100024
ER -