Engineering non-precious transition metal (TM)-based electrocatalysts to simultaneously achieve an optimal intrinsic activity, high density of active sites, and rapid mass transfer ability for the oxygen reduction reaction (ORR) remains a significant challenge. To address this challenge, a hybrid composite consisting of Fex Co alloy nanoparticles uniformly implanted into hierarchically ordered macro-/meso-/microporous N-doped carbon polyhedra (HOMNCP) is rationally designed. The combined results of experimental and theoretical investigations indicate that the alloying of Co enables a favorable electronic structure for the formation of the *OH intermediate, while the periodically trimodal-porous structured carbon matrix structure not only pr...
In this study, we present microporous carbon (MPC), hollow microporous carbon (HMC) and hierarchical...
The development of highly efficient and stable oxygen reduction electrocatalysts and revealing their...
Fundamental understanding of fabricating promoted bi-functional electrocatalyst to achieve fast char...
Currently, it is critical but a tricky point to develop economical, high-efficiency, and durable non...
Currently, it is critical but a tricky point to develop economical, high-efficiency, and durable non...
Abstract Rational design of bifunctional efficient electrocatalysts for both oxygen reduction (ORR) ...
© 2021 Wiley-VCH GmbHThe design of active sites plays an important role in developing highly active ...
Efficient bifunctional electrocatalysts for oxygen reduction reaction (ORR) and oxygen evolution rea...
Transition metal-doped carbon catalysts are expected to replace noble metal catalysts for the oxygen...
Developing low cost and efficient electrocatalysts for oxygen reduction reaction (ORR) is largely be...
Abstract Developing high-performance and low-cost electrocatalysts is key to achieve the clean-energ...
We herein propose a dual ligand coordination strategy for deriving puissant non-noble metal electroc...
Heteroatom-doped carbon-based transition-metal single-atom catalysts (SACs) are promising electrocat...
We herein propose a dual ligand coordination strategy for deriving puissant non-noble metal electroc...
Although the carbon-supported single-atom (SA) electrocatalysts (SAECs) have emerged as a new form o...
In this study, we present microporous carbon (MPC), hollow microporous carbon (HMC) and hierarchical...
The development of highly efficient and stable oxygen reduction electrocatalysts and revealing their...
Fundamental understanding of fabricating promoted bi-functional electrocatalyst to achieve fast char...
Currently, it is critical but a tricky point to develop economical, high-efficiency, and durable non...
Currently, it is critical but a tricky point to develop economical, high-efficiency, and durable non...
Abstract Rational design of bifunctional efficient electrocatalysts for both oxygen reduction (ORR) ...
© 2021 Wiley-VCH GmbHThe design of active sites plays an important role in developing highly active ...
Efficient bifunctional electrocatalysts for oxygen reduction reaction (ORR) and oxygen evolution rea...
Transition metal-doped carbon catalysts are expected to replace noble metal catalysts for the oxygen...
Developing low cost and efficient electrocatalysts for oxygen reduction reaction (ORR) is largely be...
Abstract Developing high-performance and low-cost electrocatalysts is key to achieve the clean-energ...
We herein propose a dual ligand coordination strategy for deriving puissant non-noble metal electroc...
Heteroatom-doped carbon-based transition-metal single-atom catalysts (SACs) are promising electrocat...
We herein propose a dual ligand coordination strategy for deriving puissant non-noble metal electroc...
Although the carbon-supported single-atom (SA) electrocatalysts (SAECs) have emerged as a new form o...
In this study, we present microporous carbon (MPC), hollow microporous carbon (HMC) and hierarchical...
The development of highly efficient and stable oxygen reduction electrocatalysts and revealing their...
Fundamental understanding of fabricating promoted bi-functional electrocatalyst to achieve fast char...