Highly efficient and stable bifunctional electrocatalysts for oxygen reduction and evolution are essential for aqueous rechargeable Zn-air batteries, which require highly active sites as well as delicate structural design for increasing effective active sites and facilitating mass/electron transfer. Herein, a scalable and facile self-catalyzed growth strategy is developed to integrate highly active Co-N-C sites with 3D brush-like nanostructure, achieving Co-N-C nanobrushes with Co,N-codoped carbon nanotube branches grown on Co,N-codoped nanoparticle assembled nanowire backbones. Systematic investigations suggest that nanobrushes deliver significantly improved electrocatalytic activity compared with nanowire or nanotube counterparts and the ...
Rational design of low-cost, highly electrocatalytic activity, and stable bifunctional electrocataly...
Metal N-doped carbons (M–N–C) and specifically cobalt-based N-doped carbons (Co–N–C) have attracted ...
The exploration of high-efficiency and inexpensive electrocatalysts for oxygen reduction reaction (O...
Minimizing the particle size of transition metals and constructing heteroatom-co-doped carbon with a...
Minimizing the particle size of transition metals and constructing heteroatom-co-doped carbon with a...
Minimizing the particle size of transition metals and constructing heteroatom-co-doped carbon with a...
Rational synthesis of cost-effectiveness, ultra-stable and high-efficiency bifunctional oxygen catal...
In this work, we demonstrate a "three birds one stone" strategy for preparing 1D N-doped p...
© 2021 Wiley-VCH GmbHThe design of active sites plays an important role in developing highly active ...
Developing flexible, efficient, and cost-effective electrocatalysts for the oxygen reduction reactio...
Developing economic and efficient non-noble-metal electrocatalysts toward oxygen reduction reaction ...
Developing low cost and efficient electrocatalysts for oxygen reduction reaction (ORR) is largely be...
Abstract The development of an air electrode that is flexible in physical property and highly active...
With the current rapid growth of commercial applications for flexible and wearable optoelectronic de...
Rational design of low-cost, highly electrocatalytic activity, and stable bifunctional electrocataly...
Rational design of low-cost, highly electrocatalytic activity, and stable bifunctional electrocataly...
Metal N-doped carbons (M–N–C) and specifically cobalt-based N-doped carbons (Co–N–C) have attracted ...
The exploration of high-efficiency and inexpensive electrocatalysts for oxygen reduction reaction (O...
Minimizing the particle size of transition metals and constructing heteroatom-co-doped carbon with a...
Minimizing the particle size of transition metals and constructing heteroatom-co-doped carbon with a...
Minimizing the particle size of transition metals and constructing heteroatom-co-doped carbon with a...
Rational synthesis of cost-effectiveness, ultra-stable and high-efficiency bifunctional oxygen catal...
In this work, we demonstrate a "three birds one stone" strategy for preparing 1D N-doped p...
© 2021 Wiley-VCH GmbHThe design of active sites plays an important role in developing highly active ...
Developing flexible, efficient, and cost-effective electrocatalysts for the oxygen reduction reactio...
Developing economic and efficient non-noble-metal electrocatalysts toward oxygen reduction reaction ...
Developing low cost and efficient electrocatalysts for oxygen reduction reaction (ORR) is largely be...
Abstract The development of an air electrode that is flexible in physical property and highly active...
With the current rapid growth of commercial applications for flexible and wearable optoelectronic de...
Rational design of low-cost, highly electrocatalytic activity, and stable bifunctional electrocataly...
Rational design of low-cost, highly electrocatalytic activity, and stable bifunctional electrocataly...
Metal N-doped carbons (M–N–C) and specifically cobalt-based N-doped carbons (Co–N–C) have attracted ...
The exploration of high-efficiency and inexpensive electrocatalysts for oxygen reduction reaction (O...