Earth‐abundant transition‐metal‐based catalysts are attractive for alkaline water electrolysis. However, their catalytic properties are often limited by their poor electrical conductivity. Here, we present a strategy for enhancing the electrical conductivity of NiFe layered double hydroxide (LDH) in order to further improve its properties as an electrocatalyst for the oxygen evolution reaction (OER) in alkaline media. We show that NiFe LDH containing metal tetrasulfonate phthalocyanine in the interlayers between the NiFe oxide galleries can be coupled with graphene during liquid‐phase exfoliation by taking advantage of their \(\pi\)‐\(\pi\) stacking capabilities. A substantial enhancement in the electrocatalytic activity of NiFe LDH with re...
As a key half-reaction in water splitting, the oxygen evolution reaction (OER) process is kineticall...
Highly active, durable, and cost-effective electrocatalysts for water oxidation to evolve oxygen gas...
NiFe2O4 takes an attractive potential candidate for oxygen evolution reaction (OER) catalysts, howev...
Layered double hydroxides (LDHs), as an effective oxygen evolution reaction (OER) electrocatalyst, f...
A non-precious metal electrocatalyst for oxygen evolution reaction (OER)is achieved by synergistical...
Currently, precious metal group materials are known as the efficient and widely used oxygen evolutio...
Alkaline electrolysis is one of the most promising among gas-to-power technologies to produce hydrog...
Cost-effective electrocatalysts based on nonprecious metals for efficient water splitting are crucia...
Herein, the authors demonstrate a heterostructured NiFe LDH-NS@DG10 hybrid catalyst by coupling of e...
As an efficient non-precious metal catalyst for oxygen evolution reaction (OER) in electrochemical a...
Exploring efficient oxygen evolution reaction (OER) catalysts synthesized from low-cost and earth-ab...
Herein, the authors demonstrate a heterostructured NiFe LDH-NS@DG10 hybrid catalyst by coupling of e...
Herein, the authors demonstrate a heterostructured NiFe LDH-NS@DG10 hybrid catalyst by coupling of e...
The oxygen evolution reaction is a key reaction in water splitting. The common approach in the devel...
NiFe2O4 takes an attractive potential candidate for oxygen evolution reaction (OER) catalysts, howev...
As a key half-reaction in water splitting, the oxygen evolution reaction (OER) process is kineticall...
Highly active, durable, and cost-effective electrocatalysts for water oxidation to evolve oxygen gas...
NiFe2O4 takes an attractive potential candidate for oxygen evolution reaction (OER) catalysts, howev...
Layered double hydroxides (LDHs), as an effective oxygen evolution reaction (OER) electrocatalyst, f...
A non-precious metal electrocatalyst for oxygen evolution reaction (OER)is achieved by synergistical...
Currently, precious metal group materials are known as the efficient and widely used oxygen evolutio...
Alkaline electrolysis is one of the most promising among gas-to-power technologies to produce hydrog...
Cost-effective electrocatalysts based on nonprecious metals for efficient water splitting are crucia...
Herein, the authors demonstrate a heterostructured NiFe LDH-NS@DG10 hybrid catalyst by coupling of e...
As an efficient non-precious metal catalyst for oxygen evolution reaction (OER) in electrochemical a...
Exploring efficient oxygen evolution reaction (OER) catalysts synthesized from low-cost and earth-ab...
Herein, the authors demonstrate a heterostructured NiFe LDH-NS@DG10 hybrid catalyst by coupling of e...
Herein, the authors demonstrate a heterostructured NiFe LDH-NS@DG10 hybrid catalyst by coupling of e...
The oxygen evolution reaction is a key reaction in water splitting. The common approach in the devel...
NiFe2O4 takes an attractive potential candidate for oxygen evolution reaction (OER) catalysts, howev...
As a key half-reaction in water splitting, the oxygen evolution reaction (OER) process is kineticall...
Highly active, durable, and cost-effective electrocatalysts for water oxidation to evolve oxygen gas...
NiFe2O4 takes an attractive potential candidate for oxygen evolution reaction (OER) catalysts, howev...