In the industrial large-scale chlor-alkali process, the electrocatalytic chlorine evolution reaction (CER) is a crucial half anodic reaction. However, the concomitant oxygen evolution reaction (OER) is unavoidable by using the noble metal-based dimensionally stable anodes (DSAs) as CER benchmark catalysts. Through purposely screening six TMN4 complexes embedded graphene with the demonstrated low performance of OER, our density functional theory (DFT) results predict that NiN4 complex embedded graphene (NiN4@G) can efficiently catalyse the CER. This single-atom catalyst (SAC) shows superior CER activity with the ultralow thermodynamic overpotential of 0.014 V via the Cl* intermediate instead of the formation of the ClO*. Moreover, its high t...
The development of high-efficiency and sustainable techniques to address the current energy shortage...
The oxygen reduction reaction (ORR) remains at the forefront of research in diverse energy and susta...
Abstract Single transition metal (TM) atoms such as Fe, Co and Ni occupying a carbon divacancy in te...
In the industrial large-scale chlor-alkali process, the electrocatalytic chlorine evolution reaction...
The development of selective electrocatalysts for the chlorine evolution reaction (CER) is majorly r...
Chlorine evolution reaction (CER) is a critical anode reaction in various processes, such as the Cl2...
Chlorine gas plays a paramount role in modern industrial chemistry and is one of the most basic chem...
The electrochemical chlorine evolution reaction (CER) is a key anodic reaction in the chlor-alkali p...
Chlorine evolution reaction (CER) is a critical anode reaction in chlor-alkali electrolysis. Althoug...
Materials innovation plays an essential role to address the increasing demands of gaseous chlorine f...
MAT.P-300 Promoting Activity and Selectivity of Electrochemical Chlorine Evolution Reaction by Atomi...
Materials innovation plays an essential role to address the increasing demands of gaseous chlorine f...
Electrochemical chlorine evolution reaction (CER) is a major anodic reaction for Cl2 production or o...
Adjusting the electronic structure of the active center is a highly effective strategy for improving...
The mutually corroborated electrochemical measurements and density functional theory (DFT) calculati...
The development of high-efficiency and sustainable techniques to address the current energy shortage...
The oxygen reduction reaction (ORR) remains at the forefront of research in diverse energy and susta...
Abstract Single transition metal (TM) atoms such as Fe, Co and Ni occupying a carbon divacancy in te...
In the industrial large-scale chlor-alkali process, the electrocatalytic chlorine evolution reaction...
The development of selective electrocatalysts for the chlorine evolution reaction (CER) is majorly r...
Chlorine evolution reaction (CER) is a critical anode reaction in various processes, such as the Cl2...
Chlorine gas plays a paramount role in modern industrial chemistry and is one of the most basic chem...
The electrochemical chlorine evolution reaction (CER) is a key anodic reaction in the chlor-alkali p...
Chlorine evolution reaction (CER) is a critical anode reaction in chlor-alkali electrolysis. Althoug...
Materials innovation plays an essential role to address the increasing demands of gaseous chlorine f...
MAT.P-300 Promoting Activity and Selectivity of Electrochemical Chlorine Evolution Reaction by Atomi...
Materials innovation plays an essential role to address the increasing demands of gaseous chlorine f...
Electrochemical chlorine evolution reaction (CER) is a major anodic reaction for Cl2 production or o...
Adjusting the electronic structure of the active center is a highly effective strategy for improving...
The mutually corroborated electrochemical measurements and density functional theory (DFT) calculati...
The development of high-efficiency and sustainable techniques to address the current energy shortage...
The oxygen reduction reaction (ORR) remains at the forefront of research in diverse energy and susta...
Abstract Single transition metal (TM) atoms such as Fe, Co and Ni occupying a carbon divacancy in te...