Perovskite-type oxides show irrefutable potential for feasible thermochemical solar-driven CO2 conversion. These materials exhibit the exact characteristics required by the low temperature reverse water-gas shift chemical looping process. These properties include structural endurance and high oxygen redox capacity, which results in the formation of numerous oxygen vacancies, or active sites for CO2 conversion. A major drawback is the decrease in oxygen self-diffusion with increasing perovskite particle size. In this study, the La0.75Sr0.25FeO3 (LSF) perovskite oxide was combined with various supports including popular redox materials CeO2 and ZrO2 along with more abundant alternatives such as Al2O3, SiO2, and TiO2, in view of its potential ...
In order to solve the increasing greenhouse effect problem, perovskite-type oxides have been used to...
There is a pressing need for carbon dioxide (CO2) mitigation technologies as increasing emissions co...
An efficient redox material for two-step thermochemical CO2 splitting reaction requires high chemica...
Perovskite-type oxides show irrefutable potential for feasible thermochemical solar-driven CO2 conve...
Perovskite-type oxides show irrefutable potential for feasible thermochemical solar-driven CO2 conve...
Perovskites are attractive redox materials for thermo/electrochemical fuel synthesis. To design pero...
As the greenhouse gas effect becomes more serious, it is important to find an effective way to reduc...
As the greenhouse gas effect becomes more serious, it is important to find an effective way to reduc...
As the greenhouse gas effect becomes more serious, it is important to find an effective way to reduc...
Thermochemical splitting of CO2 and H2O via two-step metal oxide redox cycles offers a promising app...
Thermochemical splitting of CO2 and H2O via two‐step metal oxide redox cycles offers a promising app...
Thermochemical splitting of CO2 and H2O via two-step metal oxide redox cycles offers a promising app...
Thermochemical splitting of CO2 and H2O via two-step metal oxide redox cycles offers a promising app...
Thermochemical splitting of CO2 and H2O via two-step metal oxide redox cycles offers a promising app...
In order to solve the increasing greenhouse effect problem, perovskite-type oxides have been used to...
In order to solve the increasing greenhouse effect problem, perovskite-type oxides have been used to...
There is a pressing need for carbon dioxide (CO2) mitigation technologies as increasing emissions co...
An efficient redox material for two-step thermochemical CO2 splitting reaction requires high chemica...
Perovskite-type oxides show irrefutable potential for feasible thermochemical solar-driven CO2 conve...
Perovskite-type oxides show irrefutable potential for feasible thermochemical solar-driven CO2 conve...
Perovskites are attractive redox materials for thermo/electrochemical fuel synthesis. To design pero...
As the greenhouse gas effect becomes more serious, it is important to find an effective way to reduc...
As the greenhouse gas effect becomes more serious, it is important to find an effective way to reduc...
As the greenhouse gas effect becomes more serious, it is important to find an effective way to reduc...
Thermochemical splitting of CO2 and H2O via two-step metal oxide redox cycles offers a promising app...
Thermochemical splitting of CO2 and H2O via two‐step metal oxide redox cycles offers a promising app...
Thermochemical splitting of CO2 and H2O via two-step metal oxide redox cycles offers a promising app...
Thermochemical splitting of CO2 and H2O via two-step metal oxide redox cycles offers a promising app...
Thermochemical splitting of CO2 and H2O via two-step metal oxide redox cycles offers a promising app...
In order to solve the increasing greenhouse effect problem, perovskite-type oxides have been used to...
In order to solve the increasing greenhouse effect problem, perovskite-type oxides have been used to...
There is a pressing need for carbon dioxide (CO2) mitigation technologies as increasing emissions co...
An efficient redox material for two-step thermochemical CO2 splitting reaction requires high chemica...