[[abstract]]Density functional calculations of potential energy surfaces in the CO2/H2/ScO(2Σ+) system have been performed to investigate the reaction mechanism of CO2 hydrogenation to formic acid in the presence of ScO. The results show that ScO can easily form a variety of complexes with CO2 and H2, complexes of CO2 with HScOH, and a highly exothermic cyc-OC(H)OScOH molecule. Although transformation of the latter to ScO + HCOOH is impeded by the high barrier for hydrogen transfer from ScOH to HCO2, it is expected to be fast in the gas phase because the transition state is only 2.3 kcal/mol higher in energy than the reactants CO2 + H2 + ScO.[[notice]]補正完畢[[journaltype]]國
Electrochemical reduction of CO2 to formic acid (HCOOH) can contribute to the renewable energy trans...
Electrochemical reduction of CO2 to formic acid (HCOOH) can contribute to the renewable energy trans...
Electrochemical reduction of CO2 to formic acid (HCOOH) can contribute to the renewable energy trans...
[[abstract]]B3LYP and CCSD(T) calculations with various basis sets have been performed to investigat...
How coordination of a CO2 molecule can assist in the release of HCOOH from the [P2Rh(HCOOH)] complex...
[[abstract]]Density functional B3LYP/6-311+G(3df, 2p)//B3LYP/6-31G** calculations show that strong η...
Conversion of greenhouse gases to more valuable chemicals is important from both the environmental a...
Gas-phase decomposition of formic acid results in final products CO + H2O and CO2 + H-2. Experimenta...
[[abstract]]B3LYP and CCSD(T) calculations with various basis sets show that the Sc+CO2→ScO+CO react...
Density functional theory (DFT) calculations were used to study the mechanisms of hydrogenation of c...
We study the mechanism of carbon dioxide (CO2) hydrogenation to carbon monoxide (CO) and formic acid...
We studied the direct conversion of CO2 to HCOOH through hydrogenation reaction without the presence...
Formic acid production from CO2 allows the reduction of carbon dioxide emissions while synthesizing ...
Formic acid production from CO2 allows the reduction of carbon dioxide emissions while synthesizing ...
Formic acid production from CO2 allows the reduction of carbon dioxide emissions while synthesizing ...
Electrochemical reduction of CO2 to formic acid (HCOOH) can contribute to the renewable energy trans...
Electrochemical reduction of CO2 to formic acid (HCOOH) can contribute to the renewable energy trans...
Electrochemical reduction of CO2 to formic acid (HCOOH) can contribute to the renewable energy trans...
[[abstract]]B3LYP and CCSD(T) calculations with various basis sets have been performed to investigat...
How coordination of a CO2 molecule can assist in the release of HCOOH from the [P2Rh(HCOOH)] complex...
[[abstract]]Density functional B3LYP/6-311+G(3df, 2p)//B3LYP/6-31G** calculations show that strong η...
Conversion of greenhouse gases to more valuable chemicals is important from both the environmental a...
Gas-phase decomposition of formic acid results in final products CO + H2O and CO2 + H-2. Experimenta...
[[abstract]]B3LYP and CCSD(T) calculations with various basis sets show that the Sc+CO2→ScO+CO react...
Density functional theory (DFT) calculations were used to study the mechanisms of hydrogenation of c...
We study the mechanism of carbon dioxide (CO2) hydrogenation to carbon monoxide (CO) and formic acid...
We studied the direct conversion of CO2 to HCOOH through hydrogenation reaction without the presence...
Formic acid production from CO2 allows the reduction of carbon dioxide emissions while synthesizing ...
Formic acid production from CO2 allows the reduction of carbon dioxide emissions while synthesizing ...
Formic acid production from CO2 allows the reduction of carbon dioxide emissions while synthesizing ...
Electrochemical reduction of CO2 to formic acid (HCOOH) can contribute to the renewable energy trans...
Electrochemical reduction of CO2 to formic acid (HCOOH) can contribute to the renewable energy trans...
Electrochemical reduction of CO2 to formic acid (HCOOH) can contribute to the renewable energy trans...