[[abstract]]The potential energy surface for the BeO+H2→HBeOH→Be+H2O reaction has been studied using the G2(MP2) method. BeO is shown to be able to trap molecular hydrogen forming the HBeOH molecule, 88.9 kcal/mol below the reactants. The reaction proceeds by barrier-less formation of the OBeH2 molecular complex that isomerizes to HBeOH with a low barrier. HBeOH can be also formed in the reaction of Be atoms with water which has a barrier of 13.4 kcal/mol. The HBeOH molecule corresponds to a deep well on the potential energy surface and should be thermodynamically stable. The energy barrier for the H2 release from HBeOH, 77.0 kcal/mol, is about 11 kcal/mol lower than that for the H2O release, making selective release of molecular hydrogen p...
Contains fulltext : 34891.pdf (preprint version ) (Closed access)Alanates and bora...
Yang T, Zhao B, Chen GK, Guo H, Campbell WC, Hudson ER. Determining reaction pathways at low tempera...
[[abstract]]Ab initio G2(MP2) calculations of the potential energy surface for Be+CO2→BeO+CO show th...
[[abstract]]The potential energy surface for the BeS + H2 → SBeH2 → HBeSH → Be + H2S reaction has be...
[[abstract]]Potential energy surfaces of various reactions in the BO/H2, B2O2/H2, and BS/H2 systems ...
Since the current transportation sector is the largest consumer of oil, and subsequently responsible...
[[abstract]]Ab initio G2M(MP2) calculations show the BeO+CH4 reaction to proceed by barrier-less for...
[[abstract]]Ab initio calculations at the G2M(MP2)//MP2/6-31G** level have been performed to investi...
Since the current transportation sector is the largest consumer of oil, and subsequently responsible...
The structural and spectroscopic properties of the Be(+)-H2 and Be(+)-D2 electrostatic complexes are...
Accurate ab initio calculations reveal that oxyacid beryllium salts yield rather stable complexes wi...
Recent experiments [F. E. Pinkerton, M. S. Meyer, G. P. Meisner, M. P. Balogh, and J. J. Vajo, J. Ph...
Recent experiments [F. E. Pinkerton, M. S. Meyer, G. P. Meisner, M. P. Balogh, and J. J. Vajo, J. Ph...
Recent experiments [F E. Pinkerton, M. S. Meyer, G. R Meisner, M. P. Balogh, and J. J. Vajo, J. Phys...
This paper is a theoretical study of beryllium-beryllium bonding, with emphasis on how to strengthen...
Contains fulltext : 34891.pdf (preprint version ) (Closed access)Alanates and bora...
Yang T, Zhao B, Chen GK, Guo H, Campbell WC, Hudson ER. Determining reaction pathways at low tempera...
[[abstract]]Ab initio G2(MP2) calculations of the potential energy surface for Be+CO2→BeO+CO show th...
[[abstract]]The potential energy surface for the BeS + H2 → SBeH2 → HBeSH → Be + H2S reaction has be...
[[abstract]]Potential energy surfaces of various reactions in the BO/H2, B2O2/H2, and BS/H2 systems ...
Since the current transportation sector is the largest consumer of oil, and subsequently responsible...
[[abstract]]Ab initio G2M(MP2) calculations show the BeO+CH4 reaction to proceed by barrier-less for...
[[abstract]]Ab initio calculations at the G2M(MP2)//MP2/6-31G** level have been performed to investi...
Since the current transportation sector is the largest consumer of oil, and subsequently responsible...
The structural and spectroscopic properties of the Be(+)-H2 and Be(+)-D2 electrostatic complexes are...
Accurate ab initio calculations reveal that oxyacid beryllium salts yield rather stable complexes wi...
Recent experiments [F. E. Pinkerton, M. S. Meyer, G. P. Meisner, M. P. Balogh, and J. J. Vajo, J. Ph...
Recent experiments [F. E. Pinkerton, M. S. Meyer, G. P. Meisner, M. P. Balogh, and J. J. Vajo, J. Ph...
Recent experiments [F E. Pinkerton, M. S. Meyer, G. R Meisner, M. P. Balogh, and J. J. Vajo, J. Phys...
This paper is a theoretical study of beryllium-beryllium bonding, with emphasis on how to strengthen...
Contains fulltext : 34891.pdf (preprint version ) (Closed access)Alanates and bora...
Yang T, Zhao B, Chen GK, Guo H, Campbell WC, Hudson ER. Determining reaction pathways at low tempera...
[[abstract]]Ab initio G2(MP2) calculations of the potential energy surface for Be+CO2→BeO+CO show th...