Recent experimental studies suggest faster desorption kinetics, improved reversibility, and more favorable thermodynamics for confined LiBH<sub>4</sub> nanoparticles as compared to bulk. We study the structures, total energies, and decomposition reactions of LiBH<sub>4</sub> nanoparticles using density functional theory calculations. We find that the reaction energies of nanoclusters with a diameter ≳2 nm are very close to that of bulk LiBH<sub>4</sub>. Only very small clusters with a diameter <1 nm are significantly destabilized relative to the bulk. The thermodynamics of such small clusters is unfavorable, however, and leads to dehydrogenation temperatures that are higher than that of the bulk. Although small (LiBH<sub>4</sub>)<sub><i>n</...
LiBH(4) nanoparticles supported by disordered mesoporous carbon CMK-3, denoted as nano-LiBH(4)/C(mes...
First-principles calculation and x-ray diffraction simulation methods have been used to explore crys...
In this work, we report an effective synthetic strategy to obtain LiBH4 featuring low-temperature an...
We analyze thermodynamic stability and decomposition pathways of LiBH4 nanoclusters using grand-cano...
LiBH4 nanoparticles confined in nanoporous carbon materials show improved hydrogen storage propertie...
LiBH<sub>4</sub> has been loaded into a highly ordered mesoporous carbon scaffold containing dispers...
YÖK Tez ID: 418719Bu çalışmada farklı atom sayılarına sahip LiB topaklarının kararlı geometrileri ve...
Contains fulltext : 103368.pdf (publisher's version ) (Closed access
Hydrogen technology has become essential to fulfill our mobile and stationary energy needs in a glob...
Lithium borohydride (LiBH4) exhibits poor hydrogen storage reversibility because of phase separation...
We have performed cascade genetic algorithm and ab initio atomistic thermodynamics under the framewo...
LiBH4, a potential hydrogen storage material with the highest reversible capacity for vehicle applic...
In this study, we proposed that homo superalkali NM4 clusters with high tetrahedral geometry, can be...
A lithium salt of anionic scandium tetraborohydride complex, LiSc(BH_4)_4, was studied both experime...
We report density functional theory calculations on the energy of LiBH 4, relative to solid B and Li...
LiBH(4) nanoparticles supported by disordered mesoporous carbon CMK-3, denoted as nano-LiBH(4)/C(mes...
First-principles calculation and x-ray diffraction simulation methods have been used to explore crys...
In this work, we report an effective synthetic strategy to obtain LiBH4 featuring low-temperature an...
We analyze thermodynamic stability and decomposition pathways of LiBH4 nanoclusters using grand-cano...
LiBH4 nanoparticles confined in nanoporous carbon materials show improved hydrogen storage propertie...
LiBH<sub>4</sub> has been loaded into a highly ordered mesoporous carbon scaffold containing dispers...
YÖK Tez ID: 418719Bu çalışmada farklı atom sayılarına sahip LiB topaklarının kararlı geometrileri ve...
Contains fulltext : 103368.pdf (publisher's version ) (Closed access
Hydrogen technology has become essential to fulfill our mobile and stationary energy needs in a glob...
Lithium borohydride (LiBH4) exhibits poor hydrogen storage reversibility because of phase separation...
We have performed cascade genetic algorithm and ab initio atomistic thermodynamics under the framewo...
LiBH4, a potential hydrogen storage material with the highest reversible capacity for vehicle applic...
In this study, we proposed that homo superalkali NM4 clusters with high tetrahedral geometry, can be...
A lithium salt of anionic scandium tetraborohydride complex, LiSc(BH_4)_4, was studied both experime...
We report density functional theory calculations on the energy of LiBH 4, relative to solid B and Li...
LiBH(4) nanoparticles supported by disordered mesoporous carbon CMK-3, denoted as nano-LiBH(4)/C(mes...
First-principles calculation and x-ray diffraction simulation methods have been used to explore crys...
In this work, we report an effective synthetic strategy to obtain LiBH4 featuring low-temperature an...