“…6 Beryllium metal exhibits many excellent properties, such as low density, high stiffness, and a low coefficient of thermal expansion, leading to alloys of beryllium metal that also have many excellent properties and exhibit unique quantum effects as the size of beryllium metal is reduced to the scale of clusters. [7][8][9][10][11] Special quantum size effects and high specific surface areas have considerable application potential in the realm of catalysis because of the distinct electronic structure of beryllium clusters. The molecular geometry and characteristics of pure beryllium clusters and doped beryllium clusters have drawn a lot of interest because beryllium clusters have a distinctive electronic structure.…”
The structural evolution of Ben clusters with n=5-9, the adsorption energy created by the Ben@H2O (n=5-9) complex, and the mechanism of the hydrogen evolution reaction of Ben+H2O (n=5-9) were all...
“…6 Beryllium metal exhibits many excellent properties, such as low density, high stiffness, and a low coefficient of thermal expansion, leading to alloys of beryllium metal that also have many excellent properties and exhibit unique quantum effects as the size of beryllium metal is reduced to the scale of clusters. [7][8][9][10][11] Special quantum size effects and high specific surface areas have considerable application potential in the realm of catalysis because of the distinct electronic structure of beryllium clusters. The molecular geometry and characteristics of pure beryllium clusters and doped beryllium clusters have drawn a lot of interest because beryllium clusters have a distinctive electronic structure.…”
The structural evolution of Ben clusters with n=5-9, the adsorption energy created by the Ben@H2O (n=5-9) complex, and the mechanism of the hydrogen evolution reaction of Ben+H2O (n=5-9) were all...
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