The shapes of molecular orbitals (MOs) in polyatomic molecules are often difficult for meaningful chemical interpretations. We report protocols to quantify contributions made by individual orbitals (molecular canonical and natural) of classical bonding, non-bonding or anti-bonding nature to (i) electron density into the inter-nuclear region and (ii) diatomic electron delocalization, DI(A,B). In other words, these protocols universally explain orbital's inputs to two fundamental and energy-lowering mechanisms of chemical bonding (interactions) and ease the chemical interpretation of their character in polyatomic molecules. They reveal that the MO and real-space density descriptions of the interactions are equivalent and, importantly, equally...
Chemical bonding is described in terms of the properties of the one-electron density f2 (r) and the ...
One of the goals of modern quantum chemistry is to understand the nature of chemical bonds. By under...
Knowledge in quantum chemistry and molecular dynamicsThe lowest-energy bonding and antibonding molec...
The shapes of molecular orbitals (MOs) in polyatomic molecules are often difficult for meaningful ch...
Chemical bonding is at heart but, not being a quantum mechanical-defined physical property of a syst...
Tesis con mención internacionalThe chemical bond might be considered as the central pillar of chemis...
Qualitative molecular orbital theory is widely used as a conceptual tool to understand chemical bond...
Qualitative molecular orbital theory is widely used as a conceptual tool to understand chemical bond...
One challenge in chemistry is the plethora of often disparate models for rationalizing the electroni...
A combined strategy that unifies our interacting quantum atoms approach (IQA), a chemically intuitiv...
A combined strategy that unifies our interacting quantum atoms approach (IQA), a chemically intuitiv...
A combined strategy that unifies our interacting quantum atoms approach (IQA), a chemically intuitiv...
A combined strategy that unifies our interacting quantum atoms approach (IQA), a chemically intuitiv...
A combined strategy that unifies our interacting quantum atoms approach (IQA), a chemically intuitiv...
Chemical bonding is described in terms of the properties of the one-electron density f2 (r) and the ...
Chemical bonding is described in terms of the properties of the one-electron density f2 (r) and the ...
One of the goals of modern quantum chemistry is to understand the nature of chemical bonds. By under...
Knowledge in quantum chemistry and molecular dynamicsThe lowest-energy bonding and antibonding molec...
The shapes of molecular orbitals (MOs) in polyatomic molecules are often difficult for meaningful ch...
Chemical bonding is at heart but, not being a quantum mechanical-defined physical property of a syst...
Tesis con mención internacionalThe chemical bond might be considered as the central pillar of chemis...
Qualitative molecular orbital theory is widely used as a conceptual tool to understand chemical bond...
Qualitative molecular orbital theory is widely used as a conceptual tool to understand chemical bond...
One challenge in chemistry is the plethora of often disparate models for rationalizing the electroni...
A combined strategy that unifies our interacting quantum atoms approach (IQA), a chemically intuitiv...
A combined strategy that unifies our interacting quantum atoms approach (IQA), a chemically intuitiv...
A combined strategy that unifies our interacting quantum atoms approach (IQA), a chemically intuitiv...
A combined strategy that unifies our interacting quantum atoms approach (IQA), a chemically intuitiv...
A combined strategy that unifies our interacting quantum atoms approach (IQA), a chemically intuitiv...
Chemical bonding is described in terms of the properties of the one-electron density f2 (r) and the ...
Chemical bonding is described in terms of the properties of the one-electron density f2 (r) and the ...
One of the goals of modern quantum chemistry is to understand the nature of chemical bonds. By under...
Knowledge in quantum chemistry and molecular dynamicsThe lowest-energy bonding and antibonding molec...