Abstract:The mercury dihalides show a remarkable diversity in the structural preferences in their minimum energy structure types, spanning molecular to strongly bound ionic solids. A challenge in the development of density functional methods for extended systems is to arrive at strategies that serve equally well such a broad range of bonding modes or structural preferences. The chemical bonding and the stabilities of mercury dihalides and the general utility and reliability of the van der Waals density functional with … Show more
The important role of π-hole spodium bonding in tri-coordinated planar Hg(II) complexes is highlighted in this feature article. Selected examples of Hg(II)X3 structures (X = any atom) illustrate that this...
The important role of π-hole spodium bonding in tri-coordinated planar Hg(II) complexes is highlighted in this feature article. Selected examples of Hg(II)X3 structures (X = any atom) illustrate that this...
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