Journal
CHEMICAL COMMUNICATIONS
Volume 58, Issue 94, Pages 13075-13078Publisher
ROYAL SOC CHEMISTRY
DOI: 10.1039/d2cc04915e
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Funding
- National Agency for Research and Development (ANID) through FONDECYT [1211128, 1221019]
- National Agency for Research and Development (ANID)/Scholarship Program/BECAS DOCTORADO NACIONAL [2019-21190427, 2020-21201177]
- ECOS program [C17E09]
- NLHPC [ECM-02]
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A systematic exploration of the potential energy surface has identified two global minima with three planar tetra coordinate carbons (ptCs) and two global minima with three quasi-ptCs for E6C15 (E = Si-Pb) combinations. These findings offer aromatic polycyclic templates that can be used for designing various materials without compromising the texture of ptCs.
A systematic exploration of the potential energy surface reveals two global minima with three planar tetra coordinate carbons (ptCs) and two global minima with three quasi-ptCs for E6C15 (E = Si-Pb) combinations. These consist of aromatic polycyclic templates suitable for further design of different materials without hindering the ptC texture.
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