4.6 Article

Structural and Energetic Characterization of Prebiotic Molecules: The Case Study of Formamide and Its Dimer

期刊

JOURNAL OF PHYSICAL CHEMISTRY A
卷 120, 期 27, 页码 5257-5263

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.jpca.6b01130

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  1. Italian MIUR (PRIN STAR: Spectroscopic and computational Techniques for Astrophysical and atmospheric Research)
  2. University of Bologna (RFO funds)
  3. COST CMTS-Action CM1405 (MOLIM: MOLecules In Motion)
  4. COST CMTS-Action CM1401 (Our Astro-Chemical History)

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State-of-the-art quantum-chemical computations have been employed to determine the accurate equilibrium structure of formamide and its symmetric dimer as well as the interaction energy of the latter, thus extending available reference data fox the peptide (also denoted as amide) bond and the hydrogen-bond interaction that characterizes peptides and proteins. Equilibrium geometries and electronic energies have been evaluated by means of a composite scheme based on coupled-cluster calculations, including up to triple excitations, which also accounts for extrapolation to the complete basis set limit and core-correlation effects. This approach provides molecular structures with an accuracy of 0.001-0.002 angstrom and 0.05-0.1 degrees for bond lengths and angles, respectively, and relative energies with an accuracy of about 1-2 kJ/mol.

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