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Multistep conformational interconversion mechanism of cyclododecane. A simple and fast analysis using potential energy curves
Authors:Edgardo J Saavedra  Sebastian A Andujar  Fernando D Suvire  Miguel A Zamora  Monica L Freile  Ricardo D Enriz
Institution:1. Facultad de Ciencias Exactas y Naturales, Universidad Nacional de La Patagonia San Juan Bosco, Comodoro Rivadavia, Chubut, Argentina;2. Departamento de Química, Facultad de Química, Bioquímica y Farmacia, Universidad Nacional de San Luis, Chacabuco 915, 5700 San Luis, Argentina;3. IMIBIO‐CONICET, UNSL, Chacabuco 915, 5700 San Luis, Argentina
Abstract:An ab initio and Density Functional Theory (DFT) study of the conformational properties of cyclododecane was carried out. The energetically preferred equilibrium structures, their relative stability, and some of the transition state (TS) structures involved in the conformational interconversion pathways were analyzed from RHF/6‐31G(d), B3LYP/6‐31G(d,p) and B3LYP/6311++G(d,p) calculations. Aug‐cc‐pVDZ//B3LYP/6311++G(d,p) single point calculations predict that the multistep conformational interconversion mechanism requires 11.07 kcal/mol, which is in agreement with the available experimental data. These results allow us to form a concise idea about the internal intricacies of the preferred forms of cyclododecane, describing the conformations as well as the conformational interconversion processes in the conformational potential energy hypersurface. Our results indicated that performing an exhaustive analysis of the potential energy curves connecting the most representative conformations is a valid alternate tool to determine the principal conformational interconversion paths for cyclododecane. This methodology represents a satisfactory first approximation for the conformational analysis of medium‐ and large‐size flexible cyclic compounds. © 2011 Wiley Periodicals, Inc. Int J Quantum Chem, 2012
Keywords:cyclododecane  conformational study  potential energy curves  ab initio and DFT calculations  transition states
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