Parameterization of the torsional potential for calix[4]arene-substituted poly(thiophene)s
Article first published online: 17 DEC 2009
DOI: 10.1002/jcc.21463
Copyright © 2009 Wiley Periodicals, Inc.
Additional Information
How to Cite
Preat, J., Rodríguez-Ropero, F., Torras, J., Bertran, O., Zanuy, D. and Alemán, C. (2010), Parameterization of the torsional potential for calix[4]arene-substituted poly(thiophene)s. J. Comput. Chem., 31: 1741–1751. doi: 10.1002/jcc.21463
Publication History
- Issue published online: 5 APR 2010
- Article first published online: 17 DEC 2009
- Manuscript Accepted: 15 OCT 2009
- Manuscript Revised: 14 OCT 2009
- Manuscript Received: 18 SEP 2009
Funded by
- MCYT and FEDER. Grant Numbers: MAT2006-04029, MAT2009-09138
- Generalitat de Catalunya. Grant Numbers: 2009-SGR-925, XRQTC
- Belgian National Fund for Scientific Research
- Ramón y Cajal and FPU programs
- ICREA Academia (Generalitat de Catalunya)
- Abstract
- Article
- References
- Cited By
Keywords:
- poly(thiophene);
- conducting polymer;
- force-field;
- parameterization;
- torsional potential;
- molecular dynamics;
- umbrella sampling
Abstract
Three different strategies have been followed to develop the torsional force-field parameters of the inter-ring dihedral angles for calix[4]arene-substituted poly(thiophene)s, a family of highly sensitive ion receptors. These procedures, which are based on the rotational profiles calculated using quantum mechanical methods, differ in the complexity of the model compounds and the processing applied to the quantum mechanical energies before the fitting. The performance of the three sets of developed parameters, which are essentially compatible with the General Amber Force Field, has been evaluated by computing the potential of mean forces for the inter-ring rotation of 2,2′-bithiophene, and its substituted analog bearing a calix[4]arene group in different environments. Finally, the ability of the new sets of torsional parameters to describe a calix[4]arene-substituted poly(thiophene) in tetrahydrofuran solution has been checked using Molecular Dynamics simulations. Specifically, the molecular shape, the polymer conformation, and the effects of the Na+ ions trapped in the cavity of the receptor have been examined. Although the potential derived from unsubstituted 2,2′-bithiophene is able to reproduce the experimental free energies of the minima, the overall results indicate that the parameters derived from the analog bearing a calix[4]arene group provide the best description of the systems under study. This should be attributed to the strong constraints found in complex substituted poly(thiophene)s, which require parameterization strategies able to capture all the interactions and phenomena involved in their inter-ring rotations. © 2009 Wiley Periodicals, Inc. J Comput Chem, 2010

1096-987X/asset/olbannerleft.gif?v=1&s=6a06c9acc9d19b9514883204cd54b2fb803be905)
1096-987X/asset/olbannerright.gif?v=1&s=5c13c2b5f418bc7a48bf448d9b71c474e504844e)
1096-987X/asset/cover.gif?v=1&s=4429aac2462ebd499c13b3d7fe983679c5767778)