| Literature DB >> 27404562 |
Daniel Iglesias1,2, Javier Guerra1,3, M Victoria Gómez1, Antonio M Rodríguez1,4, Pilar Prieto1, Ester Vázquez1, M Antonia Herrero5.
Abstract
Promising materials have been designed and fully characterised by an effective interaction between versatile platforms such as carbon nanohorns (CNHs) and conjugated molecules based on thiophene derivatives. Easy and non-aggressive methods have been described for the synthesis and purification of the final systems. Oligothiophenephenylvinylene (OTP) systems with different geometries and electron density are coupled to the CNHs. A wide range of characterization techniques have been used to confirm the effective interaction between the donor (OTP) and the acceptor (CNH) systems. These hybrid materials show potential for integration into solar cell devices. Importantly, surface-enhanced Raman spectroscopy (SERS) effects are observed without the presence of any metal surface in the system. Theoretical calculations have been performed to study the optimised geometries of the noncovalent interaction between the surface and the organic molecule. The calculations allow information on the monoelectronic energies of HOMO-LUMO orbitals and band gap of different donor systems to be extracted.Entities:
Keywords: carbon; energy conversion; hyperconjugation; nanostructures; noncovalent interactions
Year: 2016 PMID: 27404562 DOI: 10.1002/chem.201601282
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236