| Literature DB >> 25259412 |
Siva Krishna Mohan Nalluri1, Nadezhda Shivarova, Alexander L Kanibolotsky, Mischa Zelzer, Swati Gupta, Pim W J M Frederix, Peter J Skabara, Helena Gleskova, Rein V Ulijn.
Abstract
We demonstrate the nonaqueous self-assembly of a low-molecular-mass organic gelator based on an electroactive p-type tetrathiafulvalene (TTF)-dipeptide bioconjugate. We show that a TTF moiety appended with diphenylalanine amide derivative (TTF-FF-NH2) self-assembles into one-dimensional nanofibers that further lead to the formation of self-supporting organogels in chloroform and ethyl acetate. Upon doping of the gels with electron acceptors (TCNQ/iodine vapor), stable two-component charge transfer gels are produced in chloroform and ethyl acetate. These gels are characterized by various spectroscopy (UV-vis-NIR, FTIR, and CD), microscopy (AFM and TEM), rheology, and cyclic voltammetry techniques. Furthermore, conductivity measurements performed on TTF-FF-NH2 xerogel nanofiber networks formed between gold electrodes on a glass surface indicate that these nanofibers show a remarkable enhancement in the conductivity after doping with TCNQ.Entities:
Mesh:
Substances:
Year: 2014 PMID: 25259412 DOI: 10.1021/la503459y
Source DB: PubMed Journal: Langmuir ISSN: 0743-7463 Impact factor: 3.882