| Literature DB >> 30733570 |
A Milani1, V Barbieri1, A Facibeni1, V Russo1, A Li Bassi1, A Lucotti2, M Tommasini2, M D Tzirakis3, F Diederich3, C S Casari4.
Abstract
sp-Hybridized carbon atomic wires are appealing systems with large property tunability. In particular, their electronic properties are intimately related to length, structure, and type of functional end-groups as well as to other effects such as the intermolecular charge transfer with metal nanoparticles. Here, by a combined Raman, Surface Enhanced Raman Scattering (SERS) investigation and first principles calculations of different N,N-dimethylanilino-terminated polyynes, we suggest that, upon charge transfer interaction with silver nanoparticles, the function of sp-carbon atomic wire can change from electron donor to electron acceptor by increasing the wire length. In addition, the insertion into the wire of a strong electrophilic group (1,1,4,4-tetracyanobuta-1,3-diene-2,3-diyl) changes the electron-accepting molecular regions involved in this intermolecular charge transfer. Our results indicate that carbon atomic wires could display a tunable charge transfer between the sp-wire and the metal, and hold promise as active materials in organic optoelectronics and photovoltaics.Entities:
Year: 2019 PMID: 30733570 PMCID: PMC6367501 DOI: 10.1038/s41598-018-38367-9
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Chemical structures and DFT-calculated molecular conformations of the investigated systems: C2, C8, and C6/TCBD.
Figure 2(Top) Experimental micro-Raman spectra of films of C2, C8, and C6/TCBD on glass taken at 514.5 nm excitation wavelength. (Bottom) DFT-calculated Raman spectra of C2, C8, and C6/TCBD.
Figure 3(Left) Experimental solid-state SERS spectra at 514.5 nm of C2, C8, and C6/TCBD deposited on SERS-active substrate (Ag nanoislands on glass). Micro-Raman (514.5 nm) spectra are reported for comparison. (Right) comparison of DFT computed Raman spectra of neutral, positively charged C2 and negatively C8, and C6/TCBD (see text for discussion).
Figure 4(a) Plot of the DFT computed values of Eion (see Methods section) for the systems investigated (b). Balls and sticks model of the DFT-simulated charge distribution (CHELPG partial atomic charges) of the TCBD moiety of C6/TCBD. Numbers written in black are the partial atomic charges of the neutral molecule, while the red ones are those of the negatively charged molecule.
Figure 5DFT-computed lengths of sp-carbon bonds in C8, C6/TCBD, and C6 for neutral and negatively charged species.