| Literature DB >> 24834019 |
Ida Ros1, Tiziana Placido2, Vincenzo Amendola3, Chiara Marinzi4, Norberto Manfredi4, Roberto Comparelli5, Marinella Striccoli5, Angela Agostiano6, Alessandro Abbotto4, Danilo Pedron3, Roberto Pilot7, Renato Bozio1.
Abstract
The amplification of Raman signals of the heteroaromatic cation 1-(N-methylpyrid-4-yl)-2-(N-methylpyrrol-2-yl)ethylene (Entities:
Keywords: Gold nanorods; Localized surface plasmon resonance; Nonlinear optics; Push–pull molecule; SERS
Year: 2014 PMID: 24834019 PMCID: PMC4018483 DOI: 10.1007/s11468-014-9669-4
Source DB: PubMed Journal: Plasmonics ISSN: 1557-1955 Impact factor: 2.404
Fig. 1Molecular structures of parent dipolar species PEP+ and its ω-acetylthioalkyl derivatives PEP+C3SAc and PEP+C12SAc
Fig. 2Extinction spectrum (a) and relative TEM image (b) of water soluble Au NRs prepared by seed mediated method. The dotted line corresponds to the extinction spectrum calculated by the DDA method
Fig. 3Calculated distribution of the square of the electromagnetic field around a single particle at (a) 514 nm for the transverse plasmon and at (b) 785 nm for the longitudinal plasmon
Fig. 4FT-IR spectra of NRs functionalized with PEP+ moiety: PEP+C3SH (black), PEP+C3-NRs (red), PEP+C12-NRs (green), and CTAB stabilized NRs (blue)
Fig. 5UV-visible absorption spectra of bare NRs in water (black trace), dye (red trace), and dye functionalized NRs (green trace) for the case of PEP+C3SH (a) and for PEP+C12SH (b)
Fig. 6TEM images of (a) Au NRs, (b) PEP+C3-NRs, and (c) PEP+C12-NRs purified by dye excess at 12 h (scale bar 50 nm)
Peak frequency assignments for neat PEP+C3SH and PEP+C12SH and for PEP+C3-NRs and PEP+C12-NRs at different excitation wavelengths (in nm) [31–34]
| PEP+C3SH | PEP+C12SH | PEP+C3-NRs | NR PEP+C12-NRs | Assignments | ||||
|---|---|---|---|---|---|---|---|---|
| λex 785 (cm−1) | λex 785 (cm−1) | λex 488 (cm−1) | λex 514 (cm−1) | λex 785 (cm−1) | λex 488 (cm−1) | λex 514 (cm−1) | λex 785 (cm−1) | |
| 658 and 664 | 657 | 654 | 655 and 667 | 655 and 667 | 652 and 665 | 655 and 667 | 655 and 666 | Ring CH out-of-plane def and bend. |
| 873 and 901 | 874 and 904 | 874 and 904 | 873 and 901 | 876 and 904 | 873 and 902 | N=C-H and N–C–H def | ||
| 1,069 | 1,068 | 1,060 | 1,061 | 1,060 | 1,060 | 1,061 | 1,058 | Ring CH in-plane bend (pyridinium) |
| 1,167, 1,187, 1,214 | 1,166, 1,187, 1,213 | 1,152, 1,176, 1,206 | 1,154, 1,177, 1,209 | 1,153, 1,176, 1,210 | 1,150, 1,173, 1,205 | 1,155, 1,177, 1,212 | 1,171, 1,206 | Ring CH in-plane bend (pyridinium) |
| 1,290 and 1,310 | 1,290 and 1,310 | 1,283 and 1,302 | 1,285 and 1,305 | 1,283 and 1,304 | 1,281 and 1,300 | 1,286 and 1,302 | 1,282 | N–C ring str (pyrrole) |
| 1,390 and 1,417 | 1,389 and 1,418 | 1,385 and 1,410 | 1,387 and 1,412 | 1,386 and 1,411 | 1,389 and 1,410 | 1,387 and 1,412 | 1,384 and 1,412 | Ring vib (pyrrole) |
| 1,478 | 1,477 | 1,481 | 1,480 | 1,483 | 1,478 | 1,480 | 1,484 | CH3 Def in NCH3 (pyrrole) |
| 1,533 and 1,554 | 1,535 and 1,554 | 1,535 and 1,555 | 1,554 | 1,535 and 1,585 | C=C and C=N ring stretch (pyridinium) | |||
| 1,597 | 1,597 | 1,597 | 1,595 | 1,595 | 1,595 | 1,595 | 1,595 | C=C and C=N ring stretch (pyridinium) |
Fig. 7a SERRS and SERS spectra of PEP+C3SH powders (black) and bound to NRs (deposited on a glass slide) at different laser excitation. b SERRS and SERS spectra of PEP+C12SH powders (black) and bound to NRs (deposited on a glass slide) at different laser excitation
Fig. 8SERRS and SERS spectra, in solution, of PEP+C3-NRs at different laser excitation
EF and R factors of PEP+C3SH and PEP+C12SH on Au NRs for different vibrational modes
| Band (cm−1) | PEP+C3-NR | PEP+C12-NR | 4-Mpy-NR | ||
|---|---|---|---|---|---|
| R (488) | R (514) | EF (785) | EF (785) | ||
| 655 | 1.6 × 104 | 1.4 × 104 | |||
| 1,069 | 3.7 | 3.2 | 1.1 × 104 | 1.9 × 104 | |
| 1,180 | 3.0 | 3.9 | 1.7 × 104 | 9.3 × 103 | |
| 1,289 | 2.7 | 4.3 | 1.0 × 104 | ||
| 1,415 | 4.8 | 7.2 | 9.0 × 103 | ||
| 1,004 | 3.7 × 104 | ||||
| 1,119 | 1.1 × 105 | ||||
Fig. 9SERS spectra excited at 785 nm, of a 0.022 M aqueous solution of 4-MPy (black trace) and 10 M aqueous solution of 4-MPy bound to NRs (red trace)
Fig. 10Reaction scheme for the synthesis of PEP+C3SAC and PEP+C12SAC