| Literature DB >> 26057120 |
Takehiro Kawauchi1, Yuki Oguchi1, Keiji Nagai1, Tomokazu Iyoda1.
Abstract
The three-dimensional construction of arrays of functional molecules on an electrode surface, such as organic semiconductors and redox-active molecules, is a considerable challenge in the fabrication of sophisticated junctions for molecular devices. In particular, well-defined organic layers with precise molecular gradients are anticipated to function as novel <Entities:
Year: 2015 PMID: 26057120 PMCID: PMC4460877 DOI: 10.1038/srep11122
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1(a) Chemical structure of the 3rd-generation dendritic viologen-arranged molecule. (b) Schematic of Vio, apical- and basal-type molecules. The number of viologen units (V2+) is indicated in parentheses.
Figure 2Characterization of the viologen-arranged molecules.
(a) 1H NMR spectra of Vio, A3 and B3 measured in DMSO-d6. The asterisks denote DMSO-d5 and its 13C satellite signals. (b) Positive mode ESI-MS spectra of A3 and B3. See Supplementary Figs. S2 and S3. (c) Hydrodynamic radii (RHs/nm) of acetyl-capped Vio, An, and Bn (n = 0–3) determined by NMR in deuterated acetonitrile at 25 °C as a function of molecular weight. The calculated radii of gyration (Rcalc) estimated by MM calculation for acetyl-capped Vio and An are also plotted. See Supplementary Table S1 and Fig. S4.
Figure 3Characterization of basal-type cone arrays prepared with dendritic viologen-arranged molecules with anchor units at their periphery.
(a) Redox process of the viologen unit. (b) Cyclic voltammograms of Vio- and Bn-SAMs measured in 100 mM NaNO3 at a scan rate of 200 mV s−1. (c) Charge-time curves of bare Au substrate, Vio- and Bn-SAMs obtained by chronocoulometry with the potential step from −650 mV to −200 mV vs. SCE. (d) Changes in ΓV (i) and SP (ii) of Bn-SAMs (red dots) as a function of dendritic generation. ΓV and SP values expected under the assumption of a close-packed structure of the peripheral units are also plotted (crosses). (e) Space-filling model and schematic of the cone array for B3-SAM on the electrode. (f) S 2p XPS spectra of B3-SAM, a B3 cast film, and a typical SAM of C10-SH (C10-SAM). (g) Tapping-mode AFM height images of Vio- (iii) and B3-SAMs (iv) observed in 100 mM NaNO3. The height profiles along the red lines in the images are also shown.
Characterization of SAMs prepared with viologen-arranged molecules.
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|---|---|---|---|---|---|---|---|---|---|
| Entries | Molecules | mV vs. SCE | unit mol cm−2 | mol cm−2 | Å2 | Å2 | |||
| 1 | 1 | 1 | −375 | 4.1 × 10−10 | 4.1 × 10−10 | 40 | - | ||
| 2 | 3 | 2 | −404 | 5.0 × 10−10 | 1.7 × 10−10 | 99 | 50 | ||
| 3 | 7 | 4 | −406 | 5.6 × 10−10 | 8.1 × 10−11 | 206 | 51 | ||
| 4 | 15 | 8 | −402 | 6.5 × 10−10 | 4.3 × 10−11 | 385 | 48 | ||
| 5 | 3 | 2 | −406 | 5.3 × 10−10 | 1.8 × 10−10 | 94 | 47 | ||
| 6 | 7 | 4 | −394 | 7.6 × 10−10 | 1.1 × 10−10 | 153 | 38 | ||
| 7 | 15 | 8 | −390 | 9.8 × 10−10 | 0.7 × 10−10 | 253 | 32 | ||
NV, number of viologen units. NP, number of peripheral viologen units. E1/2, half-wave potential for the V2+/V+• process of the viologen units. ΓV, surface density of viologen unit. ΓD, surface density of the molecule. SD, area occupied by one molecule. SP, area occupied by one peripheral viologen unit.
*Determined by CV measurement in 100 mM NaNO3.
†Determined by chronocoulometry with the potential step from −650 mV to −200 mV vs. SCE in 100 mM NaNO3.
ǂEvaluated on the basis of ΓV.
Figure 4Characterization of apical-type cone arrays prepared with dendritic viologen-arranged molecules with anchor units at their apex.
(a) Cyclic voltammograms of An-SAMs measured in 100 mM NaNO3 at a scan rate of 200 mV s−1. (b) Charge-time curves of An-SAMs obtained by chronocoulometry with the potential step from −650 mV to −200 mV vs. SCE. (c) Changes in ΓV (i) and SP (ii) of An-SAMs (blue diamonds) as a function of dendritic generation. ΓV and SP values expected under the asumption of a close-packed structure of the peripheral units are also plotted (crosses). (d) Space-filling model and schematic of the cone array for A3-SAM on the electrode. (e) Tapping-mode AFM height image of A3-SAM observed in 100 mM NaNO3. The height profile along the red line in the image is also shown.