| Literature DB >> 26665079 |
Gabriela Ramos Chagas1, Thierry Darmanin1, Frédéric Guittard1.
Abstract
Materials with bioinspired superhydrophobic properties are highly desirable for many potential applications. Here, nine novel monomers derived from indole are synthesized to obtain these properties by electropolymerization. These monomers differ by the length (C4F9, C6F13 and C8F17) and the position (4-, 5- and 6-position of indole) of the perfluorinated substituent. Polymeric films were obtained with C4F9 and C6F13 chains and differences in the surface morphology depend especially on the substituent position. The polyindoles exhibited hydrophobic and superhydrophobic properties even with a very low roughness. The best results are obtained with PIndole-6-F 6 for which superhydrophobic and highly oleophobic properties are obtained due to the presence of spherical nanoparticles and low surface energy compounds.Entities:
Keywords: bioinspiration; conducting polymers; electrochemistry; nanostructures; polyindoles; superhydrophobic
Year: 2015 PMID: 26665079 PMCID: PMC4660953 DOI: 10.3762/bjnano.6.212
Source DB: PubMed Journal: Beilstein J Nanotechnol ISSN: 2190-4286 Impact factor: 3.649
Scheme 1Original indole monomers synthesized and used in this manuscript.
Oxidation potential (Eox) and working potential (Ew) for each monomer by electrochemical process. Electropolymerization in 0.1 M of acetonitrile/Bu4NClO4.
| monomer | oxidation potential | working potential |
| 1.64 | 1.56 | |
| 1.30 | 1.23 | |
| 1.31 | 1.26 | |
| 1.13 | 1.08 | |
| 1.19 | 1.13 | |
| 1.15 | 1.10 | |
| 1.07 | 1.03 | |
| 1.14 | 1.08 | |
| 1.06 | 1.01 | |
| 0.99 | 0.96 | |
Figure 1Cyclic voltammogram of the monomer Indole-6-F (1 scan at 20 mV·s−1). Electropolymerization in 0.1 M of acetonitrile/Bu4NClO4.
Figure 2Cyclic voltammogram of polyindoles. (a) Indole-6-F, (b) Indole-6-F and (c) Indole-6-F (5 scans at 20 mV·s−1). Electropolymerization in 0.1 M of acetonitrile/Bu4NClO4.
Figure 3SEM images at two different magnifications (5000× and 25000×) of the polyindoles substituted with C6F13 chains in the different positions.
Figure 4SEM images at two different magnifications (5000× and 25000×) of the polyindoles substituted with C4F9 chains in the different positions.
Arithmetic roughness (Ra), quadratic roughness (Rq) and apparent contact angles (θ) for the four probe liquids (water, diiodomethane, sunflower oil and hexadecane) for the polymers as a function of the normalized deposition charge.
| polymer | normalized deposition charge (mC·cm−2) | θwater | θdiiodomethane | θsunflower | θhexadecane | ||
| 12.5 | 13.0 | 15.9 | 73.2 | 30.5 | 13.3 | 0 | |
| 25 | 10.8 | 13.2 | 71.5 | 25.3 | 12.0 | 0 | |
| 50 | 14.3 | 16.9 | 71.5 | 23.0 | 14.6 | 0 | |
| 100 | 21.9 | 31.0 | 69.8 | 27.2 | 10.9 | 0 | |
| 12.5 | 15.5 | 19.5 | 109.2 | 83.1 | 57.7 | 65.1 | |
| 25 | 12.9 | 15.8 | 110.0 | 89.3 | 65.7 | 69.3 | |
| 50 | 12.7 | 15.2 | 112.4 | 88.8 | 77.0 | 72.4 | |
| 100 | 45.2 | 65.4 | 109.9 | 82.3 | 68.1 | 72.0 | |
| 12.5 | 8.7 | 13.4 | 117.1 | 98.7 | 78.8 | 75.3 | |
| 25 | 9.5 | 19.0 | 116.3 | 100.7 | 92.5 | 73.8 | |
| 50 | 8.5 | 18.1 | 122.1 | 99.8 | 96.8 | 77.5 | |
| 100 | 17.7 | 31.2 | 124.8 | 103.3 | 87.0 | 74.8 | |
| 12.5 | 17.5 | 25.3 | 146.5 | 106.5 | 92.1 | 79.8 | |
| 25 | 11.6 | 18.3 | 149.3 | 111.3 | 86.9 | 87.7 | |
| 50 | 22.1 | 33.4 | 159.0 | 116.3 | 107.1 | 93.3 | |
| 100 | 26.3 | 38.9 | 158.9 | 117.6 | 107.3 | 92.6 | |
| 12.5 | 17.0 | 20.8 | 96.7 | 75.2 | 39.6 | 45.6 | |
| 25 | 16.5 | 20.2 | 99.5 | 83.3 | 59.4 | 52.3 | |
| 50 | 16.6 | 19.6 | 100.2 | 78.8 | 53.4 | 60.3 | |
| 100 | 15.4 | 18.9 | 98.7 | 78.1 | 59.6 | 43.4 | |
| 12.5 | 36.8 | 50.2 | 107.6 | 85.7 | 68.0 | 48.8 | |
| 25 | 50.2 | 67.0 | 106.4 | 86.9 | 84.6 | 74.4 | |
| 50 | 117.0 | 158.9 | 108.4 | 85.7 | 70.2 | 61.4 | |
| 100 | 150.6 | 194.2 | 106.0 | 92.6 | 75.0 | 71.1 | |
| 12.5 | 76.1 | 99.8 | 127.1 | 114.9 | 97.1 | 88.6 | |
| 25 | 71.5 | 98.8 | 142.9 | 122.7 | 106.7 | 97.7 | |
| 50 | 174.5 | 243.3 | 133.1 | 119.5 | 103.3 | 93.3 | |
| 100 | 153.3 | 202.9 | 131.2 | 120.2 | 100.8 | 93.4 | |
Figure 5Image of a water droplet deposited on PIndole-4-F, PIndole-5-F and PIndole-4-F; Qs = 100 mC·cm−2.
Dynamic water contact angles (hysteresis H and sliding angle α) for PIndole-6-F as a function of the normalized deposition charge.
| normalized deposition charge (mC·cm−2) | α (°) | |
| 12.5 | sticky behavior | |
| 25 | sticky behavior | |
| 50 | 2.1 | 20.6 |
| 100 | 0.8 | 9.5 |
Arithmetic roughness (Ra), quadratic roughness (Rq) and apparent contact angles (θ) for the four probe liquids (water, diiodomethane, sunflower oil and hexadecane) for the “smooth” polymers.
| polymer | θYwater | θYdiiodomethane | θYsunflower | θYhexadecane | ||
| 6.3 | 8.8 | 79.9 | 47.3 | 0 | 0 | |
| 6.6 | 9.5 | 97.5 | 51.3 | 41.5 | 25.6 | |
| 7.3 | 9.4 | 78.7 | 35.6 | 16.0 | 0 | |
| 6.4 | 9.8 | 96.8 | 60.4 | 47.3 | 37.9 | |
| 6.3 | 8.1 | 81.4 | 44.9 | 0 | 0 | |
| 6.8 | 9.5 | 99.4 | 66.8 | 50.7 | 44.1 | |
| 7.8 | 10.1 | 81.1 | 45.7 | 19.5 | 0 | |
Scheme 2Synthesis way to the indole derivatives.