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Influence of polar groups on the wetting properties of vertically aligned multiwalled carbon nanotube surfaces
Authors:S C Ramos  A O Lobo  G de Vasconcelos  E F Antunes  V J Trava-Airoldi  E J Corat
Institution:1. Laboratorio Associado de Sensores e Materiais, Instituto Nacional de Pesquisas Espaciais, INPE, Avenida dos Astronautas, 1758, Jardim da Granja, S?o Jos?? dos Campos, SP, 12227-010, Brazil
2. Departamento de Ci??ncias, Universidade do Estado da Bahia, UNEB, Centro, S/N, Caetit??, BA, 46400-000, Brazil
3. Laboratorio de Nanotecnologia Biom??dica, Instituto de Pesquisa e Desenvolvimento, IP&D, Universidade do Vale do Para??ba, UniVaP, Avenida Shishima Hifumi, 2911, Urbanova, S?o Jos?? dos Campos, SP, 12244-000, Brazil
4. Instituto de Estudos Avan?ados, IEAv, Trevo Coronel Aviador Jos?? Albano do Amarante, 1, Putim, S?o Jos?? dos Campos, SP, 12228-001, Brazil
5. Instituto Tecnologico de Aeron??utica (ITA), Pra?a Marechal Eduardo Gomes 50, S?o Jos?? dos Campos, SP, 12228-900, Brazil
Abstract:In this work, we have studied superhydrophilic and superhydrophobic transitions on the vertically aligned multiwalled carbon nanotube (VACNT) surfaces. As-grown, the VACNT surfaces were superhydrophobic. Pure oxygen plasma etching modified the VACNT surfaces to generate superhydrophilic behavior. Irradiating the superhydrophilic VACNT surfaces with a CO2 laser (up to 50?kW?cm?2) restored the superhydrophobicity to a level that depended on the laser intensity. Contact angle and surface energy measurements by the sessile drop method were used to examine the VACNT surface wetting. X-ray photoelectron spectroscopy (XPS) showed heavy grafting of the oxygen groups onto the VACNT surfaces after oxygen plasma etching and their gradual removal, which also depended on the CO2 laser intensity. These results show the great influence of polar groups on the wetting behavior, with a strong correlation between the polar part of the surface energy and the oxygen content on the VACNT surfaces. In addition, the CO2 laser treatment created an interesting cage-like structure that may be responsible for the permanent superhydrophobic behavior observed on these samples.
Keywords:
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