| Literature DB >> 28262706 |
Haihua Wang1, Huan Wen1, Bin Hu2, Guiqiang Fei1, Yiding Shen1, Liyu Sun1, Dong Yang1.
Abstract
WaterborneEntities:
Year: 2017 PMID: 28262706 PMCID: PMC5337951 DOI: 10.1038/srep43694
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1(a) Preparation scheme of PANI-g-EPVA. (b) The optical photos of in situ PVA/PANI and PANI-g-EPVA dispersions and the corresponding films. (c) The molecular model and stabilizing mechanism of in situ PVA/PANI and PANI-g-EPVA dispersions, as well as the optical photos and TEM morphology.
Figure 2(a) The surface and cross-section SEM morphology and representative model of in situ PVA/PANI and PANI-g-EPVA. (b) TG and DTG curves of in situ PVA/PANI and PANI-g-EPVA.
Figure 3(a) Steady rheology of PVA, EPVA, EPVA-aniline and PANI-g-EPVA corresponding to each preparation step. (b) Steady rheology of in situ PVA/PANI and PANI-g-EPVA. (c) Steady rheology of EPVA-aniline at different aniline content. (d) Variation of modulus with time for in situ PVA/PANI and PANI-g-EPVA at 80 °C.
Figure 4(a) Effects of aniline content on the steady rheology of PANI-g-EPVA dispersions. (b) Variation of modulus with time for PANI-g-EPVA dispersions prepared with different aniline content. (c) TEM images and (d) Schematic models of the nanostructured PANI-g-EPVA dispersion with different aniline contents.
Figure 5(a) UV-Vis spectra of the PANI-g-EPVA dispersions. (b) Effects of aniline content on the conductivity and tensile strength of PANI-g-EPVA nanocomposite films.
Figure 6(a) SEM photographs of the PANI-g-EPVA nanocomposite films at different aniline contents. (b) TG thermograms of PANI-g-EPVA nanocomposite films at different aniline contents. (c) DTG thermograms of PANI-g-EPVA nanocomposite films at different aniline contents: a–0%, b–20%, c–30%, d–40%, e–45%. (d) Storage modulus (G′) and loss modulus (G″) as a function of temperature for PANI-g-EPVA nanocomposite films at different aniline contents: a–20%, b–30%, c–40%.
Figure 7The morphology (a), model (b) and mechanical property (c) of uncoated and coated paper with PANI-g-EPVA.