Polydopamine-Modified Polyaniline/Nanodiamond Ternary Hybrids with Brain Fold-like Surface for Enhanced Dual Band Electromagnetic Absorption AITranslate
Abstract AITranslate
Polydopamine-modified nanodiamond/polyaniline ternary hybrids with brain fold-like surfaces were synthesized through an in situ polymerization. The surface morphology and structure were characterized by X-ray diffraction analysis and scanning and transmission electron microscopy. In the ternary hybrids, the dispersion of nanodiamond was improved. Meanwhile, a uniform brain fold-like surface could form after adding a certain amount of dopamine. The hybrid interactions were confirmed by Fourier transform infrared spectroscopy and X-ray photoelectron spectroscopy. The hydrogen bonding interactions as well as the π–π hybrid interactions dominate the tannery hybridization, which could introduce a more asymmetrical polarization center and interface. The optimized polydopamine-modified nanodiamond/polyaniline ternary hybrid exhibited obvious dual band enhanced electromagnetic absorption (−24.3 dB, 5.0 GHz and −23.5 dB, 15.9 GHz). The electromagnetic losses result from the surface brain fold-like structure, the well dispersed nanodiamond size effect, and the ternary hybridization. Our finding indicates this material has great potential interest in high performance electromagnetic selective absorption materials covering the C band and Ku band.
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DOI:https://doi.org/10.1021/acsapm.8b00127
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Polydopamine-modified nanodiamond/polyaniline ternary hybrids with brain fold-like surfaces were synthesized through an in situ polymerization. The surface morphology and structure were characterized by X-ray diffraction analysis and scanning and transmission electron microscopy. In the ternary hybrids, the dispersion of nanodiamond was improved. Meanwhile, a uniform brain fold-like surface could form after adding a certain amount of dopamine. The hybrid interactions were confirmed by Fourier transform infrared spectroscopy and X-ray photoelectron spectroscopy. The hydrogen bonding interactions as well as the π–π hybrid interactions dominate the tannery hybridization, which could introduce a more asymmetrical polarization center and interface. The optimized polydopamine-modified nanodiamond/polyaniline ternary hybrid exhibited obvious dual band enhanced electromagnetic absorption (−24.3 dB, 5.0 GHz and −23.5 dB, 15.9 GHz). The electromagnetic losses result from the surface brain fold-like structure, the well dispersed nanodiamond size effect, and the ternary hybridization. Our finding indicates this material has great potential interest in high performance electromagnetic selective absorption materials covering the C band and Ku band.
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| GB/T 7714-2015 | [1] Xiangnan Chen, Junxiang Zhou, Yan Zhang, et al. ACS Applied Polymer Materials, 2019(1). DOI:10.1021/acsapm.8b00127. |
| MLA | [1] Xiangnan Chen, et al., ACS Applied Polymer Materials, no. 1, 2019, https://doi.org/10.1021/acsapm.8b00127. |
| APA | [1] Xiangnan Chen, Junxiang Zhou, Yan Zhang, Shibu Zhu, Xin Tian, Fanchen Meng, Liying Cui, Peihong Xue, Ruoxuan Huang, & Juncai Sun. (2019). ACS Applied Polymer Materials(1). https://doi.org/10.1021/acsapm.8b00127 |
| IEEE | [1] Xiangnan Chen, Junxiang Zhou, Yan Zhang, Shibu Zhu, Xin Tian, Fanchen Meng, Liying Cui, Peihong Xue, Ruoxuan Huang, and Juncai Sun, ACS Applied Polymer Materials, no. 1, 2019, doi: 10.1021/acsapm.8b00127. keywords: {polydopamine;polyaniline;nanodiamond;brain foldlike surface;ternary hybrids;interface;dual band electromagnetic absorption} |
