<P>Fe<SUP>0</SUP>nanoparticle-supported polyaniline (PANI) composite nanofibers were prepared as an additive for carbonyl iron (CI)-based magnetorheological (MR) fluids to improve the MR properties and dispersion stability. A simple ...
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https://www.riss.kr/link?id=A107478843
2015
-
SCIE
학술저널
1861-1868(8쪽)
0
상세조회0
다운로드다국어 초록 (Multilingual Abstract)
<P>Fe<SUP>0</SUP>nanoparticle-supported polyaniline (PANI) composite nanofibers were prepared as an additive for carbonyl iron (CI)-based magnetorheological (MR) fluids to improve the MR properties and dispersion stability. A simple ...
<P>Fe<SUP>0</SUP>nanoparticle-supported polyaniline (PANI) composite nanofibers were prepared as an additive for carbonyl iron (CI)-based magnetorheological (MR) fluids to improve the MR properties and dispersion stability. A simple chemical strategy was adopted to synthesize the PANI/Fe<SUP>0</SUP>composite nanofibers. The synthesis method was based on the initial fabrication of interconnected PANI nanofibers by a rapidly mixed polymerization process using ferric chloride (FeCl3) as the oxidant and the subsequent reductive support of Fe<SUP>0</SUP>nanoparticles onto the PANI nanofiber matrix using the polymerization by-products as a metal precursor. X-ray diffraction, Fourier transform infrared spectroscopy, and X-ray photoelectron spectroscopy showed that the fabricated nanofibers were composed of PANI and Fe<SUP>0</SUP>. Scanning and transmission electron microscopy imaging confirmed that the PANI/Fe<SUP>0</SUP>composite nanofibers were 80-150 nm in diameter with an interconnected matrix. The MR fluid with the PANI/Fe<SUP>0</SUP>composite nanofibers dispersed in mineral oil under an external magnetic field showed enhanced MR properties compared to that without an additive. Turbiscan data also confirmed the improved sedimentation properties of the MR fluid with an additive.</P>
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