4.6 Article

Branched sulfonated polyimide/functionalized silicon carbide composite membranes with improved chemical stabilities and proton selectivities for vanadium redox flow battery application

期刊

JOURNAL OF MATERIALS SCIENCE
卷 53, 期 20, 页码 14506-14524

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SPRINGER
DOI: 10.1007/s10853-018-2620-x

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资金

  1. National Natural Scientific Foundation of China [21206138]
  2. Application Foundation Project of Science and Technology Department of Sichuan Province, China [2016JY0220]
  3. Longshan Academic Talent Research Supporting Program of SWUST [17LZX402, 18 LZX441]
  4. Postgraduates Innovation Fund of SWUST [17ycx014]

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Silicon carbide (SiC) was pretreated and functionalized by using alpha, omega-di-aminopropyl polydimethylsiloxane (PDMS) to obtain a novel inorganic filler SiC (PDMS). Then, a series of branched sulfonated polyimide/SiC (PDMS) (bSPI/SiC (PDMS)) composite membranes with different contents of SiC (PDMS) were fabricated for vanadium redox flow battery (VRFB) application. Fourier transform infrared spectra, X-ray diffraction, and field emission scanning electron microscope demonstrate the successful preparation of SiC (PDMS) and bSPI/SiC (PDMS) membranes. The thermogravimetric analysis shows that bSPI/SiC (PDMS)-1.5% membrane has better thermal stability than pure bSPI, bSPI/SiC-1.5%, and Nafion 117 membranes. The ex situ chemical stability test results show that bSPI/SiC (PDMS)-0.5-2.5% composite membranes have better chemical stabilities than pure bSPI membrane. The physicochemical properties of bSPI/SiC (PDMS) membranes, including water uptake, swelling ratio, ion exchange capacity are investigated. Thereinto, bSPI/SiC (PDMS)-1.5% membrane has the highest proton selectivity (S: 2.99 x 10(5) S min cm(-3)) and was chosen as an optimum VRFB membrane. And the VRFB assembled with bSPI/ SiC (PDMS)-1.5% membrane exhibits better battery performance than that assembled with Nafion 117 membrane during 500-time cyclic charge-discharge test at 20-60 mA cm(-2). Above results indicate that as-optimized bSPI/SiC (PDMS)-1.5% membrane has great potential for VRFB application.

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