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Poly(vinyl alcohol)-based crosslinked ternary polymer blend doped with sulfonated graphene oxide as a sustainable composite membrane for direct borohydride fuel cells
被引:59
作者:
Gouda, M. H.
[1
]
Gouveia, W.
[2
]
Afonso, M. L.
[2
]
Sljukic, B.
[2
]
El Essawy, N. A.
[3
]
Nassr, Ab. A. A.
[4
]
Santos, D. M. F.
[2
]
机构:
[1] City Sci Res & Technol Applicat SRTA City, ATNMRI, Polymer Mat Res Dept, Alexandria 21934, Egypt
[2] Univ Lisbon, Inst Super Tecn, Ctr Phys & Engn Adv Mat CeFEMA, P-1049001 Lisbon, Portugal
[3] City Sci Res & Technol Applicat SRTA City, ATNMRI, Cent Labs, Alexandria 21934, Egypt
[4] City Sci Res & Technol Applicat SRTA City, ATNMRI, Elect Mat Res Dept, Alexandria 21934, Egypt
关键词:
Nanocomposite membrane;
PVA-Based blend;
Crosslinked ternary polymer blend;
Sulfonated graphene oxide;
Direct borohydride fuel cell;
PROTON-EXCHANGE MEMBRANES;
POLY(ETHER ETHER KETONE);
OF-THE-ART;
HIGH-PERFORMANCE;
ELECTROLYTE MEMBRANE;
HYDROGEL MEMBRANE;
NANOCOMPOSITE MEMBRANES;
CONDUCTIVITY;
STABILITY;
ACID;
D O I:
10.1016/j.jpowsour.2019.05.078
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
Large-scale production of low-temperature fuel cells, such as the direct borohydride fuel cell (DBFC), demands the development of less expensive membranes. Herein, composite membranes are produced based on an ecological and simple approach via polymer crosslinking and casting techniques. First, a ternary crosslinked polymer is prepared from low-cost and readily available polymers, containing poly (vinyl alcohol), poly (ethylene oxide) and poly (vinyl pyrrolidone). Sulfonated graphene oxide (SGO) is then synthesized from expanded graphite and incorporated as doping agent into the polymer matrix, as confirmed by SEM, TEM, XRD, FTIR, XPS and Raman spectroscopy. The prepared membranes' physicochemical properties (tensile strength, chemical stability, ionic conductivity) are improved as a result of good compatibility between the oxygen-containing functional groups of SGO and the polymers functional groups. The introduction of SGO in the membrane decreases the swelling ratio to 17% and lowers the permeability to borohydride anion by two orders of magnitude (to 0.18x 10-6 cm(2) s(-1)). Peak power density of DBFC using SGO-doped membrane separator (65 mW cm(-2)) is close to that of Nafion (R) 117 (81 mW cm(-2)) under the same testing conditions. The simple processing and general features of these composite membranes enable the development of cost-effective and, therefore, more sustainable DBFCs.
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页码:92 / 101
页数:10
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