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Boosting the electrical and mechanical properties of structural dielectric capacitor composites via gold nanoparticle doping
被引:37
作者:
Chan, Kit-Ying
[1
]
Yang, Dan
[1
]
Demir, Baris
[2
]
Mouritz, Adrian P.
[3
]
Lin, Han
[1
]
Jia, Baohua
[1
]
Lau, Kin-Tak
[1
,4
]
机构:
[1] Swinburne Univ Technol, Ctr Translat Atomat, Melbourne, Vic 3122, Australia
[2] Univ Queensland, Australian Inst Bioengn & Nanotecimol, Ctr Theoret & Computat Mol Sci, Brisbane, Qld 4072, Australia
[3] RMIT Univ, Sch Engn, Melbourne, Vic 3001, Australia
[4] Asia Univ, Coll Creat Design, Dept Creat Prod Design, Taichung, Taiwan
关键词:
Particle reinforcement;
Microstructures;
Mechanical properties;
Electrical properties;
FIBER-REINFORCED POLYMER;
GRAPHENE OXIDE;
EPOXY;
NANOCOMPOSITES;
FABRICATION;
DESIGN;
CONDUCTIVITY;
POLYANILINE;
STRENGTH;
SUPERCAPACITORS;
D O I:
10.1016/j.compositesb.2019.107480
中图分类号:
T [工业技术];
学科分类号:
08 ;
摘要:
Structural dielectric capacitors (SDCs) are load-bearing multifunctional materials that uniquely combine high electrical energy storage capacity with high mechanical properties. The development of electrically conductive carbon fibre reinforced polymer (CFRP)-based electrodes is a promising approach to create high strength SDCs, although challenges remain due to the low conductivity of epoxy matrix of CFRP. Carbon nanotubes and graphene nanoplatelets are commonly used as conductive fillers to produce electrically conductive polymers. However, the electrical conductivity of composites is restricted by the maximum filler content, which is essential to retain composite structures. In this work, gold nanoparticles (AuNPs) with high electrical conductivity were added in different weight fractions (up to 1 wt%) into the epoxy matrix of CFRP electrodes used in graphene oxide-bearing SDCs (GO/SDCs). The electrical conductivity of AuNP-modified CFRP electrodes was 15-250% higher than the unmodified CFRP electrode, depending on the concentration of nanoparticles. As a result, both specific capacitance and energy storage density of AuNPs-modified GO/SDCs were higher (up to similar to 170% and similar to 50%, respectively) than the unmodified GO/SDC. Furthermore, AuNP-modified GO/SDCs had higher tensile and interlaminar shear properties. This research provides new insights into improving both the electrical and mechanical properties of SDCs using AuNPs.
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