Antistatic effects of silver plated carbon nanotubes on polymer fiber
Chensha Li
Abstract
Chensha Li
Abstract
A new antistatic fiber was investigated by using carbon nanotubes (CNTs) to enhance the antistatic ability of polymer fibers. Composite antistatic agent, prepared by dispersing CNTs in organic antistatic agent, was cospun with polypropylene to prepare antistatic fibers. Experimental results show that the friction electrostatic charge of the antistatic fibers prepared by conspinning polypropylene and composite antistatic agent was lowere than that of the antistatic fibers prepared by conspinning polypropylene and pure antistatic agent, the friction electrostatic charge could further decrease if the antistatic agent was filled with CNTs plated by silver. The CNTs plated by siver can further enhance the antistatic ability due to its improved concuctivity.
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A new antistatic fiber was investigated by using carbon nanotubes (CNTs) to enhance the antistatic ability of polymer fibers. Composite antistatic agent, prepared by dispersing CNTs in organic antistatic agent, was cospun with polypropylene to prepare antistatic fibers. Experimental results show that the friction electrostatic charge of the antistatic fibers prepared by conspinning polypropylene and composite antistatic agent was lowere than that of the antistatic fibers prepared by conspinning polypropylene and pure antistatic agent, the friction electrostatic charge could further decrease if the antistatic agent was filled with CNTs plated by silver. The CNTs plated by siver can further enhance the antistatic ability due to its improved concuctivity.
Key concepts: Antistatic agent, Materials science, Polypropylene, Composite material, Composite number, Fiber, Polymer, Layer (electronics)