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The total thickness of B/Ti multilayer films is 8 μm, and the modulation period thickness is 400 nm.
In other words, the crystallization power threshold of multilayer films is decreased when its periodic number is increased.
The layered structure of the B/Ti multilayer films is clearly visible with sharp and smooth interfaces.
A biosensor based on the excitation of surface electromagnetic waves in photonic band gap multilayer films is demonstrated.
Confined crystallization of high-density polyethylene (HDPE) in multilayer films is studied in this paper.
Meanwhile, the coercivity Hc is down to 10 Oe, and the resonant frequency of multilayer films is down to 2.3 GHz.
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Multilayer films are useful since the outer layers may contribute strength and moisture resistance while an inner layer may control oxygen permeability an important factor in food packaging.
The difference between the monolayer films and the multilayer films was the sputtering process.
However, the resonant frequency of multilayer films was decreased to 2.3 GHz simultaneously.
Multilayer films were manufactured using e-beam evaporation at room temperature.
The thicknesses of Ag/ITO/Ag multilayer films were controlled by sputtering time.
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