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- W2088231198 abstract "Abstract The annealing effect on the improvement of hermetically carbon‐coated optical fibers prepared by plasma enhanced chemical vapor deposition method with methane and argon as precursor gases is studied. The annealing temperatures were selected as 100, 200, 300, 400, and 500°C. The film thickness of carbon films decreases with increasing annealing temperature. The analytic results of Raman, FTIR, and optical band gap show that the structure models of carbon coatings after annealing can be divided into three groups. When the annealing temperature is below 300°C, the unbonded hydrogen atoms in the carbon film recombine with unsaturated carbon bonds, and carbon coatings with a cross‐linking structure are observed. Alternatively, when the annealing temperature exceeds 300°C, the desorption of hydrogen and hydrocarbon from the edges of the sp2 clusters becomes conspicuous. Furthermore, when the annealing temperature rises to 500°C, the thermal annealing promotes the sp2 clusters to combine and grow rapidly. Thus, a structural modification occurs in carbon films at this annealing temperature. The carbon films annealed at the temperature of 300°C have excellent ability to sustain thermal loading, so it is the best for production of carbon‐coated optical fibers." @default.
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- W2088231198 date "2008-03-01" @default.
- W2088231198 modified "2023-10-14" @default.
- W2088231198 title "The annealing effect on the improvement of hermetically carbon‐coated optical fibers prepared by plasma enhanced chemical vapor deposition method with methane and argon as precursor gases" @default.
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- W2088231198 doi "https://doi.org/10.1080/02533839.2008.9671378" @default.
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