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Effects of radio-frequency powers on the properties of carbon coatings on optical fibers prepared by plasma enhanced chemical vapor deposition

机译:射频功率对等离子增强化学气相沉积制备的光纤上碳涂层性能的影响

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摘要

The effect of radio-frequency powers on the properties of carbon coatings on optical fibers prepared by plasma enhanced chemical vapor deposition is investigated. The radio-frequency powers are selected at 150, 200, 250, 300, and 350 W. Results indicate that if the radio-frequency power increases from 150 to 350 W, the deposition rate of carbon coatings and carbon grain size increase. As the radio-frequency power changes from 150 to 200 W, the water contact angle of carbon coatings increases due to the increase of sp(3)-CHx bonding. Alternatively, as the radio-frequency power increases from 200 to 350 W, the water contact angle of carbon coatings gradually reduces which is resulted from the increase of surface toughness. As the radio-frequency power is 200 W, the carbon coating has the highest water-repellency and the excellent ability to sustain the low-temperature loading, so it is the best for production of the hermetic optical fiber coating.
机译:研究了射频功率对等离子体增强化学气相沉积制备的光纤上碳涂层性能的影响。射频功率选择为150、200、250、300和350W。结果表明,如果射频功率从150 W增加到350 W,则碳涂层的沉积速率和碳晶粒尺寸会增加。随着射频功率从150 W变为200 W,碳涂层的水接触角由于sp(3)-CHx键的增加而增加。或者,随着射频功率从200 W增加到350 W,碳涂层的水接触角逐渐减小,这是由于表面韧性的增加所致。由于射频功率为200 W,因此碳涂层具有最高的拒水性和出色的承受低温负荷的能力,因此它是生产密封光纤涂层的最佳选择。

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