Catalyst particles were found together with the BCN nanotubes.
在所有生成的BCN纳米管中含有催化剂颗粒.
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Boron carbon nitride ( BCN ) thin films were deposited by radio frequency ( RF ) magnetron sputtering .
采用射频 磁控溅射 技术制备出硼碳氮 ( BCN ) 薄膜.
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BCN thin films were grown by RF reactive sputtering.
用射频反应溅射法制备出BCN薄膜.
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Amorphous BCN ( a - BCN ) was prepared by milling the mixture for 120 h.
经120h球磨制备出BCN非晶体.
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It is found that the catalysts have a strong effect on the growth of BCN nanotubes.
实验中发现催化剂在BCN纳米管 的生长过程中有重要作用.
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A Simple growth model of ternary BCN compound is proposed in this paper.
提出了BCN三元化合物生长的简单模型.
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Deposited BCN thin films were characterized by Fourier transform infrared spectroscopy ( FTIR ) , spectroscopy ( RS ).
磁控溅射法 沉积硼碳氮薄膜,得到的硼碳氮薄膜可用 红外, 拉曼表征.
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Besides diamond and c - BN, ? ? - C 3 N 4, c - BCN and fullerenes are also potential candidates for superhard materials.
在B - C- N系 超硬材料中,除了金刚石和立方氮化硼(c - BN)以外, β-C_3N_4 、 立方氮碳化硼以及富勒烯等材料,也正日益受到国际材料界的重视.
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