Cu x S thin films are implanted by low energy N + ion beam. The influences of the energy and dose of N + ion implantation on Cu x S films are investigated. The results show that the ratio of copper to sulfur is increa...Cu x S thin films are implanted by low energy N + ion beam. The influences of the energy and dose of N + ion implantation on Cu x S films are investigated. The results show that the ratio of copper to sulfur is increased to some extent, the constituents of the film are turned to rich copper phase from rich sulfurous phase after ion beam irradiation. X-ray diffraction spectrum and optical transmission spectra of sample have confirmed the results.展开更多
The Basofil fiber is a new type of high-temperature fiber. Its Limiting Oxygen Index (LOI) value reaches 32. It does not melt, drop down or smolder when it contacts fire. The fiber is condensed from melamine and forma...The Basofil fiber is a new type of high-temperature fiber. Its Limiting Oxygen Index (LOI) value reaches 32. It does not melt, drop down or smolder when it contacts fire. The fiber is condensed from melamine and formaldehyde into a cross-linked with methylene-ether and methylene bridge bond. This thesis discusses the change of fiber structure and performance after the acid treatment.展开更多
文摘Cu x S thin films are implanted by low energy N + ion beam. The influences of the energy and dose of N + ion implantation on Cu x S films are investigated. The results show that the ratio of copper to sulfur is increased to some extent, the constituents of the film are turned to rich copper phase from rich sulfurous phase after ion beam irradiation. X-ray diffraction spectrum and optical transmission spectra of sample have confirmed the results.
文摘The Basofil fiber is a new type of high-temperature fiber. Its Limiting Oxygen Index (LOI) value reaches 32. It does not melt, drop down or smolder when it contacts fire. The fiber is condensed from melamine and formaldehyde into a cross-linked with methylene-ether and methylene bridge bond. This thesis discusses the change of fiber structure and performance after the acid treatment.
基金Supported by National High Technology Research and Development Program of China (863 Program) (2006AA04Z182), National Creative Research Groups Science Foundation of China (60721062), and National Natural Science Foundation of China (60736021)