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Integrated oxide graphene based device for laser inactivation of pathogenic microorganisms

机译:基于集成氧化物石墨烯的激光灭活病原微生物的设备

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We develop device for virus disinfection of pathogenic microorganisms. Viral decontamination can be carried out due to hard ultraviolet irradiation and singlet oxygen destroying the genetic material of a virus capsid. UV rays can destroy DNA, leading to the formation of dimers of nucleic acids. This practically does not occur in tissues, tk. UV rays penetrate badly through them, however, the viral particles are small and UV can destroy their genetic material, RNA / DNA and the virus can not replicate. It is with the construction of the ultraviolet laser water disinfection system (UFLOV) based on the continuous and periodic pulsed ultraviolet laser sources (pump) binds to solve sterility and depyrogenation of water. It has been established that small doses of UV irradiation stimulate reproduction, and large doses cause the death of pathogenic microorganisms. The effect of a dose of ultraviolet is the result of photochemical action on the substance of a living bacterial cell or virion. Also complex photodynamic laser inactivation on graphene oxide is realized.
机译:我们开发用于病原微生物病毒消毒的设备。可以通过强紫外线照射和单线态氧破坏病毒衣壳的遗传物质来进行病毒净化。紫外线可以破坏DNA,导致核酸二聚体的形成。这实际上在组织tk中不发生。紫外线会严重穿透它们,但是病毒颗粒很小,紫外线会破坏其遗传物质,RNA / DNA,并且病毒无法复制。它与紫外线激光水消毒系​​统(UFLOV)的构建基于连续和周期性的脉冲紫外线激光源(泵)结合,可解决水的无菌性和去热原性问题。已经确定,小剂量的紫外线辐射会刺激生殖,大剂量的紫外线会导致致病微生物的死亡。紫外线剂量的作用是对活细菌细胞或病毒体物质进行光化学作用的结果。还实现了在氧化石墨烯上的复杂的光动力激光灭活。

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