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Development of biomedical applications of non-equilibrium plasmas and possibilities for atmospheric pressure nanotechnology applications

机译:非平衡等离子体的生物医学应用的发展以及大气压纳米技术应用的可能性

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In this paper we discuss the synergisms between different realms of plasma supported nanotechnologies. First the developments in plasma etching for micro and later nanoelectronics have fueled immense growth of knowledge and tools in describing non-equilibrium plasmas. This has led to detailed predictive codes and that knowledge has been used to develop a large number of new sources of non-equilibrium plasmas operating at atmospheric pressure, even in air. With those tools a new front of plasma medicine has opened wide with new possibilities and a number of promising techniques for sterilization, cancer treatment, oral cavity treatment, dermatology and in a range of applications where deposition of thin films for biocompatibility is necessary. This new front opens new possibilities in the realm of nanotechnologies with atmospheric pressure deposition of nano-structures allowing direct application of new techniques in medicine and in cheaper technologies for other purposes.
机译:在本文中,我们讨论了等离子体支持的纳米技术在不同领域之间的协同作用。首先,用于微电子学和后来的纳米电子学的等离子蚀刻技术的发展,极大地促进了描述非平衡等离子体的知识和工具的发展。这导致了详细的预测代码,并且知识被用于开发在大气压力下甚至在空气中运行的大量新的非平衡等离子体源。借助这些工具,血浆医学的新前沿已经打开了新的可能性,并为灭菌,癌症治疗,口腔治疗,皮肤病学以及需要沉积薄膜以实现生物相容性的一系列应用提供了许多有前途的技术。这一新的前沿为纳米技术领域带来了新的可能性,通过大气压沉积纳米结构,可以将新技术直接应用于医学以及将廉价技术用于其他目的。

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