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Hypergravity-assisted chemical liquid deposition of nano-granular film on the inner surface of a quartz tube

机译:超重力辅助化学液体在石英管内表面上沉积纳米颗粒膜

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摘要

Transparent tubes with functions of heating and temperature measurement are badly required in the visualization investigation of two-phase flows and flow-boiling heat transfer. In order to prepare such a tube, we introduced a cost-effective and energy-efficient procedure of hypergravity-assisted chemical liquid deposition (HACLD) to produce transparent and conductive silver (Ag) films on the inner surfaces of quartz tubes, typically 50 mm in length and 8 mm in inner diameter with a set-up that was designed and built for this purpose. Precursors of organometallic Ag precursor solutions were prepared by dissolving silver citrate and 1,2-diaminopropane in 2-methoxyethanol with required concentration for the chemical liquid deposition process. Semitransparent and conductive Ag films formed inside the required quartz tubes under specific heating process in hypergravity. One of the films was about 47 nm in thickness, 23 Ω per square sheet resistance, and 30% optical transmittance. This attempt may pave a way for the understanding of the film forming mechanism in hypergravity, and the development of a film preparation technology of HACLD.
机译:在两相流和沸腾传热的可视化研究中,非常需要具有加热和温度测量功能的透明管。为了准备这种管,我们引入了一种具有成本效益和能源效率的超重力辅助化学液体沉积(HACLD)程序,以在石英管的内表面(通常为50 mm)上产生透明且导电的银(Ag)膜。长度和内径8毫米,并为此目的设计并制造了一个装置。有机金属银前驱体溶液的前体是通过将柠檬酸银和1,2-二氨基丙烷溶解在2-甲氧基乙醇中而制备的,该浓度为化学液体沉积工艺所需的浓度。在特定的加热过程中,在超重力作用下,所需的石英管内部会形成半透明和导电的Ag膜。一层膜的厚度约为47 nm,每平方薄层电阻为23Ω,光透射率为30%。该尝试可为理解超重力下的成膜机理和发展HACLD的膜制备技术铺平道路。

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