It is a compact tabletop CVD surface treatment device equipped with a hot filament (hot wire).
The W filament installed near the sample can be heated up to 2000°C, promoting the decomposition of various reaction gases. The active species (radicals) generated by gas decomposition accumulate on the sample surface to form a film.
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【Features】 - A diamond-like carbon (DLC) film that combines conductivity and corrosion resistance can be produced through the high-temperature filament decomposition of hydrocarbon gases such as methane. - By thermally decomposing a nitrogen precursor using a filament heating mechanism, ammonia gas can be generated on-site while heating various substrates and materials at high temperatures, allowing for nitriding or nitrogen doping. - There is no need to prepare an ammonia gas cylinder, enabling experiments to be conducted regardless of location or environment. ● For other functions and details, please contact us.
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In the fields of carbon nanotubes, nanomaterials, and nanotechnology, we are continuously advancing our research and development to keep pace with changing market needs and to aim for the forefront of technology. Additionally, we are making ongoing efforts to acquire a wide range of knowledge and capabilities to meet the diverse needs of the market. We always strive to fully understand our customers' objectives and requests, and to proactively propose the shortest path to achieving their goals. We are committed not only to utilizing the strengths we have accumulated but also to gaining new insights and capabilities through challenges as we engage in our work. The advancements in nanotechnology have led to numerous innovations. The wonders and allure of the nanoscale still hold many deep mysteries. We also wish to contribute to the progress of nanotechnology and the creation of innovations.