Wood-Based, Diamond-Like Carbon for Improved Resistance Against Atomic Oxygen
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Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-319-19309-0_8
Reference5 articles.
1. Tagawa M (2001) Material degradation phenomena in low earth orbit space environment and their ground-based simulations. J Vac Soc Jpn 44(5):26–31
2. Yokota K, Ikeda K, Tagawa M, Okamoto A (2005) Erosion on polyimide and fluorinated polymers in combined low earth orbit space environment: simultaneous exposure effects of atomic oxygen and ultraviolet. High Temp Soc 31:318–323
3. Fujimoto K, Sato K, Shioya T, Seki N, Fujita K (2003) Degradation of materials by high-energy atomic oxygen. JSME Int J Ser A 46(3):283–289
4. Kajimoto T, Hata T, Tagawa M, Kojima H, Hayakawa H (2013) Resistance of silicon-containing carbonized lignin to atomic oxygen erosion. In: Protection of materials and structures from the space environment (Astrophysics and space science proceeding). Springer, Berlin, pp 541–546
5. Bruley J, Williams DB, Cuomo JJ, Pappas DP (1995) Quantitative near-edge structure analysis of diamond-like carbon in the electron microscope using a two-window method. J Microsc 180(1):22–32
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1. Microstructural changes in carbonized wood-lignin, a potential space material, in response to atomic oxygen irradiation;Biomass Conversion and Biorefinery;2023-10-16
2. Mechanically Robust Atomic Oxygen-Resistant Coatings Capable of Autonomously Healing Damage in Low Earth Orbit Space Environment;Advanced Materials;2018-07-18
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