Department of Materials Science and Engineering, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA.
Environ Sci Technol. 2009 Dec 1;43(23):8923-9. doi: 10.1021/es902214s.
Self-organized nitrogen and fluorine co-doped titanium oxide (TiONF) nanotube arrays were created by anodizing titanium foil in a fluoride and ammoniate-based electrolyte, followed by calcination of the amorphous nanotube arrays under a nitrogen protective atmosphere for crystallization. TiONF nanotube arrays were found to have enhanced visible light absorption capability and photodegradation efficiency on methylene blue under visible light illumination over the TiO(2) nanotube arrays. The enhancement was dependent on both the nanotube structural architecture and the nitrogen and fluorine co-doping effect. TiONF nanotube arrays promise a wide range of technical applications, especially for environmental applications and solar cell devices.
自组织氮氟共掺杂氧化钛(TiONF)纳米管阵列是通过在氟化物和氨盐基电解液中对钛箔进行阳极氧化,然后在氮气保护气氛下对非晶纳米管阵列进行煅烧以实现结晶而制备的。与 TiO(2) 纳米管阵列相比,TiONF 纳米管阵列在可见光照射下对亚甲基蓝的可见光吸收能力和光降解效率均得到增强。这种增强依赖于纳米管的结构架构以及氮和氟的共掺杂效应。TiONF 纳米管阵列有望在广泛的技术应用中得到应用,特别是在环境应用和太阳能电池器件中。