Park Hyunsu, Goto Tomoyo, Cho Sunghun, Lee Soo Wohn, Kakihana Masato, Sekino Tohru
Department of Advanced Hard Materials, The Institute of Scientific and Industrial Research (ISIR), Osaka University, Osaka 567-0047, Japan.
Department of Environmental and Bio-chemical Engineering, Sun Moon University, Asan 31460, Korea.
Nanomaterials (Basel). 2020 Jul 8;10(7):1331. doi: 10.3390/nano10071331.
This study addresses the effects of annealing temperatures (up to 500 °C) on the crystal structure, morphology, and optical properties of peroxo groups (-O-O-) containing titanate nanotubes (PTNTs). PTNTs, which possess a unique tubular morphology of layered-compound-like hydrogen titanate structure (approximately 10 nm in diameter), were synthesized using peroxo-titanium (Ti-O-O) complex ions as a precursor under very mild conditions-temperature of 100 °C and alkali concentration of 1.5 M-in the precursor solution. The nanotubular structure was dismantled by annealing and a nanoplate-like structure within the range of 20-50 nm in width and 100-300 nm in length was formed at 500 °C via a nanosheet structure by decreasing the specific surface area. Hydrogen titanate-based structures of the as-synthesized PTNTs transformed directly into anatase-type TiO at a temperature above 360 °C due to dehydration and phase transition. The final product, anatase-based titania nanoplate, was partially hydrogen titanate crystal in nature, in which hydroxyl (-OH) bonds exist in their interlayers. Therefore, the use of Ti-O-O complex ions contributes to the improved thermal stability of hydrogen titanate nanotubes. These results show a simple and environmentally friendly method that is useful for the synthesis of functional nanomaterials for applications in various fields.
本研究探讨了退火温度(高达500°C)对含过氧基团(-O-O-)的钛酸纳米管(PTNTs)的晶体结构、形态和光学性质的影响。PTNTs具有独特的管状形态,呈层状化合物状的钛酸氢结构(直径约10 nm),它是以前体溶液中过氧钛(Ti-O-O)络合离子为前体,在非常温和的条件下(100°C的温度和1.5 M的碱浓度)合成的。通过退火拆解纳米管结构,在500°C时通过纳米片结构形成宽度在20 - 50 nm范围内、长度在100 - 300 nm范围内的纳米片状结构,比表面积减小。合成的PTNTs的钛酸氢基结构在高于360°C的温度下由于脱水和相变直接转变为锐钛矿型TiO。最终产物锐钛矿基二氧化钛纳米片本质上是部分钛酸氢晶体,其层间存在羟基(-OH)键。因此,使用Ti-O-O络合离子有助于提高钛酸氢纳米管的热稳定性。这些结果展示了一种简单且环保的方法,可用于合成适用于各个领域的功能纳米材料。