State Key Laboratory of Catalysis, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China.
J Chem Phys. 2012 May 7;136(17):174701. doi: 10.1063/1.4706515.
Scanning transmission X-ray microscopy was demonstrated to deliver detailed local structure and chemical composition of a complicated system with titania nanoparticles dispersed inside and outside the double-walled carbon nanotube (DWNT) channels. Areas with inhomogeneous distribution of titania and the associated water were particularly investigated at the C K-edge, Ti L-edge, and O K-edge. The results show that titania nanoparticles located inside DWNTs are present as amorphous, while those unsuccessfully introduced into the channels behave more like bulk materials in forms of anatase and rutile. Strong interaction was detected between the confined titania and DWNTs, as evidenced by up to 0.6 eV energy shift at the Ti L-edge. Strong hydration was observed for the as-prepared samples. Functionalization due to reduction and oxidation between titania and carbon layer is observed upon heat-treatment. This detailed structural information of specific areas cannot be provided by other techniques such as HRTEM, XRD, and XANES.
扫描透射 X 射线显微镜被证明可以详细提供具有二氧化钛纳米颗粒分散在内外双层碳纳米管(DWNT)通道中的复杂系统的局部结构和化学成分。在 C K 边缘、Ti L 边缘和 O K 边缘特别研究了具有不均匀二氧化钛分布和相关水的区域。结果表明,位于 DWNTs 内部的二氧化钛纳米颗粒呈无定形状态,而那些未能引入通道的颗粒则表现出更像体相材料的锐钛矿和金红石形式。在 Ti L 边缘处检测到高达 0.6 eV 的能量位移,表明受限的二氧化钛和 DWNTs 之间存在强烈相互作用。对于制备的样品观察到强烈的水合作用。热处理后观察到由于二氧化钛和碳层之间的还原和氧化而导致的功能化。这种特定区域的详细结构信息不能通过 HRTEM、XRD 和 XANES 等其他技术提供。