Haryński Łukasz, Grochowska Katarzyna, Kupracz Piotr, Karczewski Jakub, Coy Emerson, Siuzdak Katarzyna
Centre for Plasma and Laser Engineering, The Szewalski Institute of Fluid-Flow Machinery Polish Academy of Sciences, Fiszera 14 St., 80-231 Gdańsk, Poland.
Faculty of Applied Physics and Mathematics, Gdańsk University of Technology, Narutowicza 11/12 St., 80-233 Gdańsk, Poland.
Nanomaterials (Basel). 2020 Feb 28;10(3):430. doi: 10.3390/nano10030430.
The laser processing of the titania nanotubes has been investigated in terms of morphology, structure, and optical properties of the obtained material. The length of the nanotubes and crystallinity, as well as the atmosphere of the laser treatment, were taken into account. The degree of changes of the initial geometry of nanotubes were checked by means of scanning electron microscopy, which visualizes both the surface and the cross-section. The phase conversion from the amorphous to anatase has been achieved for laser-treated amorphous material, whereas modification of calcined one led to distortion within the crystal structure. This result is confirmed both by Raman and grazing incident XRD measurements. The latter studies provided an in-depth analysis of the crystalline arrangement and allowed also for determining the propagation of laser modification. The narrowing of the optical bandgap for laser-treated samples has been observed. Laser treatment of TiO nanotubes can lead to the preparation of the material of desired structural and optical parameters. The usage of the motorized table during processing enables induction of changes in the precisely selected area of the sample within a very short time.
已从所获材料的形态、结构和光学性质方面对二氧化钛纳米管的激光加工进行了研究。考虑了纳米管的长度和结晶度,以及激光处理的气氛。通过扫描电子显微镜检查纳米管初始几何形状的变化程度,该显微镜可观察表面和横截面。对于激光处理的非晶材料,已实现从非晶到锐钛矿的相转变,而煅烧材料的改性导致晶体结构内的畸变。拉曼光谱和掠入射X射线衍射测量均证实了这一结果。后者的研究对晶体排列进行了深入分析,还能够确定激光改性的传播情况。已观察到激光处理样品的光学带隙变窄。对TiO纳米管进行激光处理可制备出具有所需结构和光学参数的材料。加工过程中使用电动工作台能够在极短时间内在样品的精确选定区域内引发变化。