Department of Materials Science and Engineering, Nanjing University, Nanjing 210093, P. R. China.
Nanoscale. 2013 Dec 21;5(24):12231-6. doi: 10.1039/c3nr03453d.
Self-supported Mn3O4 patterns of aligned nanorods and nanotubes were synthesized through a bi-directional-bi-dimensionality growth model by using sodium gluconate and urea as additives under mild hydrothermal conditions without the use of any substrates. In one direction, Mn3O4 grows to form one-dimensional nanorods or nanotubes, while in the other direction Mn3O4 grows into two-dimensional nanoplates to support the nanorods or nanotubes to align into arrays. These two kinds of new nanostructures, a nanotube pattern and a nanorod pattern, show similar and good bacteriostasis for Gram positive bacteria, but for Gram negative bacteria the nanotube pattern shows much better bacterial restraint than the nanorod pattern. Magnetic studies show that the nanorod arrays display similar magnetic properties to the commercial Mn3O4, while the nanotube arrays show different ferromagnetic behaviors with enhanced remnant magnetization and saturation magnetization (Ms) at low temperature.
自支撑 Mn3O4 纳米棒和纳米管的图案是通过在温和水热条件下,使用葡萄糖酸钠和尿素作为添加剂,采用双向二维生长模型,无需使用任何基底合成的。在一个方向上,Mn3O4 生长形成一维纳米棒或纳米管,而在另一个方向上,Mn3O4 生长成二维纳米片来支撑纳米棒或纳米管排列成阵列。这两种新型结构,即纳米管图案和纳米棒图案,对革兰氏阳性菌具有相似且良好的抑菌作用,但对于革兰氏阴性菌,纳米管图案显示出比纳米棒图案更好的抑菌效果。磁性研究表明,纳米棒阵列显示出与商用 Mn3O4 相似的磁性,而纳米管阵列则表现出不同的铁磁行为,具有低温下增强的剩余磁化强度和饱和磁化强度(Ms)。