Department of Chemistry, Tongji University, Shanghai 200092, China.
Langmuir. 2012 Sep 11;28(36):13112-7. doi: 10.1021/la302353t. Epub 2012 Aug 27.
Ag nanoplates and Fe(3)O(4) nanoparticle-based ferrofluids were utilized to fabricate a magnetic field controlled optic switch. The changing of light transmittance (LT) is caused by the rotation of Ag nanoplates, whose long axis always follows the orientation of external magnetic field to minimize the potential energy. The sensitivity of switching was optimized by choosing Ag nanoplates with appropriate size and concentration. The switching of transmission is proved to be fast and fully reversible. This phenomenon not only indicates an effective method to adjust the propagation of optical signals, but also reveals the possibility and great potential to develop magnetic controlled functional devices.
基于 Ag 纳米板和 Fe(3)O(4)纳米粒子的铁磁流体被用于制备磁场控制光开关。光透过率(LT)的变化是由 Ag 纳米板的旋转引起的,其长轴始终遵循外部磁场的方向以最小化势能。通过选择具有适当尺寸和浓度的 Ag 纳米板优化了开关的灵敏度。传输的切换被证明是快速且完全可逆的。这种现象不仅表明了一种有效调节光信号传播的方法,而且还揭示了开发磁控功能器件的可能性和巨大潜力。