로다민 화합물은 형광 이 강하고 광학적 특성이 광범위해서 금속이온 분석에 널리 사용되고 있다. 최근 들어 여러 가지 여러 종류의 다양한 금속 이온을 감지하는 메카니즘은 spirocycle과 open-cycle형 구조변화를 통해 생긴다. 이 논문에서는 새로운 fluorene이 함유된 rhodamin 6G 유도체를 합성하였다. 합성한 화합물이 금속 이온 Fe2+와 Al3+ 에 선택성이 좋은 것을 확인하였다.
Vibrotactile actuators for small consumer electronic products, such as mobile devices, have been widely used for conveying haptic sensation to users. One of the most important things in vibrotactile actuators is to be developed in the form of thin actuator which can be easily embedded into mobile devices and to provide vibrotactile signals with wide frequency band to users. Thus, this paper proposes a thin film type haptic actuator with an aim to convey vibrotactile information with high frequency bandwidth to users in mobile devices. To this end, a vibrotactile actuator which creates haptic sensation is designed and constructed based on cellulose acetate material. A cellulose acetate material charged with an electric potential can generate vibration under the AC voltage input. It is found that the motion of the actuator can have concave or convex shape by controlling a polarity of both charged membranes and the actuator performance can be modulated by increasing level of biased electric potential. The experiment clearly shows that the proposed actuator creates enough output force to stimulate human skin with a large frequency bandwidth and to simulate various vibrotactile sensations to users.