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Near-field fluorescence imaging and simultaneous observation of surface potentials
Authors:K J Kwak  T Hosokawa  N Yamamoto†  H Muramatsu†  M Fujihira
Affiliation:Department of Biomolecular Engineering, Tokyo Institute of Technology, 4259 Nagatsuta, Midori-ku, Yokohama 226‐850, Japan;Corporate R &D, Seiko Instruments Inc., Matsudo-shi, Chiba, Japan
Abstract:We present a new detection method to measure simultaneously surface potential and fluorescence intensity distributions using a combined scanning near-field optical microscope-atomic force microscope (SNOM-AFM). A surface potential image of phospholipid monolayers was obtained in non-contact mode using the SNOM-AFM with a thin-step etched optical fibre probe. For applying this technique, a phospholipid of dipalmitoylphosphatidylethanolamine labelled at the head with a nitrobenzoxadiazole group was used as a fluorescent and single component Langmuir–Blodgett film. It is well known that aggregation of the lipid molecules and their fluorescence intensities are very sensitive to its environmental conditions such as humidity and temperature. We demonstrated for the first time the near-field optical imaging and simultaneous observation of surface potentials with Maxwell stress microscopy.
Keywords:Langmuir–Blodgett film  phospholipid  scanning Maxwell stress microscopy  scanning near-field optical microscopy  surface potential  thin-step etched optical fibre probe  
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