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      A molecular thermometer based on long-lived emission from platinum octaethyl porphyrin

      Applied Physics Letters
      AIP Publishing

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          Carbon nanothermometer containing gallium.

          Many applications have been found for carbon nanotubes, and we can now add a role as a 'nanothermometer' to this list. We describe how the height of a continuous, unidimensional column of liquid gallium inside a carbon nanotube (up to about 10 micrometres long and about 75 nanometres in diameter) varies linearly and reproducibly in the temperature range 50-500 degrees C, with an expansion coefficient that is the same as for gallium in the macroscopic state. We chose gallium as our thermal indicator because it has one of the greatest liquid ranges of any metal (29.78-2,403 degrees C) and a low vapour pressure even at high temperatures. This nanothermometer should be suitable for use in a wide variety of microenvironments.
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            The Effect of Keto Defect Sites on the Emission Properties of Polyfluorene-Type Materials

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              Electrical and Photoinduced Degradation of Polyfluorene Based Films and Light-Emitting Devices

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                Author and article information

                Journal
                Applied Physics Letters
                Appl. Phys. Lett.
                AIP Publishing
                0003-6951
                1077-3118
                September 23 2002
                September 23 2002
                : 81
                : 13
                : 2478-2480
                Article
                10.1063/1.1509115
                f0d4d834-5d98-4211-862f-611a935c9267
                © 2002
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