The Analyst · 2006 · 61 citations · 26 references
EngineeringIonic ComponentDifferential Scanning CalorimetryPolymer ScienceTemperature MeasurementFluorescence ResponseFluorescent Polymeric ThermometersThermophysical PropertyThermodynamicsChemistryInstrumentationThermal SensorBiophysicsOptical SensorsHigh Temperature ResolutionThermoanalytical Method
Fluorescent polymeric thermometers consisting of only N-alkylacrylamide and fluorescent components show rather low temperature resolution in their functional ranges (ca. 15-50 degrees C) because of the occurrence of intermolecular aggregation, which causes hysteresis in their fluorescence response to changes in temperature. By adding an ionic component to prevent such intermolecular aggregation, we obtained four fluorescent polymeric thermometers that offer high temperature resolution (<0.2 degrees C). Each new fluorescent polymeric thermometer covered the temperature range, 9-33 degrees C, 30-51 degrees C, 49-66 degrees C or 4-38 degrees C.
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Light scattering by small particles
S. Snowdon · Journal of the Franklin Institute · 1957 · 3.7K citations
Photonics, Engineering, Physics +5
Seiichi Uchiyama, Yuriko Matsumura, A. Prasanna de Silva et al. · Analytical Chemistry · 2003 · 308 citations