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東京理科大学 ホーム
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Influence of Viscosity and Molecular Size on Temperature Sensitivity of Fluorescence Anisotropy
Ryosuke Yamaguchi, Puneet Jain,
Yoshiyasu Ichikawa
,
Masahiro Motosuke
機械工学科
研究成果
:
Article
›
査読
1
被引用数 (Scopus)
概要
フィンガープリント
フィンガープリント
「Influence of Viscosity and Molecular Size on Temperature Sensitivity of Fluorescence Anisotropy」の研究トピックを掘り下げます。これらがまとまってユニークなフィンガープリントを構成します。
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アルファベット順
Keyphrases
Chemical Materials
11%
Chemical Process Synthesis
11%
Fluorescein
11%
Fluorescence Anisotropy
100%
Fluorescence Lifetime
11%
Fluorophore
11%
High Sensitivity
11%
Imaging Techniques
11%
Laser-induced Fluorescence
11%
Light Intensity
11%
Liquid Temperature
22%
Materials Synthesis
11%
Maximum Temperature
11%
Micro-nano
11%
Microfluidics
11%
Molecular Size
100%
Polarizer
11%
Ratiometric Measurement
11%
Resistance Temperature Detector
11%
Single-wavelength
11%
Small Molecular
11%
Spectrofluorometer
11%
Temperature Imaging
22%
Temperature Measurement
11%
Temperature Measurement Method
11%
Temperature Sensitivity
100%
Theoretical Estimation
11%
Thermal Management
11%
Thermocouple
11%
Thermometry
11%
Viscosity
100%
Viscosity-temperature Characteristics
11%
Engineering
Conventional Method
40%
Experimental Result
20%
Fluid Viscosity
100%
Fluorescence Lifetime
20%
Fluorophore
20%
Liquid Temperature
40%
Luminous Intensity
20%
Macroscale
20%
Maximum Temperature
20%
Microscale
20%
Molecular Mass
20%
Molecular Weight
20%
Nanoscale
20%
Process Chemical
20%
Resistance Temperature Detector
20%
Rotational
20%
Single Wavelength
20%
Thermocouple
20%
Physics
Anisotropy
100%
Imaging Technique
11%
Laser Induced Fluorescence
11%
Luminous Intensity
11%
Measurement Method
11%
Molecular Weight
11%
Nanoscale
11%
Polarizers
11%
Ratiometric
11%
Thermocouple
11%
Material Science
Anisotropy
100%
Laser Induced Fluorescence
11%
Materials Synthesis
11%
Polarizer
11%