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東京理科大学 ホーム
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プロファイル
研究部門
研究成果
Scopus著者プロファイル
渡辺 日香里
講師
創域理工学部
,
先端化学科
ウェブサイト
https://www.tus.ac.jp/ridai/doc/ji/RIJIA01Detail.php?act=nam&kin=ken&diu=72EF
h-index
935
被引用数
19
h 指数
Pureの文献数とScopusの被引用数に基づいて算出されます
2015
2026
年別の研究成果
概要
フィンガープリント
ネットワーク
研究成果
(79)
類似のプロファイル
(6)
フィンガープリント
Hikari Watanabeが活動している研究トピックを掘り下げます。このトピックラベルは、この研究者の研究成果に基づきます。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。
並べ替え順
重み付け
アルファベット順
Chemistry
Ionic Liquid
100%
electrode
71%
Electrolyte Solution
43%
Lithium Ion
38%
Solvation
38%
Lithium Ion Battery
33%
solvate
33%
Lithium
32%
Molecular Dynamics Simulation
30%
Neutron Diffraction
28%
Glucose
26%
Hydrogen Bonding
26%
formation
25%
Raman Spectroscopy
25%
Raman Spectrometry
25%
Carboxamide
24%
Aqueous Solution
24%
Dielectric Spectroscopy
24%
Ionic Conductivity
22%
Bond Length
20%
Lactate
19%
Propene
19%
Raman Spectra
19%
Ion Pair
18%
Cation
16%
Thermodynamics
16%
Acetic Acid
15%
Dielectric Relaxation
15%
Biofuel
15%
Contact Ion Pair
15%
Porosity
15%
Spectroscopy
14%
N,N-Dimethylformamide
14%
Dielectric Material
14%
Liquid Structure
14%
Meso Porosity
14%
Intermolecular Force
13%
Acetonitrile
13%
Self-Diffusion Coefficient
13%
Hydrogen
12%
Magnesium Oxide
12%
Relaxation
12%
Secondary Battery
11%
Ethylene
11%
Metal Ion
10%
Reference Electrode
10%
Ambient Reaction Temperature
8%
Dipole Moment
8%
Bilirubin
8%
Lithium-Sulfur Battery
8%
Keyphrases
Solvate Ionic Liquid
41%
Isotopic Substitution
32%
Lithium-ion Battery
32%
Glyme
29%
Protic Ionic Liquids
28%
Local Structure
26%
Impedance Measurement
23%
Impedance Spectra
22%
Raman Spectroscopy
22%
Electrochemical Impedance
22%
Molecular Dynamics Simulation
21%
Neutron Diffraction
19%
Substitution Method
19%
Electrochemical Impedance Analysis
19%
Solvation Structure
19%
Ionic Liquid
19%
Hydrogen Bond (H-bond)
19%
Electrolyte Solution
18%
Bilirubin Oxidase
18%
Electrochemical Impedance Spectroscopy
17%
Viscosity
16%
N,N-dimethylformamide
15%
Paper-based
15%
Li-ion
14%
Screen Printing
14%
Ionic Conductivity
14%
Bond Length
14%
Intermolecular Interactions
14%
MgO-templated Carbon
13%
Lithium
13%
Lithium-ion
13%
Biocathode
13%
Biofuel Cell
13%
Scattering Dynamics
13%
Strip Biosensor
13%
Propylene Carbonate
13%
Finite Element Simulation
13%
Ion-ion
13%
Acetonitrile
13%
Experimental Determination
13%
Self-powered
13%
Anions
12%
Liquid Structure
12%
Impedance Analysis
12%
Carbon Electrode
11%
Neutron Diffraction Method
11%
Least Square Fitting
11%
Ion Pair
11%
Charge Transfer Resistance
11%
Nearest Neighbor
11%
Material Science
Biosensor
45%
Dielectric Spectroscopy
43%
Ionic Liquid
40%
Lithium Ion Battery
35%
Biofuel
32%
Lithium Ion
30%
Neutron Diffraction
29%
Lithium
28%
Corrosion
24%
Secondary Battery
22%
Cathode
22%
Solvation Structure
21%
Lithium-Sulfur Battery
19%
Magnesium Oxide
18%
Electrical Impedance
16%
Film
15%
Density
15%
Carbon Electrode
14%
Solvation
14%
Diffraction Measurement
13%
Ink
13%
Rust
13%
Hydrogen Evolution
13%
Corrosion Resistance
13%
Finite Element Method
13%
Electronic Circuit
12%
Light Scattering
10%
Hydrogen
10%
Electron Transfer
10%
Polydimethylsiloxane
9%
Ionic Conductivity
9%
Polymer
7%
Poly Vinyl Alcohol
6%
Hydrogel
6%
Chloride
6%
Borate
6%
Magnesium
6%
Herbicide
6%
Electrochemical Corrosion
6%
Taguchi Method
6%
Atmospheric Corrosion
6%
Critical Micelle Concentration
6%
Dezincification
6%
Chromatography
6%
Lineshape
6%
Corrosion Monitoring
6%
Polymer Coating
6%
Surface Analysis
5%