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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
中嶋 宇史
教授
先進工学部
,
物理工学科
ウェブサイト
https://www.tus.ac.jp/ridai/doc/ji/RIJIA01Detail.php?act=nam&kin=ken&diu=40AB
h-index
1020
被引用数
18
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
2005
2024
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
(85)
類似のプロファイル
(6)
フィンガープリント
Takashi Nakajima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
Keyphrases
Vinylidene Fluoride
97%
Trifluoroethylene
86%
Copolymer
62%
Polarization Reversal
49%
Copolymer Thin Film
49%
P(VDF-TrFE)
47%
Switching Characteristics
42%
Switching Time
36%
Copolymer Film
35%
Ultrathin Films
24%
Ferroelectric Switching
23%
BiFeO3
22%
BiFeO3 Film
20%
Ferroelectric Properties
17%
CoFe2O4
16%
High Electric Field
16%
Piezoelectric Energy Harvesting
16%
Au Electrode
15%
FeMn
15%
Electric Field (E-field)
15%
Ferroelectric Polymer
15%
Electrical Properties
14%
Ultrathin
13%
Pulse Width
12%
Film Thickness
12%
Charge Response
12%
Pulse Train
12%
Polymer Thin Films
12%
Induced Resistance
12%
Resistance Switching
12%
PZT Thick Film
12%
Polyvinylidene Fluoride
11%
Electric Field Pulse
11%
Remanent Polarization
11%
Remnant Polarization
11%
Applied Electric Field
10%
Permittivity
10%
Hysteresis Loop
10%
B-doped Diamond
10%
Polarization Switching Dynamics
10%
Tetrafluoroethylene
10%
Polarization Switching
9%
Magnetic Properties
9%
Thickness Effect
9%
Gate Insulator
9%
Electric Properties
9%
Pulsed Laser Deposition
9%
Optical Properties
9%
Dead Layer
9%
Polycrystalline Films
9%
Material Science
Film
100%
Thin Films
88%
Copolymer
78%
Ferroelectric Material
71%
Piezoelectricity
33%
Bismuth Ferrite
30%
Ultrathin Film
20%
Ferroelectricity
19%
Dielectric Material
17%
Solution (Chemistry)
13%
Thick Films
12%
Nucleation
12%
Multiferroic Material
12%
Capacitor
12%
Film Thickness
10%
Pulsed Laser Deposition
9%
Magnetic Property
9%
Surface (Surface Science)
9%
Optical Property
8%
Permittivity
8%
Diamond
8%
Refractive Index
8%
X-Ray Diffraction
7%
Electrostriction
6%
Annealing
6%
Density
6%
Atomic Force Microscopy
5%
Finite Element Method
5%
Engineering
Thin Films
90%
Switching Time
50%
Electric Field
43%
Piezoelectric
38%
Dielectrics
25%
Pulse Duration
17%
Induced Polarization
16%
Diamond
15%
Field Pulse
14%
Dynamic Switching
14%
Applied Electric Field
12%
Field-Effect Transistor
12%
Pulse Train
12%
High Electric Field
12%
Ferroelectric Polymers
11%
Applied Field
10%
Growth Process
9%
Refractive Index
9%
Refractivity
9%
Hysteresis Loop
9%
Polycrystalline
9%
Energy Harvesting
8%
Nanosecond
8%
Deposited Film
7%
Temperature Change
7%
Coercive Field
7%
Low-Temperature
6%
Broadening
6%
Time Domain
6%
Domain Measurement
6%
Coated Film
6%
Room Temperature
6%
Printing Process
6%
Structural Damage
6%
Learning System
6%
Internet-Of-Things
6%
Polarization State
6%
Crystallinity
5%
Deposition Method
5%
Atomic Force Microscopy
5%
Smooth Surface
5%
Growth Mechanism
5%
Fatigue Behavior
5%
Finite Element Analysis
5%