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Fingerprint Dive into the research topics where Kengo Shimanoe is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

Chemical Compounds

Acoustic impedance
Adsorption
Air
Aluminum Oxide
Amperometric sensors
Atmospheric humidity
Calcination
Carbon
Carbon Monoxide
Carbonates
Catalysts
Chemical sensors
Composite materials
Crystals
Diffusion in gases
Electrocatalysts
Electrodes
Ethanol
Film thickness
Gases
Hydrogen
Ions
Membranes
Metals
Micelles
Microstructure
Nanocrystals
Nanoparticles
Nanotubes
Oxides
Oxygen
Oxygen permeable membranes
Partial pressure
Permeation
Polymethyl Methacrylate
Potentiometric sensors
Powders
Recovery
Scanning electron microscopy
Semiconductor materials
Sensors
Silicates
Solid electrolytes
Soot
Steam
Temperature
Thick films
Thin films
Toluene
Volatile Organic Compounds

Engineering & Materials Science

Acoustic impedance
Adsorption
Air
Amperometric sensors
Atmospheric humidity
Calcination
Carbon
Catalysts
Chemical sensors
Composite materials
Crystals
Diffusion in gases
Electric potential
Electrocatalysts
Electrodes
Ethanol
Field effect transistors
Film thickness
Gases
Ions
Membranes
Metals
Micelles
Microstructure
Nanocrystals
Nanoparticles
Nanotubes
Oxides
Oxygen
Oxygen permeable membranes
Partial pressure
Permeation
Perovskite
Potentiometric sensors
Powders
Recovery
Scanning electron microscopy
Semiconductor materials
Sensors
Solid electrolytes
Solid-state sensors
Sols
Temperature
Thick film devices
Thick films
Thin films
Tin dioxide
Tin oxides
Volatile organic compounds
Water vapor

Physics & Astronomy

Chemistry and Materials

adsorption
air
aluminum oxides
carbon
composite materials
dioxides
ethyl alcohol
gases
gels
hydrogen sulfide
oxides
oxygen
tin
tin oxides
volatile organic compounds

Engineering

electrodes
nanotubes

General

atmospheres
depletion
grain size
humidity
microstructure
porosity
preparation
recovery
roasting
sensors
thick films
thin films

Mathematical and Computer Sciences

sensitivity

Physics

conductors
gaseous diffusion
ions
micelles
nanoparticles
operating temperature
solid electrolytes
temperature