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A volatile organic compound sensor using porous Co
3
O
4
spheres
Tae Hyung Kim
, Ji Wook Yoon
, Jong Heun Lee
*
*
Corresponding author for this work
Research output
:
Contribution to journal
›
Article
›
peer-review
10
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3
O
4
spheres'. Together they form a unique fingerprint.
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Keyphrases
Acetate
20%
Aqueous Droplet
20%
As(V)
20%
Benzene
20%
Bimodal Pore Distribution
20%
Co3O4
60%
Commercial Sensors
20%
Distribution Size
40%
Effective Diffusion
20%
Ethanol
20%
Gas Response
20%
Gasses
20%
High Surface Area
20%
Highly Sensitive
20%
Indoor Air Pollutants
40%
Mesopore
40%
Monomodal
20%
Polyethylene Glycol
60%
Pore Distribution
20%
Porous Co3O4
100%
Secondary Particles
40%
Spray Solution
20%
Toluene
20%
Ultrasonic Spray Pyrolysis
20%
Volatile Organic Compounds (VOCs) Sensor
100%
Xylene
20%
Chemistry
Acetate
12%
Air Pollutant
25%
Benzene
12%
Cobalt(II,III) Oxide
100%
Formaldehyde
12%
formation
12%
Glycol
37%
Pore Size Distribution
25%
Porosity
100%
Spray Pyrolysis
12%
Surface Area
12%
Toluene
12%
Volatile Organic Compound
100%
Xylene
12%
Chemical Engineering
Benzene
33%
Formaldehyde
33%
Mesopore
66%
Organic Compound
100%
Polyethylene Glycol
100%
Pyrolysis
33%
Toluene
33%
Xylene
33%
Pharmacology, Toxicology and Pharmaceutical Science
Benzene
33%
Formaldehyde
33%
Macrogol
100%
Toluene
33%
Volatile Organic Compound
100%
Xylene
33%
Material Science
Cobalt(II,III) Oxide
100%
Polyethylene Glycol
37%
Pore Size Distribution
25%
Spray Pyrolysis
12%