CeO2 nanorods
SKU: 61065936549

CeO2 nanorods

Sale price$108.00 Regular price$120.00
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Description

CeO2 nanorodsProduct Name Name:CeO2 nanorods Product Overview Cerium (Ce) is one of the rare earth elements with extremely abundant reserves and low cost. Due to its unique 4f electronic structure, cerium has been widely used in various fields such as alloys, fluorescence, magnetism, and catalysis in recent years. Correspondingly, its oxide cerium dioxide (light yellow powder) has also attracted great attention. The crystal structure of CeO2 is a cubic fluorite

Product Name

Name::CeO2 nanorods

 

Product Overview

 

Cerium (Ce) is one of the rare earth elements with extremely abundant reserves and low cost. Due to its unique 4f electronic structure, cerium has been widely used in various fields such as alloys, fluorescence, magnetism, and catalysis in recent years. Correspondingly, its oxide cerium dioxide (light yellow powder) has also attracted great attention. The crystal structure of CeO2 is a cubic fluorite structure, in which the metal cation (Ce4+) is arranged according to a face centered cubic lattice, while the anion (O2-) is located at the center of the tetrahedron. Ce element usually contains two oxidation states, Ce4+and Ce3+. When the temperature is high or in a reducing environment, it can be reduced to CeO2-x (0<x ¡ãC0.5), resulting in rapid and reversible conversion between the two valence states. Therefore, oxygen vacancy defects are easily present in the lattice of CeO2-x. Due to its inherent oxide defects and excellent redox performance and oxygen storage capacity, CeO2 nanoparticles are commonly used as active oxide carriers for multiphase catalysts or catalysts. At present, the preparation of cerium dioxide nanomaterials is usually based on chemical methods, such as precipitation method, sol gel method, hydrothermal method, etc.


Technical Parameter

Appearance:Yellow powder

Length:0-40 nm 

Diameter:-10 nm

BET:gt;50 m2/g

 

Product Features

Catalytic performance: Due to its high specific surface area, ceria nanorods exhibit extremely high catalytic activity and selectivity in catalytic reactions. It can effectively promote various chemical reactions, such as phenol oxidation, carbon dioxide reduction, nitrate reduction, and ammonia synthesis. Optical performance: In the field of photocatalysis, ceria nanorods utilize their excellent optical properties to convert light energy into chemical energy, achieving photocatalytic reactions. This makes it potentially applicable in fields such as photocatalytic water splitting and photocatalytic degradation of organic pollutants. Biocompatibility: In the biomedical field, ceria nanorods have good biocompatibility and biodegradability due to their unique morphological properties. This makes it an ideal material for biomedical applications such as biological imaging and drug delivery.


Application Fields

 

In the field of catalysis, it is used as a catalyst or catalyst carrier to catalyze important chemical reactions such as oxidation, oxidation-reduction, and esterification of organic compounds. Its high catalytic activity and selectivity make it play an important role in the field of catalysis. In the field of photocatalysis: utilizing photocatalytic performance to convert light energy into chemical energy, achieving environmental purification reactions such as photocatalytic water splitting and photocatalytic degradation of organic pollutants. Biomedical field: used as a biosensor for detecting signal transduction of biomolecules; As a carrier for targeted drugs, it achieves precise drug delivery and personalized treatment. Environmental protection field: used for removing organic pollutants and heavy metal ions from the atmosphere; As a water treatment agent, it removes harmful substances from water and achieves environmental purification. In the field of energy, as an electrode material for fuel cells, chemical energy is converted into electrical energy through electrochemical reactions; It can also be used for the preparation of new photovoltaic materials such as solar cells.


Related Information

Please e-mail for the detailed characterization data.

E-mail:[email protected]

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SKU: 61065936549

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Spo509
Fort Morgan, US
★★★★★ 3
Not as good as chuck it anymore
Style: Fetch Balls (Pack of 10), Size: 2.5 inch
I have bought these before and the where just like the chuck it balls. These are not those balls. The are lighter and my dog has already cause damage to one
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Reviewed in the United States on March 16, 2026
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MissRachelle
Waukegan, US
★★★★★ 5
Cheap but expected, worked as intended, none of them broke.
Size: 1000 Teaspoons
Seems to be cheap quality but what else can you expect for the price? I needed something cheap that would work for cold foods, and these delivered. They lasted me forever and I didn’t have any break, I just didn’t trust them with super hot foods. I will buy again in a heartbeat though because for everything else they work great. They are small spoons that don’t hold much, bend easily, are really lightweight and I wish they came in portions or wraps because after opening they sat there collecting dust through the hole in the box and so I had to transfer them to a closed container for sanitary purposes. Again though, I didn’t really expect anything else, so I’m happy regardless.
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Reviewed in the United States on September 26, 2025
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Snagglepuss
Lake Worth, US
★★★★★ 5
Great stirring spoons
Size: 1000 Teaspoons
Great price. Cheapest spoons for stirring. Don't expect to eat ice cream with them though. Me happy.
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Reviewed in the United States on May 15, 2026
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JakalSwitch
Alexandria, US
★★★★★ 4
Pretty pathetic spoons, fantastic price to quantity ratio
Size: 1000 Teaspoons
Weak, not very rigid. But you can't beat the price or quantity! Don't serve these at a party, you will be made fun of.
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Reviewed in the United States on January 28, 2026
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Anisley
Phoenix, US
★★★★★ 5
Spoon
Size: 1000 Teaspoons
Great quality plastic utensils! Very sturdy, durable, and perfect for everyday use or events. Definitely exceeded my expectations.
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Reviewed in the United States on March 19, 2026

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