The global cerium oxide nanoparticles market was valued at USD 652.73 Million in 2022, which is anticipated to grow at a CAGR of 19.41% from 2023 to 2032. Because of their unique physiochemical properties when compared to conventional materials of the same composition, cerium oxide nanoparticles are gaining widespread acceptance across a wide range of electronics applications. Cerium oxide nanoparticles can improve the functionality of the product or application that incorporates them. Cerium oxide nanoparticles are employed in a variety of commercial applications, including board/substrate, passive components, packaging IC and MEMS devices, displays, conductive adhesives, and others. Cerium oxide nanoparticle penetration in the electronics industry is increasing at an exponential rate.
Cerium is a rare earth metal, and cerium oxide comes in two forms: CeO2 and Ce2O3. Cerium oxide is used to create nanoparticles for a variety of applications including fuel oxidation catalysis, corrosion protection, solar cells, chemical mechanical polishing or planarization, and automobile exhaust treatment. Furthermore, cerium oxide nanoparticles have antioxidant characteristics. These nanoparticles are commonly employed in the treatment or prevention of oxidative stress-related illnesses. Cerium oxide nanoparticles are available in two forms: dispersed and powdered. The growing use of nanoparticles in a variety of applications such as catalysts, biomedical, chemical mechanical planarization, and others is likely to boost the cerium oxide nanoparticles market in the coming years. Furthermore, increased research and focus on nanoparticles and their benefits are expected to enhance the market in coming years. Furthermore, increased government funding in the pharmaceutical and nanotechnology sectors, as well as unique features such as UV filtering, high ionic conductivity, and radical scavenging, are expected to propel the market throughout the estimated period. There are various constraints and problems that can hinder market expansion. Factors such as nanoparticle toxicity and the unfavourable environmental impact of cerium oxide nanoparticles are anticipated to act as market restrictions. Cerium oxide nanoparticles, also known as ceria nanoparticles or nanoceria, are microscopic cerium oxide particles with dimensions ranging from 1 to 100 nanometers. Cerium oxide, often known as CeO2, is a versatile and widely utilised substance in a variety of sectors. Cerium oxide has various properties and features at the nanoscale as compared to its bulk form. Cerium oxide nanoparticles have distinct catalytic, optical, and electrical properties, making them useful in a variety of applications. Because of their large surface area and ability to store oxygen, they are good catalysts for a variety of chemical reactions, including automotive catalysis and environmental remediation procedures. Furthermore, ceria nanoparticles have outstanding redox behaviour, allowing them to be used in fuel cells, sensors, and energy storage systems. Because of its unique electrical and optical qualities, one of the key causes driving demand for cerium oxide nanoparticles is developments in electronics and optics. These nanoparticles are used to make conductive pastes, optical coatings, and sensors. The demand for cerium oxide nanoparticles is predicted to rise due to the increasing development of electronic gadgets, displays, and sensors. Furthermore, continuing R&D efforts to explore new applications and improve the characteristics of cerium oxide nanoparticles are increasing their demand. Market participants are spending in R&D to investigate the potential applications of cerium oxide nanoparticles in domains such as environmental remediation, catalysis, and water purification, which is resulting in a positive market forecast.
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This study forecasts revenue at global, regional, and country levels from 2019 to 2032. The Brainy Insights has segmented the global cerium oxide nanoparticles market based on below mentioned segments:
Global Cerium Oxide Nanoparticles by Synthesis Method:
Global Cerium Oxide Nanoparticles by Application:
Global Cerium Oxide Nanoparticles by Region:
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