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Last Updated: Apr 25, 2025 | Study Period: 2024-2030
A basic anhydride that can react with acids and potent reducing agents in redox reactions is the rare earth oxide compound praseodymium oxide. At least one metallic cation and one oxygen anion are present in compounds of rare earth oxides.
They work well in ceramic structures because they are typically extremely stable and insoluble in aqueous solutions (water). Because of this, praseodymium oxide has a wide range of uses, including the manufacture of advanced electronics and clay bowls.
Due to its ionic conductivity, praseodymium oxide is also useful in electrochemical applications like fuel cells and as lightweight structural components in aerospace.
Stanford Advanced Materials (SAM) offers praseodymium (III, IV) oxide with a high purity of 99.9995%. For a variety of industrial applications, SAM is a dependable manufacturer and supplier of high-quality praseodymium (III, IV) oxide. Powder, nanopowder, sputtering targets, and tablets are all forms of praseodymium oxide that are available.
TheGlobal praseodymium oxyhide (PrOBr) marketaccounted for $XX Billion in 2023 and is anticipated to reach $XX Billion by 2030, registering a CAGR of XX% from 2024 to 2030.
Based on the cataluminescence (CTL) emission of trace acetophenone on the surface of nano-praseodymium oxide, a new and sensitive gas sensor has been successfully developed (nano-Pr6O11).
In-depth research was done on the effects of working conditions like temperature, flow rate, and detecting wavelength on CTL sensing. The sensor responded linearly to acetophenone in the range of 15-280 mg/m3 (2.8-52 ppm) under the ideal conditions, with a correlation coefficient (R2) of 0.9968 and a limit of detection (S/N = 3) of 4 mg/m3.
Investigations into the sensor's selectivity revealed that it responded only weakly or not at all to other substances, including benzenes, alcohols (methanol, ethanol, n-propanol, iso-propanol, and n-butanol), aldehydes (formaldehyde and acetaldehyde), benzenes, n-pentane, ethyl acetate, ammonia,
Sl no | Topic |
1 | Market Segmentation |
2 | Scope of the report |
3 | Abbreviations |
4 | Research Methodology |
5 | Executive Summary |
6 | Introduction |
7 | Insights from Industry stakeholders |
8 | Cost breakdown of Product by sub-components and average profit margin |
9 | Disruptive Innovation in the Industry |
10 | Technology Trends in the Industry |
11 | Consumer trends in the industry |
12 | Recent Production Milestones |
13 | Component Manufacturing in the US, EU and China |
14 | COVID-19 impact on overall market |
15 | COVID-19 impact on Production of components |
16 | COVID-19 impact on the point of sale |
17 | Market Segmentation, Dynamics and Forecast by Geography, 2024-2030 |
18 | Market Segmentation, Dynamics and Forecast by Product Type, 2024-2030 |
19 | Market Segmentation, Dynamics and Forecast by Application, 2024-2030 |
20 | Market Segmentation, Dynamics and Forecast by End Use, 2024-2030 |
21 | Product installation rate by OEM, 2023 |
22 | Incline/Decline in Average B-2-B selling price in the past 5 years |
23 | Competition from substitute products |
24 | Gross margin and average profitability of suppliers |
25 | New product development in the past 12 months |
26 | M&A in the past 12 months |
27 | Growth strategy of leading players |
28 | Market share of vendors, 2023 |
29 | Company Profiles |
30 | Unmet needs and opportunities for new suppliers |
31 | Conclusion |
32 | Appendix |