نتایج جستجو برای: ceria nanoparticles

تعداد نتایج: 108901  

2014
Verónica Rico-Pérez

The effect of the calcination conditions on the catalytic activity for N2O decomposition of 2.5% RhOx/CeO2 catalysts has been investigated. Ramp and flash calcinations have been studied (starting calcinations at 25 or 250/350 °C, respectively) both for cerium nitrate and ceria-impregnated rhodium nitrate decomposition. The cerium nitrate calcination ramp has neither an effect on the physico-che...

2016
Dah-Shyang Tsai Tzu-Sen Yang Yu-Sheng Huang Pei-Wen Peng Keng-Liang Ou

Being endowed with an ability of capturing and releasing oxygen, the ceria surface conventionally assumes the role of catalyzing redox reactions in chemistry. This catalytic effect also makes possible its cytotoxicity toward microorganisms at room temperature. To study this cytotoxicity, we synthesized the doped and undoped ceria particles of 8-9 nm in size using an inexpensive precipitation me...

Journal: :Science 2016
John Jones Haifeng Xiong Andrew T DeLaRiva Eric J Peterson Hien Pham Sivakumar R Challa Gongshin Qi Se Oh Michelle H Wiebenga Xavier Isidro Pereira Hernández Yong Wang Abhaya K Datye

Catalysts based on single atoms of scarce precious metals can lead to more efficient use through enhanced reactivity and selectivity. However, single atoms on catalyst supports can be mobile and aggregate into nanoparticles when heated at elevated temperatures. High temperatures are detrimental to catalyst performance unless these mobile atoms can be trapped. We used ceria powders having simila...

Journal: :Angewandte Chemie 2009
Atul Asati Santimukul Santra Charalambos Kaittanis Sudip Nath J Manuel Perez

Inorganic enzyme? Ceria nanoparticles exhibit unique oxidase-like activity at acidic pH values. These redox catalysts can be used in immunoassays (ELISA) when modified with targeting ligands (see picture; light blue and yellow structures are nanoparticles with attached ligands). This modification allows both for binding and for detection by the catalytic oxidation of sensitive colorimetric dyes...

Journal: :Chemical communications 2010
Annapaola Migani Georgi N Vayssilov Stefan T Bromley Francesc Illas Konstantin M Neyman

The formation of oxygen vacancies in nanoparticles Ce(n)O(2n) (n < or = 80), studied using density-functional calculations, is found to be greatly facilitated compared to extended surfaces, which explains the observed spectacular reactivity of nanostructured ceria.

Journal: :journal of ultrafine grained and nanostructured materials 2015
majid farahmandjou mahsa zarinkamar

cerium oxide (ceo2) or ceria has been shown to be an interesting support material for noble metals in catalysts designed for emission control, mainly due to its oxygen storage capacity. ceria nanoparticles were prepared by precipitation method. the precursor materials used in this research were cerium nitrate hexahydrate (as a basic material), potassium carbonate and potassium hydroxide (as pre...

2015
Laura Pastor-Pérez Tomás Ramírez Reina Svetlana Ivanova Miguel Ángel Centeno José Antonio Odriozola

In this work, the WGS performance of a conventional Ni/CeO2 bulk catalyst is compared to that of a carbon-supported Ni-CeO2 catalyst. The carbon-supported sample resulted to be much more active than the bulk one. The higher activity of the Ni-CeO2/C catalyst is associated to its oxygen storage capacity, a parameter that strongly influences the WGS behavior. The stability of the carbon-supported...

Journal: :Biochemical and biophysical research communications 2006
David Schubert Richard Dargusch Joan Raitano Siu-Wai Chan

The responses of cells exposed to nanoparticles have been studied with regard to toxicity, but very little attention has been paid to the possibility that some types of particles can protect cells from various forms of lethal stress. It is shown here that nanoparticles composed of cerium oxide or yttrium oxide protect nerve cells from oxidative stress and that the neuroprotection is independent...

Journal: :Journal of Materials Research 2002

Journal: :Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences 2015

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