kratos axis nova spectrometer (Kratos Solutions)
86
Structured Review
Kratos Solutions
kratos axis nova spectrometer
Kratos Axis Nova Spectrometer, supplied by Kratos Solutions, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/kratos+axis+nova+spectrometer/axis+electron+nova+small+spectrometer+spot/us12649665-269-7-7
Average 86 stars, based on 1 article reviews
Kratos Axis Nova Spectrometer, supplied by Kratos Solutions, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/kratos+axis+nova+spectrometer/axis+electron+nova+small+spectrometer+spot/us12649665-269-7-7
Average 86 stars, based on 1 article reviews
kratos axis nova spectrometer - by Bioz Stars,
2026-09
86/100 stars
Images
Related Articles
other:Article Title: Covalent surface modification of two-dimensional metal carbides Article Snippet: UPS UPS measurements were performed on a Spectroscopy:Article Title: Enhanced Hydrogen Sensing Performance at Room Temperature Employing Photoactive Hybrid Pd Nanoparticle-Decorated SiO 2 @TiO 2 Core-Shell Nanospheres. Article Snippet: In this research, a novel hydrogen (H2) gas sensing material, consisting of Pd nanoparticle-decorated mesoporous SiO2 core−TiO2 shell (Pd/SiO2@TiO2) nanospheres (NSs), is synthesized using a cost-effective layer-by-layer self-assembly strategy, resulting in mean diameters of 200 ± 14 nm for SiO2 NSs, 229 ± 6 nm for Pd/ SiO2@TiO2 NSs, and 3.0 ± 0.4 nm for Pd nanoparticles that operate at room temperature (25 °C).. By using the synergistic effects of Pd nanoparticles and the core− shell architecture of SiO2@TiO2 NSs, the sensor demonstrates a high response of 22.83, with rapid response and recovery times of 68 and 43 s, respectively, toward 1000 ppm of H2 at 25 °C under illumination by 625 nm light.. Even under dark conditions, the sensor exhibits a high sensor response of 7.4, with fast response and recovery times of 98 and 38 s, respectively, which is due to the incorporation of nano-Schottky junctions between Pd and the TiO2 interface and n−n homo junctions between anatase and rutile phase presence in the TiO2 shell. Article Title: Photo- and electro- catalytic insights into H2O2 production using ferrite structure Article Snippet: Hydrogen peroxide (H2O2), currently produced by the anthraquinone process, has a significant environmental impact.. In contrast, the photocatalytic production of H2O2 offers several advantages such as safety, non-polluting operation, and energy savings.. However, the production yield is limited, and hence, developing a superior H2O2 production technique via photocatalysis is essential. Article Title: Preparation and Properties of Camellia oleifera Fruit Shell Cellulose Nanoparticle Material for Selective Enrichment of Histidine Proteins From Foods Article Snippet: The surface morphology and elemental composition were examined using an SU8820 ultrahigh‐resolution scanning electron microscope (Hitachi) equipped with an EDS detector. .. Surface elemental speciation was quantified by x‐ray photoelectron spectroscopy (XPS) on a Software:Article Title: Enhanced Hydrogen Sensing Performance at Room Temperature Employing Photoactive Hybrid Pd Nanoparticle-Decorated SiO 2 @TiO 2 Core-Shell Nanospheres. Article Snippet: In this research, a novel hydrogen (H2) gas sensing material, consisting of Pd nanoparticle-decorated mesoporous SiO2 core−TiO2 shell (Pd/SiO2@TiO2) nanospheres (NSs), is synthesized using a cost-effective layer-by-layer self-assembly strategy, resulting in mean diameters of 200 ± 14 nm for SiO2 NSs, 229 ± 6 nm for Pd/ SiO2@TiO2 NSs, and 3.0 ± 0.4 nm for Pd nanoparticles that operate at room temperature (25 °C).. By using the synergistic effects of Pd nanoparticles and the core− shell architecture of SiO2@TiO2 NSs, the sensor demonstrates a high response of 22.83, with rapid response and recovery times of 68 and 43 s, respectively, toward 1000 ppm of H2 at 25 °C under illumination by 625 nm light.. Even under dark conditions, the sensor exhibits a high sensor response of 7.4, with fast response and recovery times of 98 and 38 s, respectively, which is due to the incorporation of nano-Schottky junctions between Pd and the TiO2 interface and n−n homo junctions between anatase and rutile phase presence in the TiO2 shell. |