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11.
A tin layer 0.8 nm thick was deposited onto the CeO2(1 1 1) surface by molecular beam deposition at a temperature of 520 K. The interaction of tin with cerium oxide (ceria) was investigated by X-ray photoelectron spectroscopy (XPS), ultra-violet photoelectron spectroscopy (UPS) and resonant photoelectron spectroscopy (RPES). The strong tin-ceria interaction led to the formation of a homogeneous bulk Ce-Sn-O mixed oxide system. The bulk compound formation is accompanied by partial Ce4+ → Ce3+ reduction, observed as a giant 4f resonance enhancement of the Ce3+ species. CeO2 and SnO2 oxides were formed after oxygen treatment at 520 K. The study proved the existence of strong Ce-Sn interaction and charge transfer from Sn to the Ce-O complex that lead to a weakening of the cerium-oxygen bond, and consequently, to the formation of oxygen deficient active sites on the ceria surface. This behavior can be a key for understanding the higher catalytic activity of the SnOx/CeOx mixed oxide catalysts as compared with the individual pure oxides. 相似文献
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Bawuah Prince Zeitler J. Axel Ketolainen Jarkko Peiponen Kai-Erik 《Optical Review》2018,25(3):444-449
Optical Review - Terahertz (THz) spectra from the pure forms [i.e. the active pharmaceutical ingredients (APIs)] of four commonly used antimalarial drugs are reported. The well-defined spectral... 相似文献
14.
A method to track a grid of cardiac material points in three dimensions using slice-following (SF) tagged magnetic resonance imaging (MRI) and harmonic-phase MRI is presented. A three-dimensional grid of material points on the lines of intersections of short-axis (SA) and long-axis (LA) planes is automatically tracked by combining two-dimensional pathlines that are computed on both SA and LA image planes. This process yields the true three-dimensional motion of points originating on the image plane intersections. Experimental data from normal volunteers, each obtained in four short breath-holds using the SF harmonic phase MRI pulse sequence, is presented. A validation of two-dimensional in-plane tracks using this pulse sequence on a moving phantom is also presented. 相似文献
15.
Melero García E Kivimäki A Pettersson LG Alvarez Ruiz J Coreno M de Simone M Richter R Prince KC 《Physical review letters》2006,96(6):063003
The Balmer emission from atomic hydrogen has been recorded across the resonances at the oxygen K edge of the water molecule using synchrotron radiation excitation. The emission is observed to be strongest at excitations to Rydberg resonances. The observations are interpreted using a qualitative model for the dynamics of the core-to-Rydberg excited molecule. The model links the quantum state of the core-excited water molecule via resonant Auger decay and subsequent dissociation to the state of the fluorescing hydrogen atom. 相似文献
16.
M. Alagia L. Avaldi M. Coreno R. Camilloni C. Furlani K. C. Prince 《Synchrotron Radiation News》2013,26(2):19-27
Respiratory diseases are one of the greatest causes of morbidity and mortality in humans, affecting people at all stages of their lives. Indeed, respiratory failure is a major cause of morbidity and mortality in newborn infants, asthma is a common disease in children, and pulmonary fibrosis, emphysema, and asthma are all major health issues in adults [1]. Our research at SPring-8 has mainly focused on the transition to air-breathing at birth, but has also focused on adult lung diseases such as pulmonary fibrosis and asthma, which has resulted from the application of new imaging developments. 相似文献
17.
On the 31st of May and the 1st of June, 2007, a workshop to celebrate 10 years of atomic and molecular science was held at Elettra. The occasion marked the 10th anniversary since the first beamtime was officially allocated to a user at the Gas Phase beamline, namely George King of Manchester University. As a satisfied user, King was not only present, but had beamtime during the workshop. 相似文献
18.
Kevin Prince 《Synchrotron Radiation News》2015,28(3)
Anew initiative to facilitate interdisciplinary research on advanced materials, biomaterials, and nanotechnology has begun operation in Europe. CERIC, the Central European Research Infrastructure Consortium, is a partnership between two synchrotrons and seven other advanced, user-based research centers, each in a different country participating in the consortium (see Figure 1). 相似文献
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X-ray photoelectron spectroscopy (XPS), secondary ion mass spectrometry (SIMS), rotating disc electrode-electrochemical impedance spectroscopy (RDE-EIS) and synchrotron radiation-grazing incidence X-ray diffraction (SR-GIXRD) have been used to study the response mechanism of the mercury(II) chalcogenide ion-selective electrode (ISE) in saline media. XPS and SIMS have shown that the chalcogenide surface is poisoned by silver chloride, or a mixture of silver halides, on continuous exposure to synthetic and real seawater. Significantly, the in-situ SR-GIXRD study demonstrated that electrode fouling in synthetic seawater is linked to the formation of poorly crystalline or amorphous silver chloride, and that the low level of free mercury(II) in a calibration buffer (i.e., 10(-14) M) is able to undergo metathesis with silver(II) sulfide in the membrane generating mercury(II) sulfide. Significantly, the results of this detailed surface study have shown that silver chloride fouling of the electrode is ameliorated in real seawater comprising natural organic ligands, and this has been attributed to the peptization of silver chloride by the surfactant-like nature of seawater ligands at pH 8. RDE-EIS aging studies have revealed that the chalcogenide membrane experiences a sluggish charge transfer reaction in seawater, and contrary to a previous report for a static electrode, the seawater matrix does not passivate the RDE. The results of this XPS, SIMS, RDE-EIS and SR-GIXRD study have elucidated the response mechanism of the mercury(II) ISE in saline media. 相似文献