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Using time-resolved photoelectron spectroscopy, the decay channels of AuO2 and Au2O2 following photoexcitation with 3.1-eV photons have been studied. For AuO2, a state with a rather long lifetime of 30 ps has been identified. Its decay path could not be determined but photodesorption can be excluded. For Au2O2, the spectra indicate O2 desorption after 3.1-eV photoexcitation on a time scale of 1 ps. While comparing these results on Au n O2 with analogous data on Ag n O2 clusters, a discernible pattern emerges: for dissociatively bound O2(AuO2, Ag3O2), there are long-living excited states which do not decay by oxygen desorption, while for molecular chemisorption (Au2O2, Ag2O2, Ag4O2, Ag8O2), the 3.1-eV photoexcitation triggers fast O2 desorption with a high quantum yield.  相似文献   

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Specific functionalized calix[4]arene based fluorescent chemosensor was synthesized for cations and anions binding efficiency examination. Receptor C4MA displayed strong affinity for Al3+and S2O7 2? with enhanced fluorescence intensity. The selective response of C4MA was investigated in the presence of different co-existing competing ions. The limit of detection (LOD) of Al3+and S2O7 2? was calculated as 2.8?×?10?6 M and 2.6?×?10?7 M respectively. Sensor C4MA forms (1:1) stoichiometric complex with both Al3+ and S2O7 2? and their binding constants were calculated as 12.1?×?104 and 8.3?×?103 respectively. Complexes were also characterized through FT-IR spectroscopy.
Graphical Abstract ?
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Red-light-emitting Y2O3:Eu3+ thin-film phosphors were synthesized using a sol–gel process. The effect of Mg2+ and Al3+ co-dopants on the Y2O3:Eu3+ thin-film phosphor photoluminescence (PL) property was investigated. At a certain concentration, both Mg2+ and Al3+ co-dopants were found to further enhance the PL emission intensity of Y2O3:Eu3+ thin-film phosphors. The optimum PL emission intensity was observed in Y2O3:12%Eu3+, 7%Mg2+ and Y2O3:12%Eu3+, 2%Al3+ phosphor films. From our results, the enhancement of the emission intensity by the Mg2+ and Al3+ co-dopants is explained in terms of the creation of defect states near the Y(4d+5s) conduction band, which overlap with the Eu3+ charge-transfer state (CTS). The overlapping leads to CTS broadening and consequently induces higher absorption and hence an increase of the emission intensity. From X-ray diffraction results, we have found that there is no additional phase formed in the co-doped phosphor films. PACS 68.55.Ln; 78.55.-m; 81.20.Fw  相似文献   

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We propose a method for EIT ground state cooling of 171Yb+ ion, which involves three light fields with detuning on a MHz scale. The steady-state mean vibrational quantum number is calculated to be less than 0.005. Efficient cooling is achievable in a motional-mode frequency range of 2π · (1.5 ± 0.5 MHz).  相似文献   

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The structural and the thermodynamic properties of potassium nitrate KNO3 and its composites with nanosized aluminum oxide Al2O3 have been studied by differential scanning calorimetry. It has been found that an amorphous phase forms in composites (1–x)KNO3–xAl2O3. The thermal effect corresponding to this phase has been observed at 316°C. It has been found that the phase transition heats of potassium nitrate decreased as the aluminum oxide fraction increased.  相似文献   

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The temperature dependences of the quenching rate constants of the states N2 (${\rm C} \ {^{3}{ \rm \Pi }_{u}}${\rm C} \ {^{3}{ \rm \Pi }_{u}} v=0,1) by N2 (X) and of the state N2 (${\rm C} \ {^{3}{ \rm \Pi }_{u}} \ v^{\prime}=0${\rm C} \ {^{3}{ \rm \Pi }_{u}} \ v^{\prime}=0) by O2 (X) are studied. Time-resolved light emission from the gas was analyzed in the temperature range from 300 K to 210 K keeping the gas at constant density. In case of quenching by N2 (X), the quenching rate constant for the vibrational level v= 0 increases by (13 ±3)% with gas cooling whereas the quenching rate constant for v= 1 decreases by (5.0 ±2.5)% in this temperature range. For quenching by O2 (X), the quenching rate constant decreases by (3 ±2)% with gas cooling. The temperature variation of the N2 (C 3Πu v=0) emission intensity for pure nitrogen and dry air are calculated using the obtained quenching rate constants and is compared with the experimental data available in the literature.  相似文献   

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