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    Neutron spectroscopy study of the diffusivity of hydrogen in MoS2

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    The diffusion of hydrogen adsorbed inside layered MoS2 crystals has been studied by means of quasi- elastic neutron scattering, neutron spin-echo spectroscopy, nuclear reaction analysis, and X-ray photoelectron spectroscopy. The neutron time-of-flight and neutron spin-echo measurements demonstrate fast diffusion of hydrogen molecules parallel to the basal planes of the two dimensional crystal planes. At room temperature and above, this intra-layer diffusion is of a similar speed to the surface diffusion that has been observed in earlier studies for hydrogen atoms on Pt surfaces. A significantly slower hydrogen diffusion was observed perpendicular to the basal planes using nuclear reaction analysis

    Glycine adsorption and photo-reaction over ZnO(000ī) single crystal

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    The adsorption and reaction of the amino acid glycine (NH2-CH2-COOH) are studied experimentally on the polar single crystal surface of zinc oxide, ZnO(000-1), by X-ray photoelectron spectroscopy (XPS) under UV light in presence and absence of molecular O2. Deposition at 350 K mainly resulted in a largely deprotonatedmonolayer (NH2-CH2-COO−(a)+OH(s); where O is surface oxygen,(a)is for adsorbed and(s)is for surface species) identified by its XPS C1s binding energy at 289.3 eV (-COO), 286.7 eV (-CH2-) and XPS O1s at 531.8 eV(-COO). A decrease in the signals of all functional groups of the adsorbed glycine (monitored by their C1s, O1s,and N1s lines) is seen upon UV excitation in the absence and presence of O2pressures up to 5 × 10−6 mbar. The photoreaction cross sections extracted from the decrease in the C1s peaks were found to be =2.6 × 10−18(COO(a)) and 1.4 × 10−18(-CH2-)cm^2. The photoactivity of the ZnO(000-1) surface under UHV-conditions is found to be comparable to that seen in direct photolysis of amino acids in solution

    Zukunftssichere Auslegung von RLT-Geräten im Zeichen des Klimawandels

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    Alle Maßnahmen der Technischen Gebäudeausrüstung sollten daran gemessen werden, den Primär-energieverbrauch so gering wie möglich zu halten, dabei aber auch die geforderten Raumzustände während der Gebäude- und Anlagennutzung sicherzustellen. Heute geplante Gebäude und deren RLT-Anlagen werden mit großer Wahrscheinlichkeit auch noch in 15 bis 20 Jahren in Betrieb sein, so dass lokale Klimaänderungen heute bereits mitgedacht und –geplant werden sollten. Die Testreferenzjahre des Deutschen Wetterdienstes bieten diese Möglichkeit mit lokalen Wetterdaten für die Bezugsjahre 2015 und 2045. Am Beispiel eines Zentralluftgerätes einer Krankenhaus-Intensivstation wurde für die 15 Wetter¬stationen der VDI 4710, Blatt 3 in Deutschland untersucht, wie sich die Leistungsanforderungen von heute zum Jahr 2045 hin ändern werden und welche Konsequenzen sich daraus für die Planung ableiten lassen. Hierbei werden die Leistungen, Energieverbräuche und Betriebszeiten der einzelnen RLT-Komponenten analysiert und verglichen. Darüber hinaus wurde erstmalig ein „Deutschlandwetter“ auf Basis der Regionen berechnet. Dieser Ansatz liefert die stündlichen Witterungsverhältnisse für das Bundesgebiet. Wenn diese Methode auf die tatsächlichen Wetterdaten der zurückliegenden Jahre angewandt wird, kann damit analog zum Wind- und Solarindex ein Heiz- bzw. Kühlindex beschrieben werden. Damit lassen sich Modellierungsansätze zur Beschreibung der Energiewende im Gebäudesektor deutlich verbessern

    Computed tomography lung-cancer screening: does iterative reconstruction matter?

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    Background: By reviewing image quality and diagnostic perception, the suitability of a statistical model-based iterative reconstruction algorithm in conjunction with low-dose computed tomography for lung cancer screening is investigated. Methods: Artificial lung nodules shaped as spheres and spiculated spheres made from material with calibrated Hounsfield units were attached on marked positions in the lung structure of anthropomorphic phantoms. The phantoms were scanned using standard high contrast, and two low-dose computed tomography protocols: low-dose and ultra-low-dose. For the reconstruction, the filtered back projection and the iterative reconstruction algorithm ADMIRE at different strength levels (S1–S5) and the kernels Bl57, Br32, Br69 were used. Expert radiologists assessed image quality by performing 4-field-ranking tests and reading all image series to examine the aptitude for the detectability of lung nodules. Signal-to-noise ratio was investigated as objective image quality parameter. Results: In ranking tests for lung foci detection expert radiologists prefer medium to high iterative reconstruction strength levels. For the standard clinical kernel Bl57 and varying phantom diameter, a noticeable preference for S4 was detected. Experienced radiologists graded filtered back projection reconstructed images with the highest perceptibility. Less experienced readers assessed filtered back projection and iterative reconstruction equally with the highest grades for the Bl57 kernel. Independently of the dose protocol, the signal-to-noise ratio increases with the iterative reconstruction strength level, specifically for Br69 and Bl57. Conclusions: Subjective image perception does not significantly correlate with the experience of the radiologist, which presumably mirrors reader’s training and accustomed reading adjustments. Regarding signal-to-noise ratio, iterative reconstruction outperforms filtered back projection for spheres and spiculated spheres. Iterative reconstruction matters. It promises to be an alternative to filtered back projection allowing for lung-cancer screening at markedly decreased radiation exposure but comparable or even improved image quality

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