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24 results for “sublimation”
Sublimation and infrared spectral properties of ammonium cyanide
<p>Data from</p> <p>Perry A. Gerakines, Yukiko Y. Yarnall, Reggie L. Hudson,<br>Sublimation and infrared spectral properties of ammonium cyanide,<br>Icarus,<br>Volume 413,<br>2024,<br>116007,<br>ISSN 0019-1035,<br>https://doi.org/10.1016/j.icarus.2024.116007.<br>(https://www.sciencedirect.com/science/article/pii/S0019103524000654)<br>Abstract: The ammonium ion (NH4+) has been suggested to be present in interstellar ices and has been observed on the surfaces of planetary bodies using infrared (IR) spectroscopy as the primary means of identification. Evidence for several ammonium salts has also been found in the dust and surface ices of comet 67P/Churyumov-Gerasimenko. Here we present a laboratory study of ammonium cyanide (NH4CN) and report on several properties of this compound, measured with higher accuracy than in previous reports, including its IR band strengths and optical constants for use in quantifying its abundance in interstellar and planetary ices. We also report the first measurements since 1882 of NH4CN vapor pressures, sublimation fluxes, and sublimation enthalpy measured at temperatures relevant to subliming cometary ices (134–155 K). The density and refractive index of NH4CN at 125 K and the sublimation enthalpy and vapor pressures of NH3 at ~100 K are also reported.</p> <p><br>Keywords: Ices; IR spectroscopy; Comets; Infrared observations</p> <p>This work was funded by the NASA Astrophysics Research and Analysis (APRA) and Planetary Data Archiving, Restoration, and Tools (PDART) Programs, as well as NASA's Planetary Science Division Internal Scientist Funding Program through the Fundamental Laboratory Research (FLaRe) work package at the NASA Goddard Space Flight Center.</p>
Vacuum-Sublimed Cocrystalline Thin Films of Naphthalene Bisimide and Pt(II) Complex for Phosphorescent Light-Emitting Diodes
<p>Additional data to report <a href="https://doi.org/10.1002/adom.202402117">https://doi.org/10.1002/adom.202402117</a>:</p> <p>Cocrystals employing small organic molecules with platinum(II)-complexes are known to exhibit organic room-temperature phosphorescence (RTP). However, this desirable property was so far only demonstrated in the macroscopic 1:1 cocrystalline state, which limitsdevice applications outside of small single-crystal devices. Here, we show that vacuum cosublimed thin films of both components in various mixing ratios form layers with selfassembled small cocrystalline domains which exhibit RTP. This Pt(II) doping improved the photoluminescence (PL) quantum yield (ΦPL) of the now phosphorescence emitting 1,8:4,5-naphthalene bisimide (NBI) from below 0.1% to 9% in respective thin films. These doped layers were employed as active layers in light-emitting diodes to emit red electroluminescence (EL). Via time-resolved measurements the lifetime of the device EL was determined in accordance with the PL to be around 50 µs. Maximum external quantum efficiencies (EQEs) of over 0.2% with RTP emission signatures consistent with the PL of solution-grown cocrystals could be achieved.</p>
Sublimation driven convection in Sputnik Planitia on Pluto
<p>Results obtained with a numerical code of mantle convection with temperature-dependent viscosity (StagYY by Paul J. Tackley, ETH Zürich) to model convection in Sputnik Planitia (Pluto). Convection is driven by surface cooling owing to sublimation at the surface.</p> <p>All the data needed to produce the figures in the paper and supplements are provided, along with the python script used to create them. The script will need some modifications to be able to run without accessing the raw data (too big for any repository) since these are used for snapshot informations. The script is therefore provided as a record of post-treatment techniques. Figures can nevertheless be reproduced from the provided data using standard python packages. Contact the authors for help if needed. </p>
Spectral data associated to the publication: "Near-infrared reflectance spectroscopy of sublimating salty ice analogues. Implications for icy moons" by R. Cerubini et al. (Planetary and Space Science 211, 2022)
<p>This is the complete set of experimental NIR reflectance data collected by R. Cerubini and co-authors for the article "Near-infrared reflectance spectroscopy of sublimating salty ice analogues. Implications for icy moons" published in Planetary and Space Science 211 (2022). doi: https://doi.org/10.1016/j.pss.2021.105391.</p> <p>The article itself is published in open-access and provides the methodology for the spectral aquisitions, discussion of the errors and uncertainties, analysis of the spectra and implications for the composition of Solar System surfaces.</p> <p>The data are contained in ASCII files (columns separated by comma). The first column is the wavelength (in micrometers) and the other columns contain the reflectance data (in unit of reflectance factor). The different compositions are indicated in the filenames and correspond directly to the figures in the published paper.</p> <p> </p> <p> </p>
Dataset of the publication: Sublimable complexes with spin switching: Chemical design, processing as thin films and integration in graphene-based devices
<p>Dataset of the publication: Sublimable complexes with spin switching: Chemical design, processing as thin films and integration in graphene-based devices</p> <p>DOI: 10.1039/d2tc04120k</p> <p>M. Guevara-Edo, F. J. Valverde-Muñoz, R. Cordoba, M. C. Muñoz, J. Herrero-Martín, J. A. Real, E. Coronado</p> <p>J. Mater. Chem. C, 11, 24, 8107-8120 (2023)</p>
Dataset of the publication: Design and processing as ultrathin films of a sublimable Iron(II) spin crossover material exhibiting efficient and fast light-induced spin transition
<p>Dataset of the publication: Design and processing as ultrathin films of a sublimable Iron(II) spin crossover material exhibiting efficient and fast light-induced spin transition</p> <p>DOI: 10.1021/acs.chemmater.3c01704</p> <p>M. Gavara-Edo, F. J. Valverde-Muñoz, M. C. Muñoz, S. Elidrissi, F. Marques-Moros, J. Herrero-Martín, K. Znovjyak, M. Seredyuk, J. A. Real, E. Coronado <br><br>Chem. Mater., 35, 22, 9591-9602 (2023)</p>
Monthly accumulated sublimation and yearly accumulated surface mass balance (SMB) components RACMO model simulations for Antarctica on 27km grid for 2000-2012
<p>Monthly accumulated (denoted monthlyS) sublimation components and yearly accumulated (denoted yearlyS) surface mass balance (SMB) components for Antarctica (ANT) on 27 km horizontal grid produced by RACMO model are presented in this dataset for the year 2000-2012. The dataset consists of data from three simulations named, NODRIFT, Rp3, and RpNew. NODRIFT represents the run with no blowing snow sublimation, Rp3 corresponds to version of the blowing snow model with simplifications, RpNew corresponds to the advanced version with new updates to the blowing snow model in RACMO. Details of the simulations can be found in the associated paper : <a title="Contribution of blowing snow sublimation to the surface mass balance of Antarctica" href="https://doi.org/10.5194/egusphere-2024-116" target="_blank" rel="noopener">https://doi.org/10.5194/egusphere-2024-116</a>. The data includes yealy accumulated SMB components including SMB, snow melt, refreezing, precipiation, runoff, blowing snow erosion, surface sublimation, and blowing snow sublimation, the data also includes yearly averaged (denoted yearlyA) . Furthermore, the data includes monthly accumulated sublimation components of surface sublimation (subl), and blowing snow sublimation (suds). </p>
Text-fig. 2. Condylopyge cf. rex (BARRANDE, 1846), middle Cambrian, latest Cambrian Stage 5 and lower Drumian, Jince Formation, Příbram-Jince Basin. a. internal mould of isolated cephalon (Specimen CGS CW 17), Potůček near Rejkovice locality (= locality 12 in Fatka and Kordule 1992) in lower levels of the Paradoxides (Eccaparadoxides) pusillus Zone. b. latex cast of external mould of isolated pygidium (Specimen CGS FK 63), Potůček near Rejkovice locality (= locality 12 in Fatka and Kordule 1992) in lower levels of the Paradoxides (Eccaparadoxides) pusillus Zone. c. internal mould of isolated cephalon (Specimen CGS CW 18), foot of the slope known as Vinice near Jince (locality 20 in Fatka and Kordule 1992) in lower levels of the Onymagnostus hybridus Zone. Condylopyge rex (BARRANDE, 1846), middle Cambrian, lower Drumian, Buchava Formation, Paradoxides (Eccaparadoxides) pusillus Zone, Skryje-Týřovice Basin. d. internal mould of isolated cephalon (NM-L43011a), Karáskovská rokle - nad chatami. e. internal mould of isolated pygidium (NM-L43014), Lůmek u Týřovic. f. internal mould of isolated cephalon (NM-L43013), Lůmek u Týřovic. Whitened with ammonium chloride sublimate. All scale bars are 1 mm. Photographs by Martin Valent (National Museum Prague). in Condylopyge Hawle Et Corda, 1847 In The Příbram-Jince Basin (Barrandian Area, The Czech Republic, Agnostida)
Text-fig. 2. Condylopyge cf. rex (BARRANDE, 1846), middle Cambrian, latest Cambrian Stage 5 and lower Drumian, Jince Formation, Příbram-Jince Basin. a. internal mould of isolated cephalon (Specimen CGS CW 17), Potůček near Rejkovice locality (= locality 12 in Fatka and Kordule 1992) in lower levels of the Paradoxides (Eccaparadoxides) pusillus Zone. b. latex cast of external mould of isolated pygidium (Specimen CGS FK 63), Potůček near Rejkovice locality (= locality 12 in Fatka and Kordule 1992) in lower levels of the Paradoxides (Eccaparadoxides) pusillus Zone. c. internal mould of isolated cephalon (Specimen CGS CW 18), foot of the slope known as Vinice near Jince (locality 20 in Fatka and Kordule 1992) in lower levels of the Onymagnostus hybridus Zone. Condylopyge rex (BARRANDE, 1846), middle Cambrian, lower Drumian, Buchava Formation, Paradoxides (Eccaparadoxides) pusillus Zone, Skryje-Týřovice Basin. d. internal mould of isolated cephalon (NM-L43011a), Karáskovská rokle - nad chatami. e. internal mould of isolated pygidium (NM-L43014), Lůmek u Týřovic. f. internal mould of isolated cephalon (NM-L43013), Lůmek u Týřovic. Whitened with ammonium chloride sublimate. All scale bars are 1 mm. Photographs by Martin Valent (National Museum Prague).
'Sublime Mix' online book reviews in English
<p>Belongs to article ‘A pretty sublime mix of WTF and OMG’. (More data to be added upon acceptance).</p> <p>English online book reviews reused from</p> <p>Jianmo Ni, Jiacheng Li, and Julian McAuley, "Justifying recommendations using distantly-labeled reviews and fine-grained aspects" (paper presented at the Proceedings of the 2019 Conference on Empirical Methods in Natural Language Processing and the 9th International Joint Conference on Natural Language Processing (EMNLP-IJCNLP), 2019)</p> <p>and</p> <p>Wan et al., "Short Fine-Grained Spoiler Detection from Large-Scale Review Corpora."</p>
'Sublime Mix' online book reviews in Dutch
<p>Belongs to article ‘A pretty sublime mix of WTF and OMG’. (More data to be added upon acceptance).</p> <p>Dutch online book reviews drawn from ODBR database. See:</p> <p>Boot, P. (2017). A Database of Online Book Response and the Nature of the Literary Thriller. Digital Humanities 2017. Montreal.<br> </p> <p> </p>
FIGURES 26–35 in Review of the Malagasy Anthobosca, the Bizarre and the Sublime (Hymenoptera: Tiphiidae: Anthoboscinae)
FIGURES 26–35. Male genital capsule, dorsal view. Abbreviations: gc = gonocoxa, pb = paramere base, pa = paramere apical lobe, pv = penis valve, v = volsella.
FIGURES 15–25 in Review of the Malagasy Anthobosca, the Bizarre and the Sublime (Hymenoptera: Tiphiidae: Anthoboscinae)
FIGURES 15–25. Male genital capsule, lateral view. Abbreviations: gc = gonocoxa, pb = paramere base, pa = paramere apical lobe, pv = penis valve, v = volsella.
FIGURES 5–14 in Review of the Malagasy Anthobosca, the Bizarre and the Sublime (Hymenoptera: Tiphiidae: Anthoboscinae)
FIGURES 5–14. Male genital capsule. ventral view. Abbreviations: gc = gonocoxa, pb = paramere base, pa = paramere apical lobe, pv = penis valve, v = volsella.
FIGURES 1, 2 in Review of the Malagasy Anthobosca, the Bizarre and the Sublime (Hymenoptera: Tiphiidae: Anthoboscinae)
FIGURES 1, 2. Ventral view of male sternum VIII. 3. Male face. 4. Lateral view of body. Abbreviation: t = tyloid.
Therapeutic And Dietary Effects Of The Sublimated Mare's Milk Supplement In Patients With Non-Alcoholic Steatohepatitis
ClinicalTrials.gov study NCT03664596. IPD Sharing: NO. Countries: 1. Publications: 10.
Size Up Bicuspid with the LIra MEthod: the SUBLIME Study
ClinicalTrials.gov study NCT06657911. IPD Sharing: NO. Countries: 2. Publications: 7.
Clinical Trial on the Effect of the Sublimated Mare Milk Supplement on Primary Biliary Cholangitis
ClinicalTrials.gov study NCT03665519. IPD Sharing: NO. Countries: 1. Publications: 4.
The Sublimated Mare Milk Supplement's Effect on Gut Mucosal Lining After Antibiotics
ClinicalTrials.gov study NCT03657836. IPD Sharing: NO. Countries: 1. Publications: 6.
Effect of Sublimated Mare Milk Supplement on Gut Microbiome in Psoriasis Patients
ClinicalTrials.gov study NCT03594877. IPD Sharing: NO. Countries: 1. Publications: 8.
The Sublimated Mare Milk Supplement in Hepatitis C
ClinicalTrials.gov study NCT03669835. IPD Sharing: NO. Countries: 1. Publications: 4.
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