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252 results for “Doping”

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zenodo44/100

Raw Data - Photo-Responsive Doped 3D-Printed Copper Electrodes for Water Splitting: Refractory One-Pot Doping Dramatically Enhances the Performance

<p>The dataset contains raw data that complements the article:</p> <p>Photo-Responsive Doped 3D-Printed Copper Electrodes for Water Splitting: Refractory One-Pot Doping Dramatically Enhances the Performance</p> <p>Christian Iffelsberger, Daniel Rojas, and Martin Pumera<strong>*</strong></p> <p>https://doi.org/10.1021/acs.jpcc.1c10686</p> <p>Related to the MSCA Project: 888797 LoCatSpot</p>

opencc-by-4.0Aug 2022View details →
zenodo44/100

Data of publication All-optical control of long-lived nuclear spins in rare-earth doped nanoparticles

<p>Data corresponding to the figures of the publication &quot;All-optical control of long-lived nuclear spins in rare-earth doped nanoparticles&quot; by D. Serrano et al. (https://www.nature.com/articles/s41467-018-04509-w). A text file&nbsp;describes data&nbsp;in each compressed folder, please refer to the publication for more details.&nbsp;</p>

opencc-by-4.0Jun 2018View details →
zenodo44/100

Data of publication Controlled size reduction of rare earth doped nanoparticles for optical quantum technologies

<p>Data corresponding to the figures of the publication &quot;&nbsp;Controlled size reduction of rare earth doped nanoparticles for optical quantum technologies&quot; by S. Liu et al. (https://pubs.rsc.org/en/content/articlelanding/2018/ra/c8ra07246a#!divAbstract). A text file&nbsp;describes data&nbsp;in each compressed folder, please refer to the publication for more details.&nbsp;</p>

opencc-by-4.0Nov 2018View details →
zenodo44/100

Zinc-doped Zeolite 13X, Partially Zinc-doped Zeolite 13X, and pure Zeolite 13X X-Ray Powder Diffraction

<p>This repository holds X-Ray Powder Diffraction data for three different Zeolite 13X samples to allow for characterisation of the diffraction pattern for zinc-doped Zeolite 13X to perform accurate phase-based diffraction-tomography reconstructions using the data from 10.5281/zenodo.13329639.</p> <p>The three samples are fully Zinc-doped Zeolite 13X, partially Zinc-doped 13X, and pure Zeolite 13X. An empty borosilicate glass capillary is provided to remove scattering from the capillary the samples were housed in.</p> <p>Data in all instances is provided in ASCII format as a .asc file. A basic jupyter notebook is provided to perform the analysis used to determine powder peaks.</p> <p>Data was collected on a Rigaku SmartLab Diffractometer with a copper x-ray source of wavelength 1.5406 angstroms at the ISIS Neutron &amp; Muon Source Materials Characterisation Lab.</p> <p>A detailed data descriptor pre-print is available at https://arxiv.org/abs/2409.07322#</p>

opencc-by-4.0Aug 2024View details →
zenodo44/100

Zinc Doped Zeolite 13X I13-2 X-Ray Computed Tomography - 0.325 micron pixel size RAW

<p>This repository contains raw data for the zinc-doped zeolite 13X sample imaged on the I13-2 beamline at Diamond Light Source. Raw data at a pixel-size of 0.325 microns is stored as a .nxs file, and a savu process list is provided to perform the reconstruction we used to reproduced the reconstructed data.</p> <p>This data is one of four resolutions obtained.</p> <p>A detailed data descriptor pre-print is available at https://arxiv.org/abs/2409.07322#</p> <p>The size of the .hdf file is &gt;50GB and cannot be downloaded from the browser. It is recommended to use a terminal to download the data using the 'curl' or 'wget' command. To generate a file url, right-click the 'Download' button for the dataset you want to download and select 'Copy Link. Enter the following command in your terminal to download the dataset:</p> <blockquote> <p>curl dataset_url &gt; 169065_raw.hdf</p> </blockquote> <p>Please replace dataset_url with the url you copied.</p>

opencc-by-4.0Aug 2024View details →
zenodo44/100

Zinc Doped Zeolite 13X I13-2 X-Ray Computed Tomography - 1.625 micron pixel size RAW

<p>This repository contains raw data for the zinc-doped zeolite 13X sample imaged on the I13-2 beamline at Diamond Light Source. Raw data at a pixel-size of 1.625 microns is stored as a .nxs file, and a savu process list is provided to perform the reconstruction we used to reproduced the reconstructed data.</p> <p>This data is one of four resolutions obtained.</p> <p>A detailed data descriptor pre-print is available at https://arxiv.org/abs/2409.07322#</p> <p>The size of the .hdf file is &gt;50GB and cannot be downloaded from the browser. It is recommended to use a terminal to download the data using the 'curl' or 'wget' command. To generate a file url, right-click the 'Download' button for the dataset you want to download and select 'Copy Link. Enter the following command in your terminal to download the dataset:</p> <blockquote> <p>curl dataset_url &gt; 169067_raw.hdf</p> </blockquote> <p>Please replace dataset_url with the url you copied.</p>

opencc-by-4.0Aug 2024View details →
zenodo44/100

Zinc Doped Zeolite 13X I13-2 X-Ray Computed Tomography - 2.6 micron pixel size RAW

<p>This repository contains raw data for the zinc-doped zeolite 13X sample imaged on the I13-2 beamline at Diamond Light Source. Raw data at a pixel-size of 2.6 microns is stored as a .nxs file, and a savu process list is provided to perform the reconstruction we used to reproduced the reconstructed data.</p> <p>This data is one of four resolutions obtained.</p> <p>A detailed data descriptor pre-print is available at https://arxiv.org/abs/2409.07322#</p> <p>The size of the .hdf file is &gt;50GB and cannot be downloaded from the browser. It is recommended to use a terminal to download the data using the 'curl' or 'wget' command. To generate a file url, right-click the 'Download' button for the dataset you want to download and select 'Copy Link. Enter the following command in your terminal to download the dataset:</p> <blockquote> <p>curl dataset_url &gt; 169068_raw.hdf</p> </blockquote> <p>Please replace dataset_url with the url you copied.</p>

opencc-by-4.0Aug 2024View details →
zenodo44/100

Zinc Doped Zeolite 13X DIAD X-Ray Diffraction Computed Tomography - 25 and 50 micron spot-size

<p>This repository contains X-Ray Diffraction Computed Tomography (XRD-CT) data of a zinc doped zeolite 13X sample on the Dual Imaging and Diffraction (DIAD / K11) at Diamond Light Source.</p> <p>XRD-CT data is provided at a diffraction spot size of 25 microns for three region of interest slices, with a dataset size of 40x2000x80. Both the raw and reconstructed data is provided, along with the code to perform the reconstructions.&nbsp;</p> <p>XRD-CT data is also provided at a diffraction spot size of 50 microns for a full 1.05mm volume, with a dataset size of 20x2000x40. Scans start at 43336 and finish at 43401, with a movement of 0.05mm vertically upwards between each scan.&nbsp;The raw and reconstructed data is provided, along with the code used to perform the reconstructions. Note: Scan 43401 is excluded as a phase-based reconstruction could not be performed.</p> <p>Powder X-Ray Diffraction data can be found in an alternative repository at 10.5281/zenodo.13329670 which provides the q-values of the peaks for both the Zn and Na phase to allow the best reconstructions.</p> <p>A detailed data descriptor pre-print can be found at https://arxiv.org/abs/2409.07322</p>

opencc-by-4.0Aug 2024View details →
zenodo44/100

Zinc Doped Zeolite 13X I13-2 X-Ray Computed Tomography - 0.8125 micron pixel size RAW

<p>This repository contains raw data for the zinc-doped zeolite 13X sample imaged on the I13-2 beamline at Diamond Light Source. Raw data at a pixel-size of 0.8125 microns is stored as a .nxs file, and a savu process list is provided to perform the reconstruction we used to reproduced the reconstructed data.</p> <p>This data is one of four resolutions obtained.</p> <p>A detailed data descriptor pre-print is available at https://arxiv.org/abs/2409.07322#</p> <p>The size of the .hdf file is &gt;50GB and cannot be downloaded from the browser. It is recommended to use a terminal to download the data using the 'curl' or 'wget' command. To generate a file url, right-click the 'Download' button for the dataset you want to download and select 'Copy Link. Enter the following command in your terminal to download the dataset:</p> <blockquote> <p>curl dataset_url &gt; 169066_raw.hdf</p> </blockquote> <p>Please replace dataset_url with the url you copied.</p>

opencc-by-4.0Aug 2024View details →
zenodo44/100

Software repository for data-driven reconstruction of doping profiles in semiconductors

<p>Datasets and code used described in paper: &quot;Data-driven solutions of ill-posed inverse problems arising from doping reconstruction in semiconductors&quot; [arXiv:2208.00742]</p>

opencc-by-4.0Aug 2022View details →
zenodo44/100

Direct synthesis of a stable radical doped electrically conductive coordination polymer

<ul> <li><strong>Data type</strong>: Experimental spectroscopic measurements.</li> <li>Files are with filename extensions: <strong>DSC</strong>, <strong>DAT</strong>,<strong>txt</strong></li> <li>Information on <strong>origin of the data</strong>:</li> </ul> <ul> <li>EPR spectroscopic measurements with filename extensions <strong>DSC</strong>, <strong>DTA.</strong></li> <li>EPR spectra are exported as <strong>txt</strong> files in ASCII format.</li> </ul> <ul> <li>X-band CW-EPR spectroscopic measurements were generated by EMX spectrometer equipped with SHQ cavity produced by Bruker.</li> <li><strong>If the dataset includes multiple files that relate to each other:</strong> <ul> <li>Files in <strong>PARACAT_WP4_20220202_ULEI_01_ONDICathedral_RT </strong>folder includes X-band CW-EPR spectroscopic measurements; original data are in DTA/DSC and txt formats.</li> </ul> </li> <li><strong>Information on</strong>: <ul> <li>specialized abbreviations: <strong>ONDICatechol&ndash; </strong>ONDI with Catechol, <strong>ONDIDMF&ndash; </strong>ONDI with DMF, <strong>ONDI_piperidine&ndash; </strong>ONDI with piperidine,<strong> ONDICdCl&ndash; </strong>ONDI with CdCl, <strong>ONDIDMSO&ndash; </strong>ONDI with DMSO.</li> <li>_RT&ndash; measured at 300 K</li> <li>definitions of variables: <strong>Magnetic field, Temperature.</strong></li> <li>units of measurement: <strong>Gauss (G), K, degree (&deg;), milliTesla (mT)</strong>.</li> </ul> </li> </ul>

opencc-by-4.0Mar 2023View details →
zenodo40/100

N2-sorption and catalytic results of doped Cu-catalysts for glycerol hydrogenolysis

<p>This repository includes experimental data associated with the following publication: A. Bouriakova et al., &quot;Dopant induced stabilization of alumina supported copper &ndash; impact on the catalytic performance in the hydrogenolysis of glycerol to 1,2-propanediol&quot;,&nbsp;submitted to Catalysis Communications in April 2020</p> <p>&nbsp;</p> <p>In this work, five catalysts supported on &gamma;-Al<sub>2</sub>O<sub>3</sub>&nbsp;were studied, i.e. one bare Cu and four doped-Cu catalysts.&nbsp;The catalysts were prepared via sequential impregnation. The nominal dopant loading was 1wt%, for the Cu a nominal value of 10wt% was selected:</p> <p>- 10wt% Cu/-Al2O3, indicated as Cu</p> <p>- 1wt%Ba-10wt% Cu/-Al2O3, indicated as Ba-Cu<br> - 1wt%Ce-10wt% Cu/-Al2O3, indicated as Ce-Cu<br> - 1wt%Cs-10wt% Cu/-Al2O3, indicated as Cs-Cu<br> - 1wt%La-10wt% Cu/-Al2O3, indicated as La-Cu</p> <p>&nbsp;</p> <p>The catalysts were investigated&nbsp;for 68 h for continuous flow pure glycerol hydrogenolysis in a trickle bed regime at&nbsp;&nbsp;473 K, 7.5 MPa,&nbsp;135 kg<sub>cat </sub>s mol<sup>-1</sup><sub>glycerol </sub>and 7 mol<sub>H2</sub> mol<sup>-1</sup><sub>glycerol</sub>,&nbsp;and compared for glycerol conversion, 1,2-propanediol selectivity and stability.</p> <p>The data file contains the glycerol conversion and selectivities over time for the studied catalysts, in combination with N<sub>2</sub>-sorption data of those catalysts. In addition, an overview of literature data on glycerol hydrogenolysis is given (Fig 1 in the manuscript).</p>

opencc-by-4.0Apr 2020View details →
zenodo40/100

UVC Up-Conversion and Vis-NIR Luminescence Examined in SrO-CaO-MgO-SiO2 Glasses Doped with Pr

<p><span>This work was supported by the National Science Centre, Poland, under grant number DEC-2021/41/B/ST5/03792 entitled: Phosphors for UVC LEDs: Self-Disinfecting Surfaces.</span>&nbsp;</p>

opencc-by-4.0Mar 2024View details →
zenodo40/100

Observation of an Exotic Insulator to Insulator Transition upon Electron Doping the Mott Insulator CeMnAsO

<p>VASP input and output for the computational part of the paper "Observation of an Exotic Insulator to Insulator Transition upon Electron Doping the Mott Insulator CeMnAsO".</p><p>stoichiometric.tar.gz: Data for stoichiometric CeMnAsO<br>defective.tar.gz: Data for CeMnAsO0.94F0.06</p>

opencc-by-4.0Oct 2023View details →
zenodo40/100

Figure 3 in Evaluation on reducing toxicity of fluoxastrobine with doped TiO2 nanoparticles

Figure 3. Mortality rates (%) determined in X. laevis embryos and tadpoles exposed to degradation products of FLX (5 mg L-1).

opencc-by-4.0Dec 2020View details →
zenodo40/100

Figure 2 in Evaluation on reducing toxicity of fluoxastrobine with doped TiO2 nanoparticles

Figure 2. (A) LC-MS/MS spectra of 5 mg L-1 FLX with Mn–TiO in 0.15% wt v-1 catalyst in sol before irradiation and (B) after 15 h of 2 UV-C irradiation. (C) LC-MS/MS spectra of 5 mg L-1 FLX with S–TiO in 0.1%wt v-1 catalyst in sol before irradiation and (D) after 10 2 h of UV-C irradiation.

opencc-by-4.0Dec 2020View details →
zenodo40/100

Synthesis and characterization of CsPbCl3 perovskite doped with Nd3+: structural, optical, and energy transfer properties

<div> <p>The purpose of this paper is to synthesize micrometric inorganic perovskite CsPbCl3:Nd3+ and investigate the impact of doping with rare earth ions on structural and optical properties, as well as energy transfer pathways between the host and dopant. Herein, we report the solid-state reaction synthesis of a concentration series of CsPbCl3:x%Nd3+ annealed in a nitrogen atmosphere. Additional doping of a material that already exhibits luminescence with an optically active ion increases its application potential. Structural features were determined using X-ray powder diffraction and Raman spectroscopy. Morphology studies performed with scanning electron microscopy images revealed micrometric, well-separated cubic-like crystallites with a good distribution of individual elements. Surprisingly, a photoluminescence (PL) study showed that only the blue emission appears when the material is excited with a diode operating in the UV range. Apparently, the emission of Nd3+ ions can only be obtained with direct excitation of the lanthanide. The photoluminescence excitation (PLE) spectrum monitored for Nd3+ emission confirmed the lack of energy transfer between the host and dopant. Possible explanations for this behavior have been put forth and substantiated by the first-principles electronic structure calculations in the framework of hybrid density functional theory.</p> </div>

opencc-by-4.0Aug 2023View details →
zenodo40/100

Data and code for figures: Ultra-Low Threshold Titanium-Doped Sapphire Whispering-Gallery Laser

<p>This zip file contains the set of data and python notebook files used to plot the data that is presented in the Figures of the paper titled, &quot;Ultra-Low Threshold Titanium-Doped Sapphire Whispering-Gallery Laser&quot;.</p>

opencc-by-4.0Jan 2021View details →
zenodo40/100

Saxagliptin: a doping agent? Inhibition of NPY1-36 cleavage improves cycling performance

<p><strong>Introduction -</strong> Neuropeptides Y (NPYs) contribute to the adreno-sympathetic stimulation, NPY1-36 potentiates catecholamines (CATs) effects whilst NPY3-36 inhibits CATs&rsquo; release.</p> <p><strong>Objectives -</strong> Investigate whether inhibiting dipeptidyl-peptidase-4 (DPP4), the main enzyme cleaving NPY1-36 into NPY3-36 increases NPY1-36 potentiating effects and reduces NPY3-36 inhibiting effects on CATs; thereby leading to performance improvement.</p> <p><strong>Methods -</strong> Seven participants performed a time-to-exhaustion cycling exercise at 95% of peak power output under either placebo (pcb) or saxagliptin (gpt), a DPP4 inhibitor, <em>per os</em>. Oxygen consumption (V̇O<sub>2</sub>), heart rate variability, NPY1-36, NPY3-36, catecholamines and lactate were measured at several time points before, during, and after exercise.</p> <p><strong>Results -</strong> DPP4 activity (12.7 &plusmn; 1.6 vs. 0.2 &plusmn; 0.3 U/L) and NPY3-36 (1.94 &plusmn; 0.88 vs. 0.73 &plusmn; 0.22 pM) decreased at rest in gpt whilst NPY1-36 increased (2.64 &plusmn; 2.22 vs. 4.59 &plusmn; 2.98 pM) and CATs was unchanged. Time-to-exhaustion was 32% higher in gpt, and pcb-to-gpt increase in time-to-exhaustion was correlated to NPY1-36 changes (R=0.78, p&lt;0.05). Peak V̇O<sub>2</sub> values were not different whilst there was a tendency for peak lactate to be higher and peak NPYs concentrations were higher in gpt. Exercise and post-exercise kinetics in all parameters were not different.</p> <p><strong>Discussion -</strong> DPP4 blockade increased NPY1-36 and decreased NPY3-36 concentrations which resulted in an increased potentiating effect on CATs and was likely responsible for performance improvement. Future studies need to determine the specific effects of NPYs and incretins on skeletal and myocardial muscles and establish whether DPP4 inhibitors could be a new class of doping agents.</p>

opencc-by-4.0Mar 2022View details →
zenodo40/100

Boron-Doped-HPHT-Diamond CL Dataset

<p>Cathodoluminescence datasets and analysis notebooks accompanying the following publication:</p> <p>https://doi.org/10.1016/j.carbon.2022.01.030</p> <p>The analysis files rely on the development hyperspy version at the time of release (1.6.1). If compatibility issues arise with newer versions, please ask the curator of this repository for an update of the analysis notebooks.</p>

opencc-by-4.0Mar 2022View details →

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