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669 results for “ATOM”
Proximity superconductivity in atom-by-atom crafted quantum dots
<p>This .zip file includes all raw data measured on quantum dots presented in the paper as well as Source Data for the main figures.</p>
Data and codes for An atomic-scale multi-qubit platform
<p>All the source data, codes and raw images used in main text and supplementary information of "<strong>An atomic-scale multi-qubit platform</strong>" are supplied in the file. </p>
All-atom DOPC + %10 Cholesterol MD Trajectories
<p>Contains 10 trajectories of all-atom MD simulation of a bilayer membrane containing DOPC with %10 cholesterol at 30C. Each DCD trajectory file corresponds to 10ns. The force-field used is CHARMM36. A PDB structure file is included.</p>
Primary X-ray diffraction data for the study "Femtosecond X-ray snapshots reveal correlated displacements of specific distal atoms in a protein crystal"
<p>The data set contains the primary X-ray diffraction data collected at the FemtoMAX beamline from bovine trypsin crystals at room temperature (motor gony). Every image represents a 150 fs X-ray pulse diffracting on the crystal. The photon energy was 11.15 keV (ΔE/E = 0.01), approximately 1 × 10<sup>7</sup> photon/pulse. The images are stored in compressed numpy file format and the float pixels values describe energy in keV as generated by the time-over-threshold technique. The odd numbered images were recorded without a preceding THz pulse and the even numbered images were recorded after a single cycle THz pulse (2.1 THz peak, FWHM 2 THz) with approximately 50 ps delay.</p> <p>The data set also contain the laser delay associated with a rotation position (motor laserdelay, in seconds). Only one laser delay was recorded per step.</p>
Direct strain correlations at the single-atom level in three-dimensional core-shell interface structures
<p>The data and source codes for the paper [H.J., D.H.W., T.L., Y.K., C.J., J.L., H.B., A. J. P., W.T., C.O., P.E., Y.-L.L., S.R., S.W.H., and Y.Y., "Direct strain correlations at the single-atom level in three-dimensional core-shell interface structures", <em>Nat. Commun.</em> <strong>13</strong>, 5957 (2022)] are posted below.</p> <p> </p> <p>Nanomaterials with core-shell architectures are prominent examples of strain-engineered materials. The lattice mismatch between the core and shell materials can cause strong interface strain, which affects the surface structures. Therefore, surface functional properties such as catalytic activities can be designed by fine-tuning the misfit strain at the interface. To precisely control the core-shell effect, it is essential to understand how the surface and interface strains are related at the atomic scale. Here, we elucidate the surface-interface strain relations by determining the full 3D atomic structure of Pd@Pt core-shell nanoparticles at the single-atom level via atomic electron tomography. Full 3D displacement fields and strain profiles of core-shell nanoparticles were obtained, which revealed a direct correlation between the surface and interface strain. The strain distributions show a strong shape-dependent anisotropy, whose nature was further corroborated by molecular statics simulations. From the observed surface strains, the surface oxygen reduction reaction activities were predicted. These findings give a deep understanding of structure-property relationships in strain-engineerable core-shell systems, which can lead to direct control over the resulting catalytic properties.<br> <br> </p> <p>1. Raw experimental tilt series images for Particle 1 and Particle 2 (Raw tilt series images.zip).</p> <p>2. Denoised and aligned tilt series images for Particle 1 and Particle 2 (Finalized tilt series images.zip).</p> <p>3. Finalized tilt angles for Particle 1 and Particle 2 (Finalized tilt angles.zip).</p> <p>4. 3D tomographic reconstruction for Particle 1 and Particle 2 (Final reconstruction.zip).</p> <p>5. Final atomic structure for Particle 1 and Particle 2 (Final atomic structure.zip).</p> <p>6. Indices of surface Pd atoms for Particle 1 and Particle 2 (Indices of surface Pd.zip).</p> <p>7. Source codes for the assignment of atomic coordinates, displacement/strain calculation and ORR activity calculation (Code_PdPt.zip).</p> <p> </p> <p>If you use any of the above data or source codes in your publications and/or presentations, our paper should be properly cited: H.J., D.H.W., T.L., Y.K., C.J., J.L., H.B., A. J. P., W.T., C.O., P.E., Y.-L.L., S.R., S.W.H., and Y.Y., "Direct strain correlations at the single-atom level in three-dimensional core-shell interface structures", <em>Nat. Commun.</em> <strong>13</strong>, 5957, (2022).<br> <br> If you have any questions regarding the above data or source codes, please contact Yongsoo Yang, Department of Physics, Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, Korea. Email: <a href="mailto:yongsoo.yang@kaist.ac.kr">yongsoo.yang@kaist.ac.kr</a></p>
Ultrahigh Mass Activity Pt Entities Consisting of Pt Single atoms, Clusters, and Nanoparticles for Improved Hydrogen Evolution Reaction
<p>X-ray absorption spectroscopy data in an Athena project file. </p>
Supplementary files for "Programmable arrays of alkaline earth atoms: qubits, clocks, and the Bose-Hubbard model"
<p>Supplementary files for "Programmable arrays of alkaline earth atoms: qubits, clocks, and the Bose-Hubbard model"</p><p>Lab construction timelapse: <a href="https://zenodo.org/api/records/10019752/draft/files/lablapse_no_seizure.mov/content">lablapse_no_seizure.mov</a></p><p>Grover's search using pendulums: <a href="https://zenodo.org/api/records/10019752/draft/files/AY_grover_pendulum.mp4/content">AY_grover_pendulum.mp4</a></p>
Data supporting publication: Two-Dimensional Chiral Metasurfaces Obtained by Geometrically Simple Meta-atom Rotations
<p>This repository includes the data corresponding to the figures shown in the journal article entitled "Two-Dimensional Chiral Metasurfaces Obtained by Geometrically Simple Meta-atom Rotations", published in Nano Letters.</p>
Application of Electrically Driven Atomized Surface Anesthesia in ATI in Patients With Predictably Difficult Airway.
ClinicalTrials.gov study NCT06420947. IPD Sharing: Not stated. Countries: 1. Publications: 1.
The Optimal Head Position for Distributing Topical Nasal Medication Using the Mucosal Atomization Device
ClinicalTrials.gov study NCT02079792. IPD Sharing: Not stated. Countries: 1. Publications: 6.
FIT-ATOMIC Exercise Feasibility Trial
ClinicalTrials.gov study NCT06870968. IPD Sharing: NO. Countries: 2. Publications: 16.
Study to Evaluate the Safety and Efficacy of IV Infusion Treatment With Omecamtiv Mecarbil in Subjects With Left Ventricular Systolic Dysfunction Hospitalized for Acute Heart Failure (ATOMIC-AHF)
ClinicalTrials.gov study NCT01300013. IPD Sharing: Not stated. Countries: 19. Publications: 1.
Targeted Atomic Nano-Generators (Actinium-225-Labeled Humanized Anti-CD33 Monoclonal Antibody HuM195) in Patients With Advanced Myeloid Malignancies
ClinicalTrials.gov study NCT00672165. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Atomization Vs. Nebulization for Airway Topicalization During Awake Nasotracheal Fiberoptic Intubation
ClinicalTrials.gov study NCT05320731. IPD Sharing: NO. Countries: 1. Publications: 13.
Effects of Atomized Dexmedetomidine on Lung Function in Patients With Chronic Obstructive Pulmonary Disease
ClinicalTrials.gov study NCT06207331. IPD Sharing: YES. Countries: 1. Publications: 11.
Oxygen Atomizing Inhalation of EGCG in the Treatment Interstitial Pneumonia in Cancer Patients
ClinicalTrials.gov study NCT05758571. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Budesonide Application Via Mucosal Atomization Device as a Treatment for Chronic Rhinosinusitis When Utilized as a Topical Nasal Steroid Spray
ClinicalTrials.gov study NCT01405339. IPD Sharing: Not stated. Countries: 1. Publications: 6.
Atomized Intranasal Vs Intravenous Ketorolac in Acute Renal Colic Pain Management.
ClinicalTrials.gov study NCT04441762. IPD Sharing: NO. Countries: 1. Publications: 3.
Effect of the Topical Application of Anaesthetics With EnkFiberoptic Atomizer During the Bronchoscopy
ClinicalTrials.gov study NCT02262442. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Atomically dispersed hexavalent iridium oxide from MnO2 reduction for oxygen evolution catalysis
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