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252 results for “Atomic data”
Atomic Force Microscopy data of Poly-3-hydroxybutarate and Poly-3-hydroxyvalerate films
<p>This dataset consists of atomic force microscopy (AFM) scans of <em><strong>Polyhydroxyalkanoate</strong></em> films in text (.txt) format as well as their corresponding previews in (.png) format. </p> <p>The surfaces of <strong><em>Poly-3-hydroxybutarate (P3HB [100%])</em></strong> and <em><strong>Poly-3-hydroxyvalerate (P3HB-co-P3HV) [90% :10%]) </strong></em>of six film thicknesses, three scan sizes (5µm, 10µm and 30µm) and three unique scan areas have been scanned with AFM equipment from NT-MDT spectrum instruments.</p> <p>This dataset has been used in the work <a href="../doi/10.5281/zenodo.10621269" target="_blank" rel="noopener">10.5281/zenodo.10621269</a> within which the scan data has been divided into multiple sub-pools for experimentation. Details on the structure of the dataset are as follows: </p> <ul> <li>The (.txt) format of the scanned images can be opened using Gwyddion (<a href="http://gwyddion.net/">gwyddion.net</a>)</li> </ul> <pre><code>FOLDER INDEX ITMO_PHA-AFM-SCAN-Data/ ├── Set.1_P3HB.(Homopolymer) │ ├── Size_5um │ │ ├── TXT │ │ │ └── 17(.txt)s │ │ └── IMG │ │ │ └── 17(.png)s │ ├── Size_10um │ │ ├── TXT │ │ │ └── 17(.txt)s │ │ └── IMG │ │ │ └── 17(.png)s │ └── Size_30um │ ├── TXT │ │ └── 18(.txt)s │ └── IMG │ └── 18(.png)s ├── Set.2_P3HB-co-P3HV.(Heteropolymer) │ ├── Size_5um │ │ ├── TXT │ │ │ └── 18(.txt)s │ │ └── IMG │ │ │ └── 18(.png)s │ ├── Size_10um │ │ ├── TXT │ │ │ └── 18(.txt)s │ │ └── IMG │ │ │ └── 18(.png)s │ └── Size_30um │ ├── TXT │ │ └── 17(.txt)s │ └── IMG │ └── 17(.png)s │ └── Read_me.txt</code></pre> <p><br>For convenience, we show an example of referencing data pools using the <em><strong>Folder Index</strong></em></p> <p>E.g. </p> <ul> <li>With reference to the article(<a href="https://doi.org/10.1021/acsomega.4c02502">https://doi.org/10.1021/acsomega.4c02502</a>), Case 1(a) is a data pool consisting only of scan data from P3HB polymer with all three sizes of data, in this case the reference is written as: <strong><em>(P1,L2) </em></strong></li> <li>Similarly, in case of Case 2(b), which is a data pool consisting of scan data from P3HB and P3HB-co-P3HV polymers with exclusively 30µm scan sizes, the reference is written as: <strong><em>(P1, L2[30]) + (P2, L2[30])</em></strong></li> </ul> <p>The .txt and .png files have been named using the following nomenculatrue: </p> <h3><strong> P_Thickness.N_Area.A_Size.S.txt</strong></h3> <p> <strong>P </strong>– Polymer (P3HB or P3HBV)<br><strong>Thickness.N</strong> – Film thickness of the scanned sample (1-6)<br><strong> Area.A</strong> – Scanned area within the film (1-3)<br><strong> Size.S</strong> – Size of the scanned area (5µm,10µm,30µm)</p> <p>e.g. (P3HB_Thickness.1_Area.1_Size.5.txt)</p> <p><strong>Please cite this dataset when used in applications as:</strong><br><em>Ireddy, A. T. S., & Ghorabe, F. D. E. (2024). Atomic Force Microscopy data of Poly-3-hydroxybutarate and Poly-3-hydroxyvalerate films [Data set]. Zenodo. https://doi.org/10.5281/zenodo.10649355</em></p> <p><br>For additonal details, please contact: <a href="mailto:ireddy@itmo.ru">ireddy@itmo.ru</a></p>
Source Data for "Atomic-Precision Control of Plasmon-Induced Single-Molecule Switching in a Metal-Semiconductor Nanojunction" and Supplementary Information
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Visualizing sub-atomic orbital and spin moments using a scanning transmission electron microscope: Data and Methodology
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NMR Data: Atomic Resolution Map of the solvent interactions driving SOD1 unfolding in CAPRIN1 condensates
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Figure data for article "Fluctuation-induced Bistability of Fermionic Atoms Coupled to a Dissipative Cavity"
<p>The files contain the data depicted in the figures of the article "Fluctuation-induced Bistability of Fermionic Atoms Coupled to a Dissipative Cavity", arXiv:2409.16035 (2024)</p> <p>The format of the data and to which figure it corresponds is described in the file "read_me_metadata.txt".</p>
supported data for "A multi-detector helium atom microscope"
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Code and Data for Transfer Learning for Multi-material Classification of Transition Metal Dichalcogenides with Atomic Force Microscopy
<p>The data consists of atomic force microscopy (AFM) images of metal organic chemical deposition (MOCVD) grown transition metal dichalcogenides (TMDs), MoS2, WS2, WSe2, MoSe2, and Mo-WSe2, used for the results reported in the manuscript "Transfer Learning for Multi-material Classification of Transition Metal Dichalcogenides with Atomic Force Microscopy". The TMDs are grown at the Penn State's 2D crystal consortium (2DCC). The raw data is also available on the LiST (https://data.<br>2dccmip.org/Rut1mMC8u25M). The file names have the format: imageSNo_TMD_sampleLabel_sampleId_set.tif, where SNo, TMD, sampleLabel, sampleId, and set are serial numbers (1, 2, 3, ...), class of TMD (e.g. MoS2, WS2, ...), sample label, sample id, and train or test set, as used in the manuscript. There could be multiple images from the same samples (taken from the center, edges, etc, of wafer). Images from the same sample have the same sample label and sample id. In using the data, it is recommended that the same sample is not present in more than one data set to avoid data leakage. Additionally, github_static consists of the codes used to generate the results reported in the manuscript.</p>
Data from: BNPd single-atom catalysts for selective hydrogenation of acetylene to ethylene: a density functional theory study
The mechanisms of selective hydrogenation of acetylene to ethylene on B11N12Pd single-atom catalyst (SAC) was investigated through the density functional theory by using 6-31++G basis set. We studied the adsorption characteristics of H2 and C2H2, and simulated the reaction mechanism. We have discovered that H2 absolutely dissociative chemisorption on single atom Pd and formed the B11N12Pd(2H) dihydride complex and then proceed the hydrogenation reaction with C2H2. The hydrogenation reaction of acetylene onto the B11N12Pd complies with the Horiuti-Polanyi mechanism, and the energy barrier as low as 26.55 kcal mol-1. The low desorption energy of ethylene, high ethylene hydrogenation activation energy can ensure the B11N12Pd SAC has high selectivity. Meanwhile it also has a higher selectivity than many bimetallic alloy single-atom catalyst.
Data for "Defect detection in atomic-resolution images via unsupervised learning with translational invariance"
<p>This dataset accompanies the paper titled <em>Defect detection in atomic-resolution images via unsupervised learning with translational invariance</em> by Yueming Guo<sup>*</sup>, Sergei V. Kalinin, Hui Cai, Kai Xiao, Sergiy Krylyuk, Albert V Davydov, Qianying Guo, Andrew R. Lupini<sup>* </sup></p>
Data for manuscript "Individually Addressable and Spectrally Programmable Artificial Atoms in Silicon Photonics"
<p>Data in scientific manuscript published in preprint: https://arxiv.org/abs/2202.02342</p>
Supplementary Data for "Enhanced interfacial water dissociation on a hydrated iron porphyrin single-atom catalyst defect in graphene"
<p>Supplementary Data for the article:<br> "Enhanced interfacial water dissociation on a hydrated iron porphyrin single-atom catalyst defect in graphene"<br> Laura Scalfi, Maximilian R. Becker, Roland R. Netz and Marie-Laure Bocquet, Communications Chemistry (2023)<br> [preprint: 10.26434/chemrxiv-2023-31hbx]</p> <p> </p>
Data from: International Atomic Energy Agency survey study with referring physicians on patient radiation exposure and its tracking: A prospective survey using a web based questionnaire
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Data from: Simulation assisted analysis of the intrinsic stiffness for short DNA molecules imaged with scanning atomic force microscopy
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Data from: Adhesion force mapping on wood by atomic force microscopy: influence of surface roughness and tip geometry
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Data from: Hartree–Fock implementation using a Laguerre-based wave function for the ground state and correlation energies of two-electron atoms
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Data from: Stabilization of golden cages by encapsulation of a single transition metal atom
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Data from: BNPd single-atom catalysts for selective hydrogenation of acetylene to ethylene: a density functional theory study
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ATom: In Situ Data from Caltech Chemical Ionization Mass Spectrometer (CIT-CIMS), V2
This dataset provides the concentrations of gas-phase organic and inorganic analytes measured by the California Institute of Technology (CIT) Chemical Ionization Mass Spectrometer (CIMS), or CIT-CIMS, flown on the NASA DC-8 aircraft during the four ATom campaigns. The CIT-CIMS employs CF3O-ion chemistry with two independent mass spectrometers (compact time-of-flight and triple quadrupole) to enable sensitive and specific measurements of atmospheric trace gases. The measurements include hydrogen peroxide (H2O2), hydrogen cyanide (HCN), nitric acid (HNO3), methyl hydrogen peroxide (CH3OOH), peroxyacetic acid (C2O3H4), peroxynitric acid (HO2NO2), and sulfur dioxide (SO2), in units of parts-per-trillion-by-volume.
ATom: Nucleation Mode Aerosol Size Spectrometer Calibration and Performance Data
This dataset provides extensive calibration and in-flight performance data for two nucleation mode aerosol size spectrometer (NMASS) instruments utilized in the NASA Atmospheric Tomography Mission (ATom). Each NMASS has five condensation particle counters (CPCs) that detect particles above a different minimum size, determined by the maximum vapor supersaturation encountered by the particles. Operated in parallel, the CPCs provide continuous concentrations of particles in different cumulative size classes between 3 and 60 nm. Knowing the response function of each CPC, numerical inversion techniques were applied to recover size distributions from the continuous concentrations. Data provided include: NMASS counting efficiencies and diameters of calibration aerosols, inverted particle size distributions; comparisons of NMASS and Scanning Mobility Particle Sizer (SMPS) results; and performance at flows, temperatures, and pressures measured by both NMASSs and comparison with Ultra-High Sensitivity Aerosol Spectrometer (UHSAS) concentrations collected on board the NASA DC-8 aircraft during an ATom flight in February 2017.
ATom: Simulated Data Stream for Modeling ATom-like Measurements
This dataset provides a simulated data stream representative of an Atmospheric Tomography mission (ATom) data collection flight and also modeled reactivities for ozone (O3) production and loss and methane (CH4) loss from six global atmospheric chemistry models: CAM, GEOS-Chem, GFDL, GISS-E2.1, GMI, and UCI. The simulated data include concentrations of selected atmospheric trace gases for 14,880 air parcels along a simulated north-south ATom flight path along 180-degrees longitude over the Pacific basin. Each of the six models produced ozone production and loss and methane loss reactivities initialized using the simulated data beginning with five different days in August (8-01, 8-06, 8-11, 8-16, 8-21). Modeled years for each individual model varied from 1997 to 2016.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.