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Dataset results
16 results for “organic semiconductors”
Supporting Data: Complementary Organic Logic Gates on Plastic Formed by Self-Aligned Transistors with Gravure and Inkjet Printed Dielectric and Semiconductors
<p>The file contains the supporting data for the publication:</p> <p>S.G. Higgins, B.V.O. Muir, G. Dell'Erba, A. Perinot, M. Caironi, A.J. Campbell. Complementary Organic Logic Gates on Plastic Formed by Self-Aligned Transistors with Gravure and Inkjet Printed Dielectric and Semiconductors. doi: 10.1002/aelm.201500272. <em>Advanced Electronic Materials </em>(2015)</p> <p>See 'README.txt' for a description of the contents of the compressed file.</p>
Supporting Data: Indacenodithiophene-benzothiadiazole Organic Field-Effect Transistors with Gravure Printed Semiconductor and Dielectric on Plastic
<p>The file contains the supporting data for the publication:</p> <p>S.G. Higgins, B.V.O. Muir, M. Heeney, A.J. Campbell. Indacenodithiophene-benzothiadiazole Organic Field-Effect Transistors with Gravure Printed Semiconductor and Dielectric on Plastic. doi: 10.1557/mrc.2015.66. <em>MRS Communications</em> (2015)</p> <p>See 'README.txt' for a description of the contents of the compressed file.</p>
Data associated to: Analytical Physical Model for Organic Metal-Electrolyte-Semiconductor Capacitors
<p>Data associated to the manuscript entitled: Analytical Physical Model for Organic Metal-Electrolyte-Semiconductor Capacitors by Larissa Huetter, Adrica Kyndiah and Gabriel Gomila</p>
Metadata of " Stability of Selected Hydrogen Bonded Semiconductors in Organic Electronic Devices"
<p>Metadata of " Stability of Selected Hydrogen Bonded Semiconductors in Organic Electronic Devices"</p>
Data for "A General Charge Transport Picture for Organic Semiconductors with Nonlocal Electron-Phonon Couplings"
<p>Data for "A General Charge Transport Picture for Organic Semiconductors with Nonlocal Electron-Phonon Couplings"</p>
Data for "Direct Observation of Ultrafast Exciton Localization in an Organic Semiconductor with Soft X-ray Transient Absorption Spectroscopy"
<p>Underlying data for figures 1-3 and supplementary figures S1-S7 for the paper entitled 'Direct Observation of Ultrafast Exciton Localization in an Organic Semiconductor with Soft X-ray Transient Absorption Spectroscopy'.</p>
Semiconductor Porous Hydrogen-Bonded Organic Frameworks Based on Tetrathiafulvalene Derivatives
<p>Relevant data for publication with DOI:</p> <table> <tbody> <tr> <td><a href="https://doi.org/10.1021/jacs.1c07802"><span>https://doi.org/10.1021/jacs.1c07802</span></a></td> </tr> </tbody> </table>
Data for: "Exciton transport in molecular organic semiconductors boosted by transient quantum delocalization"
<p>Data: Figure 2 (all panels), Figure 3 (all panels), Figure 4 (all panels), Figure 5 (all panels)</p>
Ion sensors based on organic semiconductors acting as quasi-reference electrodes
<p>We report electric double-layer transistors with organic semiconductors in single-crystal forms for ion sensing. High operational stability of our transistors enabled them to serve as quasi-reference electrodes, which show one-to-one relationship between the source electrode potential and device resistance. Differential measurements between our sensing and reference transistors demonstrated ion concentration sensing without a conventional reference electrode.</p>
Vibrational Neutron Spectroscopy Data for Small Molecule Organic Semiconductors
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A Three‐Dimensional Porous Organic Semiconductor Based on Fully sp2‐Hybridized Graphitic Polymer
<p>Dimensionality plays an important role in the charge transport properties of organic semiconductors. Although three- dimensional semiconductors, such as Si, are common in inorganic materials, imparting electrical conductivity to covalent three- dimensional organic polymers is challenging. Here, we report the synthesis of a three-dimensional π-conjugated porous organic polymer (3D p-POP) using catalyst-free Diels−Alder cycloaddition polymerization followed by acid-promoted aromatization. With a surface area of 801 m<sup>2</sup> g<sup>-1</sup> , full conjugation throughout the carbon backbone, and an electrical conductivity of 6(2) x 10<sup>–4</sup> S cm<sup>–1</sup> upon treatment with I<sub>2</sub> vapor, the 3D p-POP represents the first member of a new class of permanently porous 3D organic semiconductors.</p>
Data from: Convenient fabrication of conjugated polymer semiconductor nanotubes and their application in organic electronics
Organic heterojunction is indispensable in organic electronic devices, such as organic solar cells (OSCs), organic light-emitting diodes (OLEDs) and so on. Fabrication of core-shell nanostructure provides feasible and novel way to prepare organic heterojunction, which is beneficial for miniaturization and integration of organic electronic devices. Fabrication of nanotubes which constitute the core-shell structure in large quantity is the key for the realization of application. In this work, a simple and convenient method to prepare nanotubes utilizing conjugated copolymer of perylene diimide and dithienothiophene (P(PDI-DTT)) was demonstrated. The relationship between preparation condition (solvent atmosphere, solution concentration and pore diameter of templates) and morphology of nanostructure was studied systematically. P(PDI-DTT) nanotubes could be fabricated in regular shape and large quantity by preparing the solution with appropriate concentration and placing Anodic Aluminum Oxide (AAO) template with nanopore diameter of 200 nm in the solvent atmosphere. The tubular structure was confirmed by scanning electron microscope (SEM). P(PDI-DTT) nanotubes exhibited electron mobility of 0.02 cm2V-1s–1 in field effect transistors under ambient condition. Light emitting nanostructures were successfully fabricated by incorporating tetraphenyl ethylene (TPE) into polymer nanotubes.
Semiconductor Porous Hydrogen-Bonded Organic Frameworks Based on Tetrathiafulvalene Derivatives
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High-Performance Multilevel Nonvolatile Organic Field-Effect Transistor Memory Based on Multilayer Organic Semiconductor Heterostructures
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Data from: Convenient fabrication of conjugated polymer semiconductor nanotubes and their application in organic electronics
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Data from: Double-digest RAD Sequencing using Ion Proton semiconductor platform (ddRADseq-ion) with non-model organisms
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International Brain Laboratory public data
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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.