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16 results for “ZIF-8”
Molecular Interactions of Photosystem I and ZIF-8 in Bio-Nanohybrid Materials
<p>Supporting data for the article "Molecular Interactions of Photosystem I and ZIF-8 in Bio-Nanohybrid Materials", published in Physical Chemistry Chemical Physics (DOI: <span> <a href="https://doi.org/10.1039/D4CP03021D">10.1039/D4CP03021D)</a></span></p>
Dataset of reported synthetic conditions for ZIF-8 since 2006 and final characteristics and properties of the particles obtained
<p>This is a dataset generated by mining available literature between 2006 and August 2021. Initial literature search was done using Scopus database, employing a combination of keywords such: "ZIF-8", "Zeolitic+ZIF-8", "Framework+ZIF-8", "Zeolitic+MOF".</p> <p>First, removal of duplicates and review articles was done and the remaining documents were chosen by title+abstract analysis. The dataset contains a total of 254 entries, i.e., 254 individual reported synthesis.</p> <p>Throughout this dataset, the following parameters can be found:</p> <p>-About synthesis conditions: Zinc source and the amount employed for the synthesis in mmol (milli-moles); 2-methylimidazole in mmol (HmIm); solvent and quantity employed (in mmol). Modulator and quantity employed (in mmol). Please note that quantities in milli-moles were calculated by hand in most of the cases, since reported data was expressed in different units. Reaction temperature (in °C), reaction time (min) and stirring condition (YES-NO-Initial-time). Finally, reports were classified as "systematic" (or not) based on wether the scope of the work was to explore different synthetic conditions.</p> <p>-About ZIF-8 characteristics: information is mainly focusing on structure-related characteristic, namely the particle morphology (classified as Faceted, poor-faceted, quasispherical, aggregated) and the particle´s size. Reported sizes where classified by the different techniques employed. Finally, Surface area determined by BET formalism was also included.</p>
Data for a publication "Amino-Modified ZIF-8 for Enhanced CO2 Capture: Synthesis, Characterization and Performance Evaluation"
<p>Data for a publication "Amino-Modified ZIF-8 for Enhanced CO2 Capture: Synthesis, Characterization and Performance Evaluation".</p> <p><strong>Versions of dataset:</strong></p> <p><strong><span>V1: </span></strong><span>First dataset regarding the data used in the article.</span></p> <p><strong><span>V2:</span></strong><span> The dataset </span><span>was newly reorganized</span><span>, containing the </span><span>data,</span><span> that </span><span>were used</span><span> for the published article. </span><span>More information can be found</span><span> in the README file.</span></p> <p><strong>Article abstract</strong></p> <p>The urgent need for sustainable and innovative approaches to mitigate the increasing levels of atmospheric CO<sub>2</sub> necessitates the development of efficient methods for its removal. In this study, we focus on the new, innovative approach for synthesis and functionalization of metal-organic framework (MOF) ZIF-8 in one step at room temperature to enhance its capacity for CO<sub>2</sub> capture. Specifically, we investigated the impact of four amino-compounds, namely tetraethylenepentamine (TEPA), hexadecylamine (HDA), <a title="Learn more about ethanolamine from ScienceDirect's AI-generated Topic Pages" href="https://www.sciencedirect.com/topics/chemical-engineering/ethanolamine">ethanolamine</a> (ELA), and cyclopropylamine (CPA), on the <a title="Learn more about chemical structure from ScienceDirect's AI-generated Topic Pages" href="https://www.sciencedirect.com/topics/materials-science/structure-composition">chemical structure</a>, size, surface area and porosity, and CO<sub>2</sub> capturing of ZIF-8 powder. By varying concentrations of the amino-compounds, we examined their influence on the ZIF-8 properties. Our findings demonstrate that each amino-compound and its respective concentration exhibit distinct effects on the characteristics of ZIF-8. Notably, the ZIF-8 sample functionalized with the highest presented concentration of TEPA exhibited significant improvement in CO<sub>2</sub> trapping efficiency, with a 33.3% enhancement. Moreover, least concentrated samples with added HDA or CPA demonstrated notable improvements with enhancements of 46.6% and 18.6%, respectively. These results highlight the potential of simple synthesis and functionalization techniques for MOFs in enhancing their CO<sub>2</sub> capture capabilities. The findings from this study offer new opportunities for the development of strategies to mitigate CO<sub>2</sub> emissions using MOFs.</p>
Experimental data generated on the thermal behaviour during the intrusion–extrusion of ZIF-8 with different salt solutions
<p>/* **********<br>/* This work is licensed under a Creative Commons Attribution 4.0 International License.<br>/* **********</p> <p>Open access to experimental data generated by the project Electro-Intrusion (101017858, Horizon 2020, European Union) along with the research on the thermal behaviour of hydrophobic porous materials to be used in intrusion-extrusion applications. Research pertaining to Task 3.1 (WP3).<br>Underlying data for the publication Bartolomé, L. et al. Tuning Wetting-Dewetting Thermomechanical Energy for Hydrophobic Nanopores via Preferential Intrusion. The Journal of Physical Chemistry Letters 2023, 15, 880-887. https://doi.org/10.1021/acs.jpclett.3c03330. Data related to Figures 1, 3 and 4 in the article.</p> <p>Dataset Identifier: 10.5281/zenodo.13927359 </p> <p>Contact person: Luis Bartolomé (CIC energiGUNE). ORCID: https://orcid.org/0000-0001-9649-1470</p> <p><br>The archive 'JPCL_Tuning.zip' contains 2 folders with 64 files in total.</p>
Experimental and theoretical data generated to study effect of crystallite size on the flexibility and negative compressibility of ZIF-8
<p><span>Open access to experimental data generated by the project </span><a href="https://www.electro-intrusion.eu/en"><span>Electro-Intrusion</span></a><span> (101017858, Horizon 2020, European Union) along with the research on the thermal behaviour of hydrophobic porous materials to be used in intrusion-extrusion applications. Research pertaining to Task 2.1 (WP2).</span></p> <p><span>Underlying data for the publication Johnson, L. J. W. et al. Effect of Crystallite Size on the Flexibility and Negative Compressibility of Hydrophobic Metal–Organic Frameworks. Nano Letters 2023, 23, 10682-10686. <a title="DOI URL" href="https://doi.org/10.1021/acs.nanolett.3c02431">https://doi.org/10.1021/acs.nanolett.3c02431</a> Data related to Figures 1, 2, and 3 in the article.</span></p>
Characterization results and synthesis parameters of ZIF-8
Open the record for dataset details and reuse information.
ZIF-8 encapsulation improves the antifungal activity of benzaldehyde and methyl anthranilate in films
<p>Relevant Data for publication wit DOI <a title="Link to landing page via DOI" href="https://doi.org/10.1039/D3DT03229A">10.1039/D3DT03229A</a></p>
Implementing Mesoporosity in Zeolitic Imidazolate Frameworks through Clip-Off Chemistry in Heterometallic Iron–Zinc ZIF-8
<p>Relevant data for publication with DOI: <a title="DOI URL" href="https://doi.org/10.1021/jacs.3c08017">10.1021/jacs.3c08017</a></p>
Network-Nanostructured ZIF-8 too Enable Percolation for Enhanced Gas Transport (Data Repository)
<p>Data repository </p>
Gas permeation through single-crystal ZIF-8 membranes
<p>Dataset supporting publication: Chen Chen, Aydin Ozcan, A. Ozgur Yazaydin and Bradley P. Ladewig, Gas permeation through single-crystal ZIF-8 membranes, <em>Journal of Membrane Science</em>, <a href="http://Chen Chen, Aydin Ozcan, A. Ozgur Yazaydin and Bradley P. Ladewig, Gas permeation through single-crystal ZIF-8 membranes, Journal of Membrane Science, https://doi.org/10.1016/j.memsci.2019.01.027">https://doi.org/10.1016/j.memsci.2019.01.027</a></p> <p>Dataset supporting preprint: Chen, Chen; Ozcan, Aydin; Yazaydin, A. Ozgur; Ladewig, Bradley (2019): Gas Permeation Through Single-Crystal ZIF-8 Membranes. <em>ChemRxiv</em>. Preprint. <a href="https://doi.org/10.26434/chemrxiv.7571186.v1">https://doi.org/10.26434/chemrxiv.7571186.v1</a></p>
Implementing Mesoporosity in Zeolitic Imidazolate Frameworks through Clip-Off Chemistry in Heterometallic Iron-Zinc ZIF-8
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Experimental and theoretical data generated to study mechanism of water intrusion into flexible ZIF-8
<p><span>Open access to experimental data generated by the project </span><a href="https://www.electro-intrusion.eu/en"><span>Electro-Intrusion</span></a><span> (101017858, Horizon 2020, European Union) along with the research on the thermal behaviour of hydrophobic porous materials to be used in intrusion-extrusion applications. Research pertaining to Task 2.1 (WP2).</span></p> <p><span>Underlying data for the publication Amayuelas, E. et al. Mechanism of Water Intrusion into Flexible ZIF-8: Liquid Is Not Vapor. Nanoletters 2023, 23, 5430-5436. <a title="DOI URL" href="https://doi.org/10.1021/acs.nanolett.3c00235">https://doi.org/10.1021/acs.nanolett.3c00235</a>. Data related to Figures 1 and 2 in the article.</span></p>
Hierarchical ZIF-8@Au cluster Nanocarriers for In Situ CAR-M programming and Immunotherapy in Prostate Cancer
GEO Series GSE298594. Mus musculus. 4 samples. Type: Expression profiling by high throughput sequencing.
Supporting information for: "Impacts of the Imidazolate Linker Substitution (CH3, Cl or Br) on the Structural and Adsorptive Properties of ZIF-8"
<p>Simulation output for each system in a .tar.xz file, containing four files:</p><ul><li>*.pos.xyz: trajectory in XYZ format</li><li>*.vel.xyz: velocities at each step in XYZ format</li><li>*.frc.xyz: forces at each step in XYZ format</li><li>*.stress: stress matrix at each step</li></ul><p>Initial conformation for ab initio simulations are provided as .pdb files.</p>
In situ Growth of ZIF-8 Nanoparticles on Graphene Oxide Nanosheets: A Multifunctional Nanoplatform for Combined Ion‐interference and Photothermal Therapy
GEO Series GSE191172. Homo sapiens. 6 samples. Type: Expression profiling by high throughput sequencing.
Gas permeation through single-crystal ZIF-8 membranes
<p>Simulation files to accompany manuscript submission.</p>
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