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Molten Salts‐Driven Discovery of a Polar Mixed‐Anion 3D Framework at the Nanoscale: Zn<sub>4</sub>Si<sub>2</sub>O<sub>7</sub>Cl<sub>2</sub>, Charge Transport and Photoelectrocatalytic Water Splitting.
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- Angewandte Chemie, 2023, v. 135, n. 26, p. 1, doi. 10.1002/ange.202303487
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Molten Salts‐Driven Discovery of a Polar Mixed‐Anion 3D Framework at the Nanoscale: Zn<sub>4</sub>Si<sub>2</sub>O<sub>7</sub>Cl<sub>2</sub>, Charge Transport and Photoelectrocatalytic Water Splitting.
- Published in:
- Angewandte Chemie International Edition, 2023, v. 62, n. 26, p. 1, doi. 10.1002/anie.202303487
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- Article
Simple Fabrication of ϵ‐Fe<sub>2</sub>O<sub>3</sub> Nanoparticles Containing Silica Monoliths with Enhanced Coercivity.
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- ChemNanoMat, 2023, v. 9, n. 2, p. 1, doi. 10.1002/cnma.202200469
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- Article
Co, Fe and CoFe oxide nanoparticle assemblies within an ordered silica matrix: effects of the metal ions and synthesis pathway on the microstructure and magnetic properties.
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- European Physical Journal: Special Topics, 2022, v. 231, n. 24, p. 4233, doi. 10.1140/epjs/s11734-022-00571-0
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- Article
Correction: Haj-Khlifa, S., et al. Polyol Process Coupled to Cold Plasma as a New and Efficient Nanohydride Processing Method: Nano-Ni2H as a Case Study. Nanomaterials 2020, 10, 136.
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- 2020
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- Correction Notice
Polyol-Made Luminescent and Superparamagnetic β-NaY0.8Eu0.2F4@γ-Fe2O3 Core-Satellites Nanoparticles for Dual Magnetic Resonance and Optical Imaging.
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- Nanomaterials (2079-4991), 2020, v. 10, n. 2, p. 393, doi. 10.3390/nano10020393
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- Article
Polyol Process Coupled to Cold Plasma as a New and Efficient Nanohydride Processing Method: Nano-Ni2H as a Case Study.
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- Nanomaterials (2079-4991), 2020, v. 10, n. 1, p. 136, doi. 10.3390/nano10010136
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- Article
Hexacyano Ferrate (III) Reduction by Electron Transfer Induced by Plasmonic Catalysis on Gold Nanoparticles.
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- Materials (1996-1944), 2019, v. 12, n. 18, p. 3012, doi. 10.3390/ma12183012
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- Article
Preparation of niobium-based oxygen carriers by polyol-mediated process and application to chemical-looping reforming.
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- Journal of Nanoparticle Research, 2019, v. 21, n. 5, p. N.PAG, doi. 10.1007/s11051-019-4528-z
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- Article
Magnetic Traits in CoO‐Core@CoFe<sub>2</sub>O<sub>4</sub>‐shell Like Nanoparticles.
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- ChemNanoMat, 2019, v. 5, n. 4, p. 514, doi. 10.1002/cnma.201800544
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- Article
Versatile Molten Salt Synthesis of Manganite Perovskite Oxide Nanocrystals and Their Magnetic Properties.
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- ChemNanoMat, 2019, v. 5, n. 3, p. 358, doi. 10.1002/cnma.201800632
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- Article
Beyond Simple AB Diblock Copolymers: Application of Bifunctional and Trifunctional RAFT Agents to PISA in Water.
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- Macromolecular Rapid Communications, 2019, v. 40, n. 2, p. N.PAG, doi. 10.1002/marc.201800315
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- Article
Ce- and Y-Modified Double-Layered Hydroxides as Catalysts for Dry Reforming of Methane: On the Effect of Yttrium Promotion.
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- Catalysts (2073-4344), 2019, v. 9, n. 1, p. 56, doi. 10.3390/catal9010056
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- Article
Transforming a Diamagnetic Ordered Mesoporous Silica Monolith into a Room Temperature Permanent Magnet through Multiscale Control of the Magnetic Properties.
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- ChemNanoMat, 2018, v. 4, n. 12, p. 1254, doi. 10.1002/cnma.201800333
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- Article
Giant Exchange‐Bias in Polyol‐Made CoFe<sub>2</sub>O<sub>4</sub>‐CoO Core–Shell Like Nanoparticles.
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- Particle & Particle Systems Characterization, 2018, v. 35, n. 11, p. N.PAG, doi. 10.1002/ppsc.201800290
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- Article
Macroscopic Magnetic Anisotropy Induced by the Combined Control of Size, Shape and Organization of NiFe Prussian Blue Analog Nanoparticles in an Ordered Mesoporous Silica Monolith.
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- ChemNanoMat, 2017, v. 3, n. 11, p. 833, doi. 10.1002/cnma.201700196
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- Article
Ordered Mesoporous Silica Monoliths as a Versatile Platform for the Study of Magnetic and Photomagnetic Prussian Blue Analogue Nanoparticles.
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- European Journal of Inorganic Chemistry, 2017, v. 2017, n. 10, p. 1303, doi. 10.1002/ejic.201601196
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- Article
Co<sup>2+</sup>@Mesoporous Silica Monoliths: Tailor-Made Nanoreactors for Confined Soft Chemistry.
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- Chemistry - A European Journal, 2015, v. 21, n. 47, p. 16906, doi. 10.1002/chem.201501918
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- Article
Conducting polymer nanostructures for photocatalysis under visible light.
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- Nature Materials, 2015, v. 14, n. 5, p. 505, doi. 10.1038/nmat4220
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- Article
Polyol-mediated syntheses of crystalline nanosized manganese oxides.
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- Journal of Nanoparticle Research, 2014, v. 16, n. 6, p. 1, doi. 10.1007/s11051-014-2428-9
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- Article
Synthesis of Well-Defined Dawson-Type Poly( N, N-diethylacrylamide) Organopolyoxometalates.
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- ChemPlusChem, 2014, v. 79, n. 2, p. 250, doi. 10.1002/cplu.201300346
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- Article
Self-Organization and/or Nanocrystallinity of Co Nanocrystals Effects on the Oxidation Process Using High-Energy Electron Beam.
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- Advanced Functional Materials, 2014, v. 24, n. 1, p. 164, doi. 10.1002/adfm.201301465
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- Article
Metallic Nanoparticles: Tuning the Porosity of Bimetallic Nanostructures by a Soft Templating Approach (Adv. Funct. Mater. 23/2012).
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- Advanced Functional Materials, 2012, v. 22, n. 23, p. 4899, doi. 10.1002/adfm.201290139
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- Article
Tuning the Porosity of Bimetallic Nanostructures by a Soft Templating Approach.
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- Advanced Functional Materials, 2012, v. 22, n. 23, p. 4900, doi. 10.1002/adfm.201200666
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- Article
Genesis of supported carbon-coated Co nanoparticles with controlled magnetic properties, prepared by decomposition of chelate complexes.
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- Journal of Nanoparticle Research, 2011, v. 13, n. 5, p. 1873, doi. 10.1007/s11051-010-9938-x
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- Article
Innentitelbild: A General Solution Route toward Metal Boride Nanocrystals (Angew. Chem. 14/2011).
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- Angewandte Chemie, 2011, v. 123, n. 14, p. 3148, doi. 10.1002/ange.201101207
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- Article
A General Solution Route toward Metal Boride Nanocrystals.
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- Angewandte Chemie, 2011, v. 123, n. 14, p. 3320, doi. 10.1002/ange.201006810
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- Article
Inside Cover: A General Solution Route toward Metal Boride Nanocrystals (Angew. Chem. Int. Ed. 14/2011).
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- Angewandte Chemie International Edition, 2011, v. 50, n. 14, p. 3092, doi. 10.1002/anie.201101207
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- Article
A General Solution Route toward Metal Boride Nanocrystals.
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- Angewandte Chemie International Edition, 2011, v. 50, n. 14, p. 3262, doi. 10.1002/anie.201006810
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- Article
N-Methylephedrium Salts as Chiral Surfactants for Asymmetric Hydrogenation in Neat Water with Rhodium(0) Nanocatalysts.
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- ChemSusChem, 2010, v. 3, n. 11, p. 1276, doi. 10.1002/cssc.201000206
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- Article
Structured Hybrid Nanoparticles via Surface-Initiated ATRP of Methyl Methacrylate from Ordered Mesoporous Silica.
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- Macromolecular Rapid Communications, 2008, v. 29, n. 11, p. 914, doi. 10.1002/marc.200800179
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- Article
From Self-Assembly of Platinum Nanoparticles to Nanostructured Materials.
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- Small, 2005, v. 1, n. 10, p. 964, doi. 10.1002/smll.200500011
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- Article
Characterization of soil particles by X-ray diffraction (XRD),X-ray photoelectron spectroscopy (XPS), electron paramagnetic resonance (EPR) and transmission electron microscopy (TEM).
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- Agronomy for Sustainable Development (EDP Sciences), 2005, v. 25, n. 3, p. 345
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- Article